2023.06.10 02:38 Landofpersimmons Advanced rappelling system
![]() | I was scrambling in Yosemite the other day and saw this route called the Dawn Wall or something equally silly. Problem is the route semed 100% aid so I'm planning to rappel down the top with an hydraulic press to chip away all those bad looking bolts and some holds so that it should finally become a pretty nice warm-up. submitted by Landofpersimmons to ClimbingCircleJerk [link] [comments] Now the real question: could this counterbalance rappel technique be the way to go given the additional hydraulic press? Free solo guy seems preatty chill even thou he is counterbalancing a litteral bear so that's why i thought that. |
2023.06.10 00:31 Kai1549 TF2's Peculiar Ways to Die Iceberg
![]() | submitted by Kai1549 to tf2 [link] [comments] https://preview.redd.it/dv8pbo0dh25b1.png?width=1580&format=png&auto=webp&s=5b31097c61f5a84532e1074ef0378f8e45fe9212 Document explaining each entry can be found right here! [ TF2's Peculiar Ways to Die Iceberg - Documentation - Pastebin.com ] Something silly I was working on recently as I played casual, it has been fun collecting ideas for it. I know some may not agree with the organization, and that's what the replies section is for! If this gets a ton of new ideas or something, I will return with an UPDATED version for nerds like me who think it is important to document the ways we die. As stated in the document, you have permission to do with this whatever you wish, credit is not necessary, enjoy! |
2023.06.09 21:57 Rosen_Luft Cross posting a reply regarding the Gold Standard and our Economy
2023.06.09 21:50 autobuzzfeedbot 19 Actors Who Accused Their Costars Of Behaving Like Monsters On-Set
2023.06.09 15:38 aniietrinh Công ty sản xuất ván dăm công nghiệp cao cấp tốt nhất
![]() | Ván dăm hay còn gọi là Particle Board là vật liệu được ứng dụng phổ biến trong nhiều thiết kế nội thất hiện nay. Ván dăm có tính ứng dụng cao, chất lượng tốt và giá thành tương đối rẻ. Hãy cùng khám phá quy trình sản xuất loại ván này qua bài viết hôm nay để có thêm cái nhìn tổng quan về vật liệu này nhé. submitted by aniietrinh to u/aniietrinh [link] [comments] Ván dăm (PB) được sản xuất như thế nào?1. Nguyên liệu làm dăm gỗhttps://preview.redd.it/cy2b2h0rwz4b1.png?width=936&format=png&auto=webp&s=9e78b15fd30c53bb3fcc147a89c966959d47c549Trong các loại vật liệu gỗ công nghiệp, ván dăm là loại được ứng dụng phổ biến nhất. Hơn 90% nội thất gỗ công nghiệp trên thị trường được làm từ ván dăm kết hợp cùng ván MDF. Ván dăm được sản xuất từ các loại dăm gỗ xay nhuyễn rồi ép lại thành tấm. Nguyên liệu để làm dăm gỗ chủ yếu hiện nay là từ nguồn gỗ bạch đàn, cây keo, cao su,… Dăm gỗ có thể có dạng vỏ bào, mùn cưa, hoặc gỗ nguyên khối như cành cây, nhánh con,…. Một số nơi còn sử dụng các loại cây có chứa Lignin và Cellulose như cây gai, cây bông, rạ,… để làm dăm gỗ. 2. Quy trình sơ lược sản xuất ván dămhttps://preview.redd.it/0mulc6nswz4b1.jpg?width=468&format=pjpg&auto=webp&s=66d769408fd9f788cec6114b69e22e7966b48f1eMột quy trình để sản xuất ra các tấm Particle Board sẽ gồm 10 bước sau đây: Bước 1: Chọn lọc nguyên liệu để làm dăm gỗ. Nguồn nguyên liệu có thể lấy từ vụn gỗ, phụ phẩm gỗ hoặc gỗ nguyên khối từ cây cao su, bạch đàn, cây keo,… các loại cây chứa nhiều Cellulose. Bước 2: Nguyên liệu sẽ được sơ chế (loại bỏ mối mọt, sâu bọ,…) sau đó băm nhỏ thành các dăm gỗ. Bước 3: Dăm gỗ sẽ được đem sấy với nhiệt độ quy định theo tiêu chuẩn để giảm bớt độ ẩm. Bước 4: Dăm gỗ sau khi sấy sẽ được tiến hành sàng lọc, phân loại kích thước. Việc phân loại này giúp cho các bước ép sấy tiếp theo được tiện lợi, nhanh chóng hơn. Bước 5: Các dăm gỗ sau khi sàng lọc sẽ được đem trộn với chất keo, phụ gia kết dính theo từng loại rồi đem đi tạo hình. Bước 6: Tại bước này, các dăm gỗ sẽ được ép theo khuôn mẫu đã tạo dựa vào các thông số về độ dày và mật độ. Bước 7: Sau khi ép sơ bộ thành tấm, ván được cắt thành hình chữ nhật với những độ dài tiêu chuẩn theo thị trường. Bước 8: Tiếp tục, ván sẽ được đem đi ép nóng bởi nhiệt độ và áp suất cao để tạo nên sự liên kết chặt chẽ của lõi ván. Bước 9: Ván dăm sau khi ép nóng sẽ được chuyển đi xén cạnh để hoàn thiện. Bước 10: Cuối cùng, những tấm ván sẽ được mài nhẵn bề mặt và kiểm định chất lượng trước khi xuất ra thị trường. Sau bước này, thành phẩm sẽ là những tấm ván dăm chắc chắn, cứng và có bề mặt mịn phẳng, có thể đến tay người tiêu dùng để tạo nên những món đồ nội thất chất lượng, bền đẹp. Hiện nay, trên thị trường có rất nhiều nguồn cung ứng ván dăm với nhiều phân khúc giá thành khác nhau. Tuy nhiên, bạn nên chọn lựa những nhà cung cấp uy tín để mua được ván gỗ chất lượng cùng chi phí hợp lý. 3. Công ty sản xuất ván dăm chất lượnghttps://preview.redd.it/v394h8cvwz4b1.jpg?width=624&format=pjpg&auto=webp&s=70e7fbbfd664966f5063b87956e2c922af876d58An Cường là gợi ý mà bạn có thể tham khảo. Đây là thương hiệu chuyên cung cấp vật liệu gỗ công nghiệp hàng đầu tại Việt Nam. An Cường không ngừng cải tiến và đầu tư máy móc, thiết bị hiện đại để tạo nên những sản phẩm chất lượng và uy tín. Không chỉ riêng ván dăm (PB), mà các loại vật liệu khác của An Cường như ván MDF, HDF,… đều đạt những tiêu chuẩn chất lượng khắt khe như E1, E2, E0, Super E0,… được kiểm định nghiêm ngặt trước khi đến tay người tiêu dùng. Ván dăm An Cường sẽ là lựa chọn thích hợp để tạo nên những thiết kế nội thất chất lượng, thẩm mỹ cho công trình của bạn. |
2023.06.09 04:55 Dxtechlaser Hydraulic CNC Press Brake Machine
2023.06.08 21:22 ttnrsmvomsv Juintech GTP-6. 6 piston hybrid brake
![]() | Hello, everyone. Very excited that I just got my GTP-6 yesterday. Beautiful art piece but seems nobody talk about it. Anyhow, I’m having the rotor rubbing issue. Tried the common trouble shoot and press all pistons back but seems the same. Unlike hydraulic brake or cable disc brake this one does not have a valve to adjust piston. The “rear lock knob” is only for adjust the tension of cable. The space to fit rotor is really narrow.Can it be a design flaw? submitted by ttnrsmvomsv to bikewrench [link] [comments] |
2023.06.08 21:10 myboimelvinmole [USA, CA] [H] Some Early TMNT Keys + Other Random Variants And Keys [W] PayPal, Want List
2023.06.08 21:10 CanuckYou2 Hydraulic Press vs. Timber Floor Panels
![]() | submitted by CanuckYou2 to oddlysatisfying [link] [comments] |
2023.06.08 19:05 titsandopinionsuk Drag name
2023.06.08 15:33 pajuhaan Unmasking the Hidden Dangers: What the $120 Billion Hosting Industry Never Wants You to Know
![]() | https://preview.redd.it/29ytgy9sqs4b1.jpg?width=595&format=pjpg&auto=webp&s=b84cc072a8727040f846a5ff42c5f840c929bc89 submitted by pajuhaan to businessOS [link] [comments] The digital world is undoubtedly enchanting. It presents us with an endless array of possibilities and serves as a beacon of innovation. Yet, lurking beneath this digital facade, there are often hidden threats and unseen dangers. One such domain fraught with hidden dangers is the mammoth $120 billion web hosting industry. When you set up your WordPress or Joomla website, using plugins to add functionality, and buy hosting services, you may inadvertently be compromising your privacy and security. Many might wonder, how can a seemingly innocent action such as using more than five plugins on a WordPress or Joomla site make one susceptible to such significant threats? The answer lies in the underlying architecture and mechanisms of these plugins and the hosting services themselves. Plugin Perils Plugins are fantastic tools. They expand the functionality of your site, allow you to add impressive features, and can generally enhance your site's usability and aesthetics. But, the use of multiple plugins also introduces significant vulnerabilities into your system. It's important to note that every plugin installed provides another potential access point for hackers. Each plugin is a piece of code written by developers that interact with your website and, more often than not, your database. If these codes are not properly secured, they may serve as open doors for cybercriminals, making it easier for them to gain access to sensitive data or corrupt your website. Further, not all plugins are created equal. Some are designed with robust security measures in place, while others might be more lax. If you are using a plugin developed by a less meticulous programmer, or one that hasn't been updated recently, you may be leaving your site wide open to attack. The Hidden Threats of Hosting Services The hosting industry, though an essential backbone of the digital ecosystem, comes with its own set of covert risks. Although it's an industry that generates over $120 billion in revenue annually, there's a dark side that's not often discussed. Hosting services are not infallible fortresses. They have vulnerabilities that can be exploited, leading to potentially devastating results. More worryingly, these vulnerabilities can result in your servers being hijacked and used to conduct Distributed Denial of Service (DDoS) attacks on other websites. This doesn't just harm other sites—it also puts your reputation and legal standing at risk. In addition, the hosting industry is notorious for their obscure privacy policies and terms of service. There have been instances where hosting companies have been found to use client data for advertising purposes or even sell it to third parties. This level of information leakage poses a significant risk to privacy, as sensitive data like emails, IP addresses, and even financial data could potentially be exposed. Facing the Reality This information may seem alarming—and it should be. The danger lies not only in the potential security breaches and privacy violations but also in the complacency and lack of awareness about these issues. More often than not, users are entirely unaware that their data is at risk or that they might be unknowingly participating in cyber attacks against other entities. Taking Action Thankfully, there are measures you can take to mitigate these risks. Always choose plugins from reputable sources, keep them updated, and limit the number you use. It's also crucial to choose a hosting provider with robust security measures and a transparent privacy policy. Moreover, educating yourself and staying updated about potential threats is the best defense. We need to recognize that the digital realm, while filled with opportunity, is also a battlefield where privacy and security are constantly at stake. https://preview.redd.it/hiqt3p15rs4b1.jpg?width=2000&format=pjpg&auto=webp&s=99f95590b329e4244567df09c6fc04a6002d4653 The Silent Impact of DDoS Attacks: Escalated Service Costs While Distributed Denial of Service (DDoS) attacks are commonly associated with causing website outages and disrupting services, there's another side to this cyber menace that often goes unnoticed—the escalated cost of service. The attack works by flooding a network with excessive amounts of fake traffic, thus rendering the target unable to cope with the deluge and subsequently bringing it to a halt. However, not all DDoS attacks result in a service outage. In fact, if an attack is perfectly executed, it may increase your service costs dramatically without you even noticing. How can this happen? Let's delve into the intricacies. When a DDoS attack is launched against your service, and you have a Content Delivery Network (CDN) and Armor enabled on Google Cloud Platform (GCP), these defense mechanisms will jump into action. They will start processing the tremendous volume of incoming traffic to keep your service running. However, the costs associated with these defensive actions can quickly pile up. A well-executed DDoS attack could easily add more than $100K to your monthly expenses. At selldone, we have seen this phenomenon happening regularly with numerous self-hosted services on platforms like Alibaba Cloud, Godaddy, Amazon Web Services (AWS), Hetzner, KIXS-AS-KR Korea Telecom, and Digital Ocean. These providers, while offering robust services, can also inadvertently become conduits for significant financial drain during a DDoS attack, even when they manage to keep your website online. |
2023.06.08 13:45 dynamichydrofab Choosing the Right Hydraulic Cylinders Manufacturer: Key Considerations
![]() | Powerful hydraulic mechanisms like jacks or rams. No matter what you call them, the meaning remains the same. A hydraulic system uses pressure to transfer a load, which is captured by a hydraulic cylinder. Many different cylinders are available, so it’s important to consider your specific demands before purchasing. Selecting the appropriate hydraulic cylinder for your pulling and lifting tasks is as easy as answering a few questions. submitted by dynamichydrofab to u/dynamichydrofab [link] [comments] What is the cylinder’s intended function? Cylinders can be used in many different ways. They can also pull, press, hold, lower, clamp, lift and jack. The first step in picking the proper cylinder is realizing the function it must serve. In what context is the cylinder being used?There is a wide variety of uses for hydraulic cylinders made by Hydraulic Cylinders Manufacturer. Extreme temperatures and the rugged terrain of construction sites are just two examples of the challenging environments that many workers must endure. Nitro carburizing the exterior of a cylinder makes it more resistant to rust and corrosion. This increases their resilience considerably. Thus, they’re great for rough settings.https://preview.redd.it/yxuvwkfr7s4b1.jpg?width=907&format=pjpg&auto=webp&s=0690dedd4ed2779e6641a7e56de238127a364718 What kind of swing is needed?The necessary stroke length is proportional to the highest possible collapsed height. The stroke of a cylinder is the vertical distance it travels between its fully extended and fully retracted positions. It’s the vertical distance between the piston stop and the top of the plunger. Hydraulic Cylinders in India, including shorter models, are available for work that requires more stroke. Its stroke determines how far a cylinder can move a weight in response to a push, pull, or lift. A cylinder’s stroke should be above 80% of its maximum value. Better stability and less side load damage are the results of this. Read More:- https://hydrauliccylindersmanufacturerindia.wordpress.com/2023/06/08/choosing-the-right-hydraulic-cylinders-manufacturer-key-considerations/ |
2023.06.08 12:52 Chico237 #NIOCORP~ SCANDIUM OXIDE, GREEN HYDROGEN & BLOOM ENERGY in the news! & more....
![]() | June 7, 2023~Bloom Energy, Perenco to Deploy Solid Oxide Fuel Cells in the United Kingdom~Bloom Energy, Perenco to Deploy Solid Oxide Fuel Cells in the United Kingdom Business WireThe Bloom Energy Server® platform, to be delivered in late 2023, will be installed at Wytch Farm in Dorset, England, the largest onshore oil field in western Europe, where it will be used to support Perenco’s baseload requirements. (Photo: Business Wire) SAN JOSE, Calif. & LONDON--(BUSINESS WIRE)--Bloom Energy (NYSE:BE) has signed an agreement with Perenco to install 2.5 megawatts (MW) of Bloom’s solid oxide fuel cells at a site in England. Perenco is a leading independent hydrocarbon company, producing 500,000 BOE of oil and gas per day from its operations in 14 partner countries. The Bloom Energy Server® platform, to be delivered in late 2023, will be installed at Wytch Farm in Dorset, England, the largest onshore oil field in western Europe, where it will be used to support Perenco’s baseload requirements. The agreement marks the first deployment of Bloom fuel cell technology in the United Kingdom. “This is an important step that will demonstrate how our solid oxide fuel cell technology supports the resilience and sustainability goals of our energy-intensive clients,” said Tim Schweikert, Senior Managing Director of International Business Development at Bloom Energy. “Perenco has always been a pioneer in innovation and long-term investment in the countries where we operate,” said Benoit de la Fouchardiere, Perenco CEO. “Today’s announcement is another important step as we continue to reduce our emissions wherever we work. We look forward to a successful initial deployment at Wytch Farm and to then expanding the use of the technology into other global operations sites.” The agreement with Perenco is another major step in Bloom’s expansion in Europe, following the recent sales agreement for northern Europe with Elugie, a marketing partnership agreement with Telam for Spain and Portugal, and energy platform sales to Cefla and Ferrari in Italy announced in 2022. For more information about the Bloom Energy Server, see https://www.bloomenergy.com/technology/. JUNE 6, 2023 ~Westinghouse and Bloom Energy Sign Letter of Intent to Accelerate Zero-Carbon, Large-Scale Hydrogen Production in the Nuclear Industry~Bloom Energy - Bloom Energy Demonstrates Hydrogen Production with the World’s Largest and Most Efficient Solid Oxide ElectrolyzerCRANBERRY TOWNSHIP, Pa. & SAN JOSE, Calif. – June 6, 2022 – Westinghouse Electric Company and Bloom Energy Corporation (NYSE:BE) today announced that they have entered into a Letter of Intent to pursue clean hydrogen production in the commercial nuclear power market. The companies are teaming to identify and implement clean hydrogen projects across the nuclear industry. Westinghouse and Bloom Energy will jointly develop an optimized and large-scale high temperature integrated electrolysis solution for the nuclear industry. With the ability to operate 24/7 and provide high-quality steam input, nuclear plants are well-positioned to utilize electrolyzer technology and produce substantial quantities of clean hydrogen with minimal disruption to current, ongoing operations. “Through this collaboration, we are committed to delivering an economical solution for large-scale hydrogen production in the nuclear industry, which further supports the path to net zero carbon emissions,” said Pam Cowan, Westinghouse President of Americas Operating Plant Services. “We are proud Westinghouse has turned to Bloom and our solid oxide technology to supercharge the clean hydrogen economy,” said Rick Beuttel, vice president, hydrogen business, Bloom Energy. “Solid oxide technology is well suited for nuclear applications, efficiently harnessing steam to further improve the economics of hydrogen production. High temperature electrolysis is already garnering attention and accolades as a cost-effective and viable solution to create low-cost, clean hydrogen, which is critical to meeting aggressive decarbonization goals.” Global demand for hydrogen and its emerging applications is projected to increase tenfold or more by 2050, surpassing the current infrastructure for producing and delivering hydrogen. As hydrogen usage expands from traditional industrial uses to the fuel of a clean future, the need to produce it in larger quantities and from low- and zero-carbon sources is clear. The hydrogen produced in nuclear plants can be utilized to serve many industries such as renewable fuels production, oil and metals refining, ammonia synthesis, mining operations, and mobility in sectors such as heavy trucks, buses, and even air travel. The companies also are well positioned to support the U.S. Department of Energy’s developing hydrogen hubs. About WestinghouseWestinghouse Electric Company is shaping the future of carbon-free energy by providing safe, innovative nuclear technologies to utilities globally. Westinghouse supplied the world’s first commercial pressurized water reactor in 1957 and the company’s technology is the basis for nearly one-half of the world’s operating nuclear plants. Over 135 years of innovation makes Westinghouse the preferred partner for advanced technologies covering the complete nuclear energy life cycle. For more information, visit www.westinghousenuclear.com and follow us on Facebook, LinkedIn and Twitter. About Bloom EnergyBloom Energy empowers businesses and communities to responsibly take charge of their energy. The company’s leading solid oxide platform for distributed generation of electricity and hydrogen is changing the future of energy. Fortune 100 companies around the world turn to Bloom Energy as a trusted partner to deliver lower carbon energy today and a net-zero future. For more information, visit www.bloomenergy.com. MAY 7, 2023~World’s largest solid oxide electrolyzer begins producing hydrogen~World’s largest solid oxide electrolyzer begins producing hydrogen (hydrogentechworld.com)Bloom Energy has begun generating hydrogen from the world’s largest solid oxide electrolyzer installation at NASA’s Ames Research Center. This high-temperature unit produces 20–25% more hydrogen per MW than commercially demonstrated lower-temperature electrolyzers such as PEM or alkalinehttps://preview.redd.it/r9j9ub5zur4b1.png?width=1536&format=png&auto=webp&s=8de4ed62233ef7c13a523b704dc0d2708068d3f2This electrolyzer demonstration showcases the maturity, efficiency and commercial readiness of Bloom’s solid oxide technology for large-scale, clean hydrogen production. The 4 MW Bloom Electrolyzer™, delivering the equivalent of over 2.4 tonnes per day of hydrogen output, was built, installed and operationalized in a span of two months to demonstrate the speed and ease of deployment. “This demonstration is a major milestone for reaching net-zero goals,” said KR Sridhar, Ph.D., Founder, Chairman and CEO of Bloom Energy. “Hydrogen will be essential for storing intermittent and curtailed energy and for decarbonizing industrial energy use. Commercially viable electrolyzers are the key to unlocking the energy storage puzzle, and solid oxide electrolyzers offer inherently superior technology and economic advantages. Bloom Energy, as the global leader in solid oxide technology, is proud to share this exciting demonstration with the world: our product is ready for prime time.” The current demonstration expands on Bloom’s recent project on a 100 kW system located at the Department of Energy’s Idaho National Laboratory (INL), which achieved record-breaking electrolyzer efficiency. In the ongoing project, 4,500 hours of full load operations have been completed with a Bloom Electrolyzer™, producing hydrogen more efficiently than any other process – over 25% more efficiently than low-temperature electrolysis. The INL steam and load simulations replicated nuclear power conditions to validate full capability of technology application at nuclear facilities, and the pilot results revealed the Bloom Electrolyzer producing hydrogen at 37.7 kWh per kg of hydrogen. Dynamic testing conducted at INL included ramping down the system from 100 percent of rated power to 5 percent in less than 10 minutes without adverse system impacts. Even at 5 percent of rated load, the energy efficiency (kWh/kg) was as good or better than other electrolyzer technologies at their 100% rated capacity. These results will be presented at the Department of Energy’s Annual Review Meeting in Washington DC on 7 June 2023. Dr. Ravi Prasher, CTO of Bloom Energy, said: “The amount of electricity needed by the electrolyzer to make hydrogen will be the most dominant factor in determining hydrogen production cost. For this reason, the efficiency of the electrolyzer, the electricity needed to produce a kilogram of hydrogen becomes the most critical figure of merit. This 4 MW demonstration at the NASA Ames Research Center proves that the energy efficiency of our large-scale electrolyzer is similar to the small-scale system tested at INL highlighting the strength of our modular architecture. The electrolyzer product is leveraging the Bloom platform knowhow of more than 1 GW of solid oxide fuel cells deployed in the field and providing approximately 1 trillion cumulative cell operating hours. The same technology platform that can convert natural gas and hydrogen to electricity can be used reversibly to convert electricity to hydrogen. With Bloom’s high-efficiency, high-temperature solid oxide electrolyzers, we are one step closer to a decarbonized future powered by low-cost clean hydrogen.” April 5, 2022 ~Scandium emerges from the shadows~Scandium emerges from the shadows - MMTAhttps://preview.redd.it/r50wjw0vvr4b1.png?width=343&format=png&auto=webp&s=d2a2670c3411f9f5f915be5856236c16c3e938ad Scandium has long been considered an “if” metal. If only it were available in quantity, it could transform aircraft production and fuel consumption. If only it were available in quantity, it could speed the emerging hydrogen economy. If only it were available in quantity, it could accelerate the rollout of 5G technologies. And so on.The view has been that scandium could be used in numerous large-volume applications, if only supplies were sufficient to meet the potential demand. Manufacturers regularly cited a lack of sufficient scandium supply as the reason why they did not roll out new uses and products containing scandium.After a near-mythic role in the 1980s (as a strengthening agent in aluminium alloys deployed in the last generation of Soviet MiG fighter aircraft and even, reputedly, in ballistic missile nosecones), scandium entered the banal in the 1990s, in sporting goods and, bizarrely, hand guns. Bloom Energy turned the tide starting around 2010, with its introduction of fuel cells based on scandium-stabilised zirconia ceramic electrolytes. Bloom has grown rapidly and now represents perhaps 80% of the world’s annual consumption of SCANDIUM, a paltry 25t or so of oxide in 2021.And yet, despite these rickety foundations, SCANDIUM consumption is poised to grow dramatically in the next decade, buoyed by new sources of supply and sustained by demand-side innovation.The supply sideLet’s start with supply. Until about 2018, most scandium was supplied as a by-product in China and Russia, from uranium and titanium processing. Since then, however, much has changed.First, Sumitomo Metal Mining built and has now commissioned a scandium recovery circuit at its Tagano Bay nickel high pressure acid leach (HPAL) plant in the Philippines. This plant recovers scandium oxalate for processing into oxide (and probably into scandium-zirconium oxide particles destined for Bloom Energy) in Japan. The plant recovers 7-8tpy of scandium oxide and when commissioned increased global supply by around 40%. Capital costs were perhaps US$5M/t of scandium oxide. Second, the Chinese integrated titanium producer Lomon Billions has established a 20-30tpy scandium oxide facility with the potential to increase to 50tpy. The company estimates up to 100tpy of scandium oxide are available in its titanium plants using the sulphate process. Third, in 2021, Rio Tinto commenced scandium recovery from its Sorel Tracy plant in Québec, Canada. The pilot plant can supply 3tpy of scandium oxide and cost US$6M. The site has the ability to supply an estimated 50-60tpy of oxide based on current raw material feed. Finally, UC Rusal has both commissioned a 3tpy pilot scandium oxide plant, recovering scandium oxide from red mud deposits, and also commenced marketing and selling a range of scandium alloys (branded “ScAlution” alloys) that boast enhanced performance at low (typically 0.1%) concentrations of scandium. Plus, it is not only Rusal that has pioneered low-scandium alloys. In the USA, Eck Industries, a specialist aluminium casting house, is commercialising cerium-based alloys in which scandium, again at low loadings, could provide additional strength as well as much reduced post-cast processing requirements. Looking further out, there are numerous scandium projects in development, many of which should come into production around the middle of the decade, thanks to two parallel forces. The main driver for scandium, as for so many minor metals, is vehicle electrification. There are multiple operating and development projects utilising HPAL technology to recover and separate nickel and cobalt in laterite deposits, many of which can in principle recover scandium. While the moral of Tagano Bay is that for existing plants retrofitting can be costly and low yield, there are emerging projects in Australia that are designing scandium recovery into their circuits alongside nickel and cobalt. The potential output of scandium can range from 50-100tpy or more, depending on the project. The second driver is the heightened concerns over supply chain security for critical metals. In the EU this has led to the “ScaVanger” programme to recover scandium from titanium waste streams. In the USA, red mud scandium recovery as well as by-product scandium stand to benefit. The demand sideThe demand side is a little more complicated but nonetheless extremely positive. Bloom’s power generation business continues to grow and has surely been reinforced by severe power disruptions in the past three years in California and Texas. Moreover, Bloom has now received initial approvals for maritime power generation (IMO regulations are forcing seagoing vessels to reduce dramatically their sulphur emissions, and Bloom can facilitate this change), and Bloom is also developing its technology to run in reverse, so to speak, as a generator of hydrogen. Critically, Bloom in the past five years has managed to bring its system costs and performance under control, removing any technology-related going-concern issues.Scandium is also a strong candidate for RF antennas able to support 5G frequencies. A typical high-end cell phone may require 100 RF filters, and in the 5G frequency range, scandium aluminium nitride is being used as the active material in these filters (called “bulk acoustic wave,” or “BAW” filters). Aerospace is a third area of application, and while commercial aviation likely remains years away from broad use of scandium alloys, near-term use in space and autonomous aircraft is an avenue for strong potential growth of scandium alloys. The cost to place 1kg in orbit has dropped dramatically but is still of the order of US$1,000/kg, so any system weight reductions can be extremely valuable. Electric vehicles (EVs) also offer the potential for large volumes of scandium demand. Weight reduction is the obvious reason. Lux Research has estimated a 1kg weight saving in an EV will be worth US$5 in 2030. But a second consideration is overall product cost. Scandium can reduce or potentially even eliminate the need for post-casting heat treatments, which can in some instances double the cost of an as-cast part. Thus the savings from the use of scandium alloys, especially at low scandium loadings, can be large. In addition, as EVs shift to heat pumps in their HVAC systems, scandium can support the implementation of aluminium radiators without adding substantial system volume (as discussed by CM Group in its 2018 scandium report). Naturally, there are other opportunities for scandium. Achieving a robust aluminium alloy able to perform at 300°C could displace large amounts of titanium, and Eck’s alloys are closing in on this goal. Maritime applications, especially in the military arena but also in autonomous vessels and ferries, could embrace scandium thanks to its greatly enhanced anti-corrosion impact in aluminium. Passenger jets are also a market that is likely to happen at some point. Most important, perhaps, is the fact that well financed firms have entered the market and are able to supply up to about 100tpy each. Supply at this level is all-but-certain to create demand, and in turn this should stimulate new supply. Scandium’s chicken-and-egg problem, in which lack of supply held back demand that in turn held back supply, has been reversed, with growing (and reliable) supply poised to stimulate actual demand, that in turn will pull through new supply, and transform scandium from “if” to “when”.JANUARY 2023 National Defense Act Calls out NIOBIUM & TITANIUM & SCANDIUM & the need to establish a U.S. Industrial Base for the Supply & Processing of ALL!https://docs.house.gov/billsthisweek/20220711/CRPT-117hrpt397.pdSCANDIUM PAGE # 246 Briefing on the Establishment of Domestic Scandium Processing Facilities in the United StatesThe committee believes the United States industrial base for the supply and processing of the critical mineral scandium has significant vulnerabilities. The committee also believes that the United States should seek to eliminate dependence on Chinese and Russian sources of scandium, with support from allies and partners. Accordingly, public and private sectors should cooperate closely to establish scandium processing facilities in the United States. Therefore, the committee directs the Secretary of Defense, in consultation with the Secretary of Commerce, to provide a briefing to the House Committee on Armed Services not later than May 1, 2023, on public and private sector activities, working with allied nations, to establish scandium processing facilities in the United States, especially facilities based on more efficient, cleaner, and less energy intensive technologies. This briefing will also include how these processing facilities will help the United States reduce dependence on and compete more effectively with China and Russia. MAY 2023 ~Exploring global supply and demand of scandium oxide in 2030 ~ (NIOCORP is Mentioned!)Exploring global supply and demand of scandium oxide in 2030 - ScienceDirecthttps://preview.redd.it/lokhkunrzr4b1.png?width=174&format=png&auto=webp&s=f4f4c27d6227cfe5eb054751a217d712fe2f0e81 Incorporation of scandium in materials has environmental benefits across multiple industrial sectors, particularly in decarbonization of energy. One pathway to mitigate greenhouse gas emissions is to generate electricity using hydrogen or synthetic liquid fuels, which are more efficient than combustion engines and easily used in co-generation of electricity and heat (IEA, 2019). The functional technology is a fuel cell. A solid oxide fuel cell (SOFC) produces electricity by oxidizing an energy carrier. The standard SOFCs produced by Bloom Energy are refrigerator-sized and input liquid or gaseous hydrocarbons (methane or biogas) to produce 100 kW of power. These cells process natural gas, biogas, or hydrogen to generate electricity with higher efficiency; up to two times higher compared to a gas-fired power station with efficiency of only 33–48% (Deepika et al., 2018). They are typically used to produce electricity and heat on-site for large buildings (Bloom Energy, 2021a). Currently, SOFC producers (e.g., Bloom Energy) utilize yttrium-stabilized zirconia and a scandia-stabilized zirconia in electrolytes; however, there are benefits of utilizing scandium over yttrium. Use of scandia-stabilized zirconia increases electro-conductivity and decreases operation temperature, resulting in higher efficiency and reliability (Deepika et al., 2018; Laguna-Bercero et al., 2009). Spurred by carbon reduction and global renewable energy initiatives, Bloom Energy is expanding its partnership worldwide (Bloom Energy, 2020, 2021b), resulting in increased demand in the SOFC market and scandium oxide required to produce SOFC boxes (Weinstein et al., 2018). Scandium also has potential for light-weighting (alloys), which is important for improving fuel economy as it requires less energy to transport lighter materials. Currently, transportation contributes 27% to total U.S. greenhouse gas emissions and 14% globally (EPA, 2022; IEA, 2022b). The Corporate Average Fuel Economy standards require vehicle manufacturers to continuously increase fuel efficiency (NHTSA, 2022). One approach is through light-weighting by replacing conventional aluminum alloy parts in vehicles with scandium alloys, potentially reducing 10% of vehicle mass and thus 6–8% of emissions (Joost, 2012). Given that the United States passenger vehicle emissions were 3.2 gigatonnes in 2020, this would translate to 0.2–0.3 gigatonnes of reduction (IEA, 2022a). In the United States, the Build Back Better agenda mandates 50% of new vehicles in 2030 must be EVs (The White House, 2021). To push emission reductions further than electric vehicle adoption, light-weighting should be considered. If legislation mandated regulation like Corporate Average Fuel Economy standards for EVs, there will be further reductions in energy demand. Lighter scandium alloys serve to reduce energy demand from transportation, which directly aids to mitigate climate change induced by automobiles. Another example of light-weighting is for commercial airplanes. The bionic partition structure is a wall partition between crew members and passengers, which also serves as an emergency stretcher and foldable seating for crew members (Airbus, 2016). Current commercial airplane's partition structures are bulky and heavy, weighing approximately 63 kg (Lau, 2016). Airbus and AutoDesk collaborated and successfully produced a 30 kg bionic partition structure using Scalmalloy®, a proprietary aluminum-magnesium-scandium alloy (APWORKS GmbH, 2015; Rhodes, 2015). Replacement of 4 conventional partition structures per A320 plane in commercial aircraft with Scalmalloy® structures could save up to 465,000 tonnes of carbon dioxide emissions per year (Airbus, 2016). Despite scandium's potential role in meeting future sustainability goals, historically and currently, scandium is under-utilized because of its low supply and high cost due to its nature as a by-product. Prices of scandium oxide ranged from $3,800–5,000 per kg from 2013 to 2020 (Gambogi, 2017, 2020, 2021), placing scandium among the most expensive elements in production. High prices and low supply are due in part to its production as a co-product - production is dependent on the demand of other primary metals it is mined with. For example, when there is an increase in scandium demand and price, supply does not respond instantaneously because producers need to increase production of the primary products. This leads to price volatility. Scandium oxide is produced as a co-product due to its sparse concentration in ore, which makes it uneconomical to mine alone. It has been extracted as a co-product with iron ore, other rare earths, titanium, and zirconium in China; uranium in Kazakhstan and Ukraine; apatite (phosphorus) and uranium in Russia; and nickel in the Philippines (Gambogi, 2021). The global production of scandium oxide was 14–23 tonnes (15–25 tons) per year in 2020 (Gambogi, 2021), which was small in comparison to 220,000 tonnes (240,000 tons) of global rare earths oxide per year (Cordier, 2022) and 68 million tonnes (75 million tons) of aluminum per year (Lee Bray, 2022). Scandium appears to continue as a co-product in the future, for the most part. Mining companies expect scandium to be a minor co-product from mining other metals such as nickel, cobalt, titanium, niobium, etc. (Clean TeQ Holdings Limited, 2018; NioCorp Superalloy Materials, 2019; Platina Resource Limited, 2021; Wang et al., 2020). There is one exception in New South Wales, Australia by Scandium International Mining Corporation, whose primary product is scandium oxide (Scandium International Mining Corp, 2020). For consumption, SOFCs by Bloom Energy are the main scandium oxide consumer with 74% of total global consumption (CM Group, 2018). A typical Bloom Energy server box of 100 MW contains 13–15 kg of scandium oxide and costs $700,000–800,000 in 2010 (Ecclestone, 2020; Jenkins, 2010). Before subsidies, Bloom Energy servers cost approximately $0.14 per kilowatt-hour of electricity compared to $0.10 per kilowatt-hour of retail power price on the U.S. national grid (Helman, 2020). Although sufficient and reliable supply play an important role in other sectors (e.g., SOFCs, commercial aerospace), price is crucial in adoption in other sectors (e.g., sporting goods, beverage cans). Abstract continues.... NIOCORP MANAGEMENT ON Jan. 31st, 2023, ~What were they doing in D.C. for 4-Days?~ "Working with White House officials on critical minerals issues. This Administration is working hard to help support environmentally responsible critical minerals projects like NioCorp’s Elk Creek Project in the great State of Nebraska. "~ https://preview.redd.it/bb87n8zfwr4b1.png?width=800&format=png&auto=webp&s=d9eba677e221dd23bafaabeb826ac059b7fc6835 MAY 25th 2023 ~NioCorp Demonstrates Higher Niobium Recovery Rates New Processing Approach Demonstrates the Ability to Make More Niobium per Tonne of Ore, Produce a Higher Purity Product, and Potentially Address New Markets with Different Niobium Productshttps://www.niocorp.com/niocorp-demonstrates-higher-niobium-recovery-rates/Potential New Forms of Niobium Products and Potential Markets NioCorp’s new process approach, which incorporates a chlorination step to improve niobium and titanium separation and purification, also has demonstrated NioCorp’s ability to potentially produce three different niobium products: (1) ferroniobium; (2) niobium chloride; and (3) niobium oxide.NioCorp had previously planned to make ferroniobium, which is used by the steel industry to produce high-strength low-alloy steel alloys. Those alloys are used in the construction, automotive and transport, aerospace and defense, oil and gas, and other industries. Niobium is a $3.3 billion per year global market but is currently served by only three major niobium producers in two countries.Niobium chloride would likely be converted by NioCorp into niobium oxide, but niobium chloride is also used in glass and ceramic manufacturing.Niobium oxide is critical to multiple applications, including niobium-lithium-ion batteries, superalloys, superconducting applications, capacitors, specialized optics, and many others. Its use in niobium-lithium-ion batteries is considered by current niobium producers as one of the fastest growing prospective global niobium markets https://preview.redd.it/mv11q5ekwr4b1.png?width=250&format=png&auto=webp&s=a85e56f24ba311287811a0ad0188e40ca9cc2f20 MAY 26th 2023~NioCorp Demonstrates the Ability to Potentially Double Projected Titanium Recovery Rates for the Elk Creek Projecthttps://www.niocorp.com/niocorp-demonstrates-the-ability-to-potentially-double-projected-titanium-recovery-rates-for-the-elk-creek-project/Demonstration Plant Shows New Recovery Process May Double NioCorp’s Titanium Production per Tonne of Ore as well as Produce a Higher Purity Product that May Command Higher Market PricesCENTENNIAL, Colo. (May 26, 2023) – NioCorp Developments Ltd. (“NioCorp” or the “Company”) (NASDAQ:NB) (TSX:NB) is pleased to announce that it has successfully demonstrated an ability to potentially double the recovery of titanium from each tonne of ore the Company expects to mine at its Nebraska-based Elk Creek Critical Minerals Project (the “Project”), once project financing is obtained and the commercial plant is constructed. The new process is expected to produce a purer form of titanium that may command a higher price than is assumed in NioCorp’s June 2022 feasibility study for the Project (the “Feasibility Study”). NioCorp’s demonstration plant in Trois Rivieres, Quebec, has shown that the Company’s new and improved recovery process can likely achieve an 83.7% rate of overall titanium recovery to final product. This compares to a 40.3% titanium recovery rate in NioCorp’s previous process approach. This new result points to a potentially large increase in the amount of titanium that NioCorp can potentially produce at currently planned rates of mining MAY 29th 2023~NioCorp Launches Phased Approach to Commercial Production of Made-in-America Aluminum-Scandium Master Alloyhttps://www.niocorp.com/niocorp-launches-phased-approach-to-commercial-production-of-made-in-america-aluminum-scandium-master-alloy/AMES LAB COLLABORATION IN 2019! NioCorp Partnering with Nanoscale Powders LLC to Explore the Possibility of Establishing the First US-Based Mine-to-Master-Alloy Vertically Integrated Production of the High-Performance MaterialNioCorp’s Potential Commercial Production of Al-Sc Master Alloy Could Launch Prior to the Company’s Planned Production of >100 Tonnes/Year of Scandium Oxide at its Proposed Elk Creek Critical Minerals Project in Nebraska and Would Use Scandium Produced at the Elk Creek Facility as well as From Other SourcesChina Now Dominates the Scandium World, but North America is Now Positioned to Emerge as a “Leading Scandium Producer,” says NioCorp CEO MAY 29th 2023~ Jim/NIOCORP respond to question on recent Scandium News Release above:What comes to mind right off the bat is:*A)"How is this Scandium AlSc master Alloy different than what Niocorp produced with IBC & AMES laboratory???"*Response:"It is a different process that will be utilized. "*B) Will this be a Patentable approach now moving forward? in conjunction with Nanoscale???*Response:" Yes and yes. But we do not discuss the details of intellectual property matters except as required by law"(\****This is very interesting indeed because a few years back Niocorp was not interested in patenting any such materials!)**C) IS NIOCORP still engaged with IBC, AMES & OTHER ENTITIES in regards to Scandium Alloy production & uses moving forward? and with the New Niobium & Titanium oxides as well!!!! *Response: "We are focusing on our partnership with Nanoscale on the production of AlSc master alloy, but we engaged with a number of parties on various elements of our scandium-aluminum master alloy business development. We are not working with IBC on niobium or titanium product development efforts."(****SOUNDS LIKE OTHER COLLABORATIONS ARE ONGOING WITH POSSIBLE PRIVATE & GOVERNMENT ENTITIES?? OFF-TAKE AGREEMENTS & SO MUCH MORE! COULD BE IN PLAY AS THE MINE IS BUILT & NEARS PRODUCTION!!!!!!)"ENGAGED WITH A NUMBER OF VARIOUS PARTIES!!!!"FORM YOUR OWN OPINIONS & CONCLUSIONS ABOVE!(Please Scroll down to see earlier Reddit POST ON GREEN HYDROGEN!)https://preview.redd.it/xgyok547yr4b1.png?width=480&format=png&auto=webp&s=935baf0d83038b08431d58f6692168529e67224d https://preview.redd.it/bn09y1c8yr4b1.png?width=383&format=png&auto=webp&s=7f162043be273147b27f20a6f90f286c0c2e9a07 Chico |
2023.06.08 11:12 PocketFMofficial He refused to marry her, but 5 yrs later he was shocked when she returned as the richest woman in the country.
![]() | submitted by PocketFMofficial to u/PocketFMofficial [link] [comments] https://preview.redd.it/58jrjcydgr4b1.png?width=1920&format=png&auto=webp&s=9d7a1094acc28a5c8ca43e5215520350f6b47e11 Episode 1. I Don’t Want You To Be Happy It was 10 p.m. and the moonlight was dazzling. Room 101, on the top floor of Hotel Waverick Seattle, was pitch black, and there was the faint sound of breathing. Natalie Davidson opened her eyes, but the world before her was so muddled that she couldn't see clearly. Her body felt strange as if it had caught fire and she was burning alive. Someone seemed to be lying on top of her, pressing down, but no matter how much she struggled to push him away, he remained motionless. Her mind was a mess and she couldn't think straight. She only vaguely remembered that the previous night she had welcomed her fiancé back from his travels abroad, and then because she was so happy and drunk, she had been brought to her stepsister's room to rest. She hadn’t expected to find this when she woke up. "Who are yo–" Natalie's voice was cut off by a heavy gasp from the man, and his grip on her body got tighter and tighter. She didn't have the strength to push him away. "Let me go …" She had never felt like this before. A wave of lust washed over her, and she could not help but respond to him. Her body was exceptionally hot and she frowned. Something wasn't right. The feeling of lust faded and she suddenly felt terrified, but she couldn't stop the man. As he pushed into her, she felt herself losing consciousness until finally she couldn't stay awake any longer and passed out. Outside, the sky was dark. Around three in the morning, the cell phone on the bedside table vibrated violently. With a frown, the man woke up from his sleep. His gaze slid across the messy bedsheets and then over to Natalie, who was covered only by a thin blanket. His expression immediately darkened. He picked up the phone and slammed it down. The hostility in his eyes was clear. These people had actually dared to drug him. They must have gotten tired of living. Steadily, he got up, threw back the covers, and went to take a shower in the bathroom. Afterward, without a trace of hesitation, he turned and left the room, as if the person on the bed was just an object he didn't need to pay attention to. When Natalie woke up, it was morning. The moment she opened her eyes, she felt pain. She had a splitting headache and her entire body was extremely sore as if it had been beaten. She sat motionless at the head of the bed. The events of the previous night flashed through her mind like a movie, making her tremble with despair. The man who had assaulted her was obviously not her fiancé, Nick. How could she have lost her virginity under such strange circumstances? What should she do? What on earth should she do? She hurriedly picked up her clothes from the floor and put them on. She wanted to go home quickly and wash up; she couldn’t bear to stay in this room even a second longer. But the moment she opened the door, she saw Nick, who was standing outside with a shocked face, alongside her stepsister Sheryl and her father Tom, who both looked furious. "Nick?" Natalie didn't know how to explain and barely got a grip on her thoughts before she was slapped in the face by her father. The mess in the room had not been cleaned up and the evidence of what had happened there was obvious. "Look at what you’ve done! You’ve cheated on your fiancé, you’ve embarrassed me, you’ve embarrassed the whole family! How could I have raised a daughter like you?" Nick gripped Tom’s hand tightly and frowned as he looked at her face. "Natalie, how could you do this?" "No, no." She shook her head with all her might, trying to clasp his hand, afraid that he would leave. “I was drunk last night. I only came back to the room to rest.” She suddenly looked at Sheryl, who was standing in front of her with wide eyes. “You did this, didn’t you? You were the one who brought me back to the hotel last night, to this room. Why did you do this to me?" When Sheryl heard this, she looked wrong. "I don't understand what you're saying. I did no such thing." "You didn't?" Natalie growled as her anger reached its peak. "Then how did I end up in someone else's room? Why would that man–" "Enough!" Nick interrupted her with a loud shout as if he didn't want to hear any more. "You want to blame someone else for what you've done?" He looked at her coldly. "I only left for six months and you're already this desperate. Did you really have to climb into someone else's bed?!" Natalie hugged her arm in panic as tears rolled down her cheeks and dripped onto the carpet. She couldn’t believe Nick was saying these things. They had been together for three years and were about to get married. "Nick," she said in a low voice, practically begging as she looked at the resolute man in front of her. "Please believe me …" "Don't say any more, just listening to you disgusts me." With a look of pure disdain, he turned around and strode off down the corridor. "The engagement’s off. I don't want to see you again." His words were like a sharp knife stabbing straight into her heart. Despair slowly spread through her and was on the verge of spilling out. It was so painful that she could no longer breathe. "Nick!" She staggered after him, but her father grabbed her by the arm and shoved her to the floor. “Natalie, you’re no longer part of this family. From this day on, you’re not my daughter!” She was stunned. After they left, her head was in shambles; she didn't even know how she made it home, but by the time she did her belongings were already packed and left by the door. Tom had even booked a plane ticket for her, and he told her to pick up her stuff and leave the country immediately. "Natalie, are you alright?" She was in a daze as she lowered her head to pick up her things. Sheryl walked down the steps at a leisurely pace. When Natalie ignored her, she didn't get angry. Instead, she laughed. "Do you really want to know how you ended up in that room? Let me tell you. You were right, I put you there. I did it because I want to marry Nick and I can't stand the thought of you being happy with him." Episode 2. Exile Natalie raised her head and bit her lip. She was so angry that she couldn't utter a single word. Her whole body was trembling with fury. She couldn't understand why Sheryl would ruin her life like this. "Hmm” Sheryl smiled, “So what if you’re angry?" Sheryl played with her curly hair and sneered. "Nick doesn't believe you. Your father doesn't believe you either. You can go abroad and live on your own." Natalie was furious. "Why are you doing this to me? Why are you running my life? Why" She rushed forward hysterically and wrapped her hands around Sheryl’s neck, but Sheryl didn't resist. She only blinked pitifully at her. "Sister, don't hurt me … Last night really wasn't my fault … What are you doing?" Hearing the commotion, Tom rushed out, looking so angry that the veins on his neck stood out. He raised his hand and pushed Natalie to the ground. "Are you crazy? Are you trying to kill your sister?" Natalie fell to the ice-cold sidewalk, where she remained. Unable to bear the pain any longer, she was on the verge of tears. She thought of her mother and her childhood, but no matter how hard she wished, she could never return to that time. Rosemary, her stepmother, came up behind her. When she saw the marks on her daughter's neck, she was so angry – just like her husband – that she raised her hand and slapped Natalie. "You uneducated brat! You're just the same as your mother! You might as well die!" The more she slapped, the harder each slap became. Tom stood beside her, but he only seemed to be concerned about Sheryl's injuries. As the attack went on, Natalie’s vision grew blurry from the blows, but all she could feel was the coldness in her heart as if all warmth had left it. —----------------------- At that time, in his office at the Clair Group, Bryce was looking at his assistant with a malicious expression. "What's going on?" His face was so gloomy that his gaze could bore holes through a person. "How is the investigation going?" His assistant was sweating under his gaze, but he swallowed and told him the news. "It's Evan Wilson." Bryce knew of Evan. A while ago, he had worked with the Clair Group on a project and had taken many kickbacks from it. Bryce didn't like his way of handling things, so he had sent his men to destroy the Wilson family. Right now, the Wilsons were on the verge of bankruptcy and collapse. "Evan bribed the hotel's waiter and drugged you. He probably wanted to use this to …" The assistant's voice trailed off until he was no longer breathing. The situation was clear now: Evan was behind all of this. Bryce had never thought that something would go wrong and that he would have to completely deviate from his original plan. "I checked, Evan booked a room in the hotel last night." The assistant looked up at him hesitantly, then looked down again. "But you didn't use it …" Bryce's expression suddenly changed and he asked in a low voice, "What do you mean?" The assistant was confused. He could only look at his face and repeat hesitantly, "You didn't use the room yesterday." If he didn't go into his room, then who was the woman who had been lying on his bed? In his mind, he saw broken images of her flushed cheeks and her body writhing beneath him, but what he remembered clearest were those cries of grief and heart-breaking pain. He suddenly remembered the crimson spots on the sheets that he had noticed before he left — the woman had been a virgin. Bryce's brows knit together. He told his assistant in a deep voice, "Go check the identity of the woman who was in my room immediately." He wanted to know where she had come from. The assistant immediately hurried off to do as he had been told. But no matter how fast he moved, he wouldn’t be able to find any useful information. The hotel’s surveillance tapes had already been wiped by Sheryl. How could she possibly leave behind evidence that would show that she had set Natalie up? Naturally, she had had to cover her tracks. After doing this, she continued to pretend that she was innocent, and gloated as she watched Natalie get kicked out of her house in a sorry state. Natalie didn't even stay a night before she was packed off and sent out of the country. She lugged her heavy luggage onto the plane. She had been exiled without knowing when she could return. Episode 3. You’re My Daddy Five years later, Natalie stood in the first-class lounge at Heathrow Airport, staring at the two tickets in her hands, unable to focus. She had been in England for five years and in all that time she hadn't made even one phone call to her family. Her father treated her like she was dead and as if he couldn't care less about it. If it wasn't for Sheryl and Nick’s engagement, he might not even have remembered she existed. Her heart had no attachment to the place she had been separated from for years. All her feelings had been erased on the day she was thrown out. She didn't want to go back and see the people who had hurt her, but she couldn't stand listening to her father's threats on the phone. If she did not do what he said, he would not let her grandmother live peacefully, he could even hurt her. Her grandmother was the closest person in the world to her. She had wanted to bring her to England to spend the rest of her life there, but she couldn't sway the old lady from her desire to be in the country where her husband and daughter had lived. Natalie had no choice but to leave her where she was. If it wasn't for her grandmother, she probably wouldn't go back for the rest of her life, but she couldn't afford to lose her to her father’s anger. "Mommy, Mommy." Lost in her thoughts, she suddenly heard a lovely, gentle voice beside her. She looked down and saw a four-year-old boy lightly tugging at the corner of her jumper. He told her in a serious tone, "Stop daydreaming. The plane is about to take off." Only then did she recover her wits. The anger in her eyes gradually softened as she smiled and picked up the child. "Alright then, let's go to the gate." At the same time, on the other side of the first-class lounge, a tall man in a suit with two burly bodyguards standing behind him strode towards the gate with a cold expression. Natalie had bought first-class tickets. In the past few years, she had suffered a lot from feeling rootless in a foreign country, and she had developed many issues. She had bad insomnia and headaches, and she was afraid of loud noises. The moment she got on the plane, she covered her eyes with a blanket to try to fall asleep, but first, she told Liam to be good and not run around. Liam was her most precious treasure. He was very well behaved. He sat on his seat as he was told and played with the toy she had bought him, occasionally stealing glances at her. Natalie put her head against the window. He soon noticed that she did not look well. "Mommy." He leaned across and looked at her. Seeing that she was frowning, he asked worriedly, "Are you not feeling well?" Natalie coughed twice due to an itch in her throat. With a hint of weakness in her voice, she answered, "I'm fine …" She looked at the child and forced a smile. "I'm just a little thirsty." Without waiting for her to say anything, Liam jumped out of his seat and hurried off excitedly to get her some water. She didn't know who he took after. He was only four years old, but he was as sensible as a small adult, and he could even take care of her. Liam came running back with a glass of water. As he reached their seats, he bumped into a man who had just stepped into the plane. The glass in his hand wobbled and the water spilled from it, wetting the man’s shoes and the legs of his pants. Bryce lowered his head and looked at the water stains on his clothes. He frowned in displeasure. "What are you doing? Don't you know to watch where you're going?" "I'm sorry." Liam held the cup and apologized repeatedly. But when he raised his head and looked at the man, he was immediately stunned, "I …" Liam had once finally mustered the courage to ask his mother about his father. Natalie was taken aback and stood speechless for a moment before she randomly showed the young boy a picture of a handsome man and told him that this was him. Looking at Bryce, Liam instantly somehow recalled the same picture, and realized that the two men resembled each other to almost a fault! Bryce was a well-built man, who possessed a muscular demeanor and suave gait. His pose and grace made the young boy quiver. The more he looked at Bryce, the more he felt that the man in front of him fit his image of his father from the picture. He stood quiet for two seconds, before hurling himself at Bryce’s long leg and then shouted, "Daddy!" The two bodyguards behind Bryce were completely taken aback by the scene unfolding in front of them. They had been with Bryce for a long time, but this was the first time they’d seen someone act so affectionately with him, let alone someone so young. Bryce's expression instantly turned ugly. He reached out his hand to push away the little arms that were wrapped around him and said coldly, "Don't randomly call people your father. I'm not your father." He had known many women who had claimed to be pregnant with his child, but this was the first time he had ever seen such a clever and affectionate 'son'. Liam stared at his face and answered with certainty, "You are my daddy. Why did you abandon me and Mommy?" The more he spoke, the more wronged he felt. He pouted his small mouth and put on a pitiful expression. When the passengers beside them heard this, they immediately looked over in curiosity. Natalie couldn’t sleep through the commotion. She opened her eyes and looked in the direction of the noise, only to find her son standing in the middle of the aisle, holding onto the leg of an unfamiliar man. "Sorry, sorry." She quickly got up. Embarrassed, she reached out to take the child's hand. "He must have made a mistake. Liam, let go of him." Her son had always been sensible and listened to her over anyone else, but today she didn't know what was going on. No matter how much she tried to persuade him, Liam continued to hold onto the leg of that strange man's pants. He bit his lips in frustration and refused to let go. Bryce was a cold person, but when he looked at the child's pitiful expression, he felt a bit moved. He frowned and said to Natalie, "Why did you become a mother? If you couldn’t give him a complete family, it would have been better not to have him at all." |
2023.06.08 08:18 SourcerBot Russia decided accidents at hazardous facilities would not be investigated shortly before blowing up Kakhovka Hydroelectric Power Plant
873 "On the specifics of applying the provisions of the legislation of the Russian Federation in the field of industrial safety at hazardous production facilities and ensuring the safety of hydraulic structures in the territories of the Donetsk People's Republic, Luhansk People's Republic, Zaporizhzhia Oblast and Kherson Oblast". Details: The document also contains clauses stating that until 1 September 2023 and 1 March 2024, some provisions of the Russian laws "On industrial safety at hazardous production facilities" and "On the safety of hydraulic structures" will not apply to facilities in the so-called "Donetsk People's Republic", "Luhansk People's Republic", and temporarily occupied Zaporizhzhia and Kherson oblasts.Keep reading with 3 related articles: Yahoo News (2023-06-06 at 09:56) Kakhovka Hydroelectric Power Plant: 150 tonnes of engine oil flows into Dnipro river EUROMAIDAN PRESS (2023-06-07 at 18:44) Russo-Ukrainian War. Day 469: Massive flooding after an explosion at the hydroelectric power plant The Jerusalem Post (2023-06-06 at 18:03) Who is responsible for blowing up Kakhovka dam?
2023.06.08 07:51 ChinchillaJikifan69 I miei top delle danze dramatique de prenssota hidraulique, Monteverdi, Opus 69 (My top 8 most dramatic hydraulic press dances)
![]() | submitted by ChinchillaJikifan69 to kikos_community [link] [comments] |
2023.06.08 05:43 metalcabinets Student cabinet
![]() | Description:Low Cabinet, Color Locker, Student Cabinet, Classroom Schoolbag, Multi Door Cabinet submitted by metalcabinets to u/metalcabinets [link] [comments] Material: Iron Surface: Powder Coated, 'Color Can Be Customized According To Raul Color Number Application: School, Enterprise Sample Size:545x1220x1380mm Company Name:Deqing SinoRay Metal Products Co., Ltd. Web:https://www.zjsinoraymetal.com/product/custom-lockers/student-cabinet.html ADD:No. 36, Xuri Road, Deli Industrial Park, Leidian Industrial Zone, Deqing County, Huzhou City, Zhejiang Province, China Phone:86 572 8367751 [Email:[email protected]](mailto:Email:[email protected]) Tip:313001 Profile:The company has a self-built workshop of 9000+m², and a full set of production and processing equipment, including internationally advanced Japanese AMADA company CNC punching and CNC bending machines, 16T-100T punching machines, 100T-500T hydraulic presses, shearing machines, sheet leveling machines, shot blasting machine, edge milling machine, tube shrinking machine, automatic laser cutting machine, plasma cutting machine, single and double head tube bending machine and various welding machines, automatic welding robots, laser welding machines, and a full set of coating production line equipment. https://preview.redd.it/reahc5mstp4b1.png?width=600&format=png&auto=webp&s=e6bcf3fc84123fff1b5b2f3b17030d963aab1827 |
2023.06.08 04:22 Soundengineer_uk Removing pressed ball joints...
2023.06.08 02:33 Frickalope67 Updated Personal Big Board with Notes
2023.06.07 21:15 Maxton1811 Perfectly Wrong 3
2023.06.07 17:56 uggsandstarbux Defending the Draft 2023: Minnesota Vikings
Jimmy Johnson | Rich Hill | Fitzgerald-Spielberger | Harvard | |
---|---|---|---|---|
Total give | 155 | 48 | 737 | 115 |
Total get | 117.7 | 45 | 1334 | 197 |
Absolute Diff | -37.3 | -3 | +597 | +82 |
Percent Diff | -24% | -6% | +81% | +71% |
Jimmy Johnson | Rich Hill | Fitzgerald-Spielberger | Harvard | |
---|---|---|---|---|
Total give | 56 | 24 | 578 | 88 |
Total get | 58.4 | 24 | 898 | 133 |
Absolute Diff | +2.4 | 0 | +320 | +45 |
Percent Diff | +4% | 0% | +36% | +34% |
Jimmy Johnson | Rich Hill | Fitzgerald-Spielberger | Harvard | |
---|---|---|---|---|
Total give | 32.4 | 13 | 722 | 103 |
Total get | 36 | 15 | 492 | 74 |
Absolute Diff | +4 | +2 | -230 | -29 |
Percent Diff | +10% | +13% | -47% | -39% |
2023.06.07 16:13 Shockedsiren Please show me no 「Mercy Mercy Mercy」