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Record Investments Needed in Renewable Tech and Mining to Hit Global Emission Targets

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USA News Group News Commentary 

Issued on behalf of Battery X Metals Inc.

VANCOUVER, BC, Nov. 1, 2024 /PRNewswire/ — Within one of its recent reports, the World Economic Forum is warning that while governments around the world are pushing for a clean energy transition, rising and demand for and limited supply of critical materials could hamper this process. This is echoed by the International Energy Agency in a report that highlights a need global critical materials trade, as well as massive increases needed in deployment of Solar PV, Batteries, and other Green Tech by 2035 to achieve net zero emissions by 2050. To help the cause, experts at the Center on Global Energy Policy of Columbia|SIPA is calling for strengthening the US EV battery recycling industry to onshore critical material supply. Full-scale efforts to support the energy transition are underway, led by innovation in battery materials tech, electric vehicles (EVs), and even powering artificial (AI) data centers, with recent developments coming from: Battery X Metals, Inc. (CSE: BATX) (OTCQB: BATXF), Rivian Automotive, Inc. (NASDAQ: RIVN), Amprius Technologies, Inc. (NYSE: AMPX), Lifezone Metals Limited (NYSE: LZM), and Advanced Energy Industries, Inc. (NASDAQ: AEIS).

The article continued: According to BloombergNEF, the mining industry needs $2.1 trillion dollars in new investment by 2050 to meet net-zero demands for raw materials. Earlier in October, the U.S. Department of Energy (DOE) announced a $1.5 billion investment in four important transmission projects.

Battery X Metals Announces Advancements in Eco-Friendly Lithium-ion Battery Material Recovery Technology with Global Top 20 University Partnership

Battery X Metals, Inc. (CSE: BATX) (OTCQB: BATXF), a clean energy technology and exploration company, focused on developing proprietary technologies to extend the lifespan of electric vehicle (EV) batteries, recover battery-grade materials from end-of-life lithium-ion batteries, and exploring battery and critical metal resources, recently announced significant advancements by its wholly-owned subsidiary, Battery X Recycling Technologies Inc., in developing sustainable technology for recovering battery-grade materials from end-of-life lithium-ion batteries. These advancements are in collaboration with a Global Top 20 University as part of an ongoing research partnership.

The partnership has led to promising results in optimizing battery-grade graphite recovery from lithium-ion battery black mass using Battery X’s proprietary froth flotation process. These trials have been instrumental in refining the technology to recover battery-grade materials such as graphite, lithium, nickel, and cobalt from black mass, advancing both technological development and process design.

“Our progress in developing proprietary eco-friendly technology is a significant step forward in sustainable battery recycling, particularly by addressing graphite recovery, which is often overlooked in conventional methods,” said Massimo Bellini Bressi, CEO of Battery X Metals. “The positive preliminary results from our collaboration with a Global Top 20 University highlights our potential to meet the increasing demand for battery materials in a sustainable way. We look forward to advancing this partnership, validating our technology, applying for provisional patents, and ultimately exploring strategic opportunities to license our technology to industry partners.”

In controlled laboratory tests, the Global Top 20 University conducted multiple experiments to optimize black mass flotation in a Denver Cell with a 500g sample size for each experiment, assessing various frother and collector dosages across single- and multi-stage flotation protocols. Initial single-stage tests focused on frother-only trials to stabilize bubbles, followed by adding a collector to enhance graphite’s hydrophobicity. The frother-alone trials produced dark froth that lightened over time, while the addition of a collector created a more stable, thicker froth, extending flotation duration and enhancing graphite separation.

Multi-stage flotation protocols with adjusted frother and collector dosages further refined the separation process. Multi-stage flotation showed that each stage’s froth thinned and lightened over time, with flotation effectively concluding more rapidly.

Preliminary assays confirmed that the black mass sample used in the experiments consisted of approximately 45% graphite, with oxides and phosphates comprising the remainder. Initial separation tests successfully floated approximately 45% of the black mass sample (mainly graphite), while oxides and phosphates remained in the tailings, underscoring the efficiency of the flotation process in isolating battery-grade graphite, a fundamental component to lithium-ion anodes. These promising results serve as a baseline for validating the recovery technology.

Battery X and the Global Top 20 University have made strides in process design through lab-scale trials, demonstrating that multi-stage flotation achieves more efficient material separation than single-stage methods. Trials incorporated varied reagent dosages to stabilize froth formation, maximize graphite yield, and manage oxide and phosphate separation in specific stages. Ongoing R&D efforts focus on consistent trial results that align with industry metrics, providing a solid foundation for future potential scalability.

Battery X and the Global Top 20 University intend to conduct comprehensive chemical assays to quantify graphite recovery rates, assess material purity, and verify oxide and phosphate separation.

With the current black mass sample primarily oxide-based, the next phase will focus on validating oxide and phosphate recovery, testing additional surfactants in dedicated flotation stages for future patent applications and commercial use.

To further support this phase, Battery X plans to provide the Global Top 20 University with phosphate-based black mass samples to test in tandem with its existing oxide-based sample. Upon successful validation Battery X and the Global Top 20 University plan to pursue provisional patents to secure IP for these advancements, with the Battery X’s future business strategy centered on licensing this IP to battery recyclers with existing infrastructure, aiming to establish itself as a downstream technology partner with a low-capex, scalable model.

CONTINUED… Read this and more news for Battery X Metals at https://usanewsgroup.com/2024/10/26/seize-visionary-opportunities-in-ev-battery-recycling-and-lifespan-extension-technology/

Other recent industry developments and happenings in the market include:

Rivian Automotive, Inc. (NASDAQ: RIVN), an American EV manufacturer, recently released its Q3 2024 production and delivery figures, with an update to its 2024 annual production outlook. In the quarter, Rivian produced 13,157 vehicles at its manufacturing facility in Normal, Illinois and delivered 10,018 vehicles during the same period.

However, within the report, Rivian said that the company is experiencing a production disruption due to a shortage of a shared component on the R1 and RCV platforms. The supply shortage impact began in Q3 of this year, became more acute in the weeks prior to the press release, and continues. As a result of the supply shortage, Rivian is revising its annual production guidance to be between 47,000 and 49,000 vehicles. Rivian is also reaffirming its annual delivery outlook of low single digit growth as compared to 2023, which it expects to be in a range of 50,500 to 52,000 vehicles.

Amprius Technologies, Inc. (NYSE: AMPX), a leader in next-generation lithium-ion batteries with its Silicon Anode Platform, recently announced it has its production with new lines supporting its high-performance silicon anode battery platform, SiCore™, launched in January. This boost allows Amprius to ramp up capacity to 800 MWh for SiCore pouch cells, meeting growing demand. Shipments started in October 2024, including a $20 million order for Light Electric Vehicles.

“With this expanded contract manufacturing arrangement, we’ve secured gigawatt-hour-scale production capacity for SiCore silicon anode batteries across our key partnerships,” said Dr. Kang Sun, CEO of Amprius Technologies. “This strategic expansion enables us to deliver the high-performance silicon batteries that our customers rely on to power their most advanced electric mobility applications.”

Lifezone Metals Limited (NYSE: LZM), a supplier of lower-carbon and sulfur dioxide emissions to the battery storage, EV, and hydrogen markets, recently announced the signing of a Memorandum of Understanding (MOU) with Japan Organization for Metals and Energy Security (JOGMEC) to support JOGMEC’s efforts to secure cleaner metals from the Kabanga Nickel Project, one of the world’s largest and highest-grade undeveloped nickel sulfide deposits with byproduct copper and cobalt, for the Japanese battery industry. By utilizing Lifezone’s Hydromet technology, the Project is expected to significantly reduce emissions compared to traditional smelting methods.

“Kabanga is a world-class, high-grade nickel deposit and we welcome the opportunity to bring on JOGMEC as a strategically aligned partner,” said Chris Showalter, CEO of Lifezone. “With BHP as our project development partner, Societe Generale as our Lead Financial Advisor for the project financing process, the support of the U.S. International Development Finance Corporation and the Government of Tanzania, and now strategic cooperation with JOGMEC, we see a clear indication of intent to drive this globally significant project forward to the benefit of all partners and stakeholders.”

Advanced Energy Industries, Inc. (NASDAQ: AEIS), a leader in precision power tech, recently showcased its ultra-efficient power supplies, shelves, and converters for enterprise and hyperscale data centers at the Open Compute Project (OCP) Global Summit. To meet the power demands of high-density AI servers, Advanced Energy showcased its ORv3 5.5kW HPR power supply unit (PSU), delivering near 98% peak efficiency. This PSU optimizes power for GPU-heavy applications, reducing strain on data centers’ AC infrastructure with a higher power factor for dynamic loads.

“Over the past seven years, our involvement in the OCP Community has allowed us to advance the industry and introduce best-in-class platforms that have significantly benefited the broader market,” said Brian Korn, vice president of Marketing for Data Center Solutions at Advanced Energy. “Our innovations in density, efficiency and rack-scale power conversion are designed to meet the evolving demands of AI, both for today and the future.”

Source: https://usanewsgroup.com/2024/09/26/profitable-solutions-in-ev-battery-recycling-and-lifespan-extension-technology/ 

CONTACT:

USA NEWS GROUP
info@usanewsgroup.com
(604) 265-2873

DISCLAIMER: Nothing in this publication should be considered as personalized financial advice. We are not licensed under securities laws to address your particular financial situation. No communication by our employees to you should be deemed as personalized financial advice. Please consult a licensed financial advisor before making any investment decision. This is a paid advertisement and is neither an offer nor recommendation to buy or sell any security. We hold no investment licenses and are thus neither licensed nor qualified to provide investment advice. The content in this report or email is not provided to any individual with a view toward their individual circumstances. USA News Group is a wholly-owned subsidiary of Market IQ Media Group, Inc. (“MIQ”). MIQ has been paid a fee for Battery X Metals Inc. advertising and digital media from the company directly. There may be 3rd parties who may have shares of Battery X Metals Inc., and may liquidate their shares which could have a negative effect on the price of the stock. This compensation constitutes a conflict of interest as to our ability to remain objective in our communication regarding the profiled company. Because of this conflict, individuals are strongly encouraged to not use this publication as the basis for any investment decision. As of October 31, 2024, the owner/operator of MIQ holds 680,000 shares of Battery X Metals Inc., comprising 500,000 shares acquired directly from the company and the remainder purchased on the open market. We reserve the right to buy and sell, and will buy and sell shares of Battery X Metals Inc. at any time without any further notice. We also expect further compensation as an ongoing digital media effort to increase visibility for the company, no further notice will be given, but let this disclaimer serve as notice that all material disseminated by MIQ has been approved by the above mentioned company; this is a paid advertisement, we currently own shares of Battery X Metals Inc. and will buy and sell shares of the company in the open market, or through private placements, and/or other investment vehicles. 

While all information is believed to be reliable, it is not guaranteed by us to be accurate. Individuals should assume that all information contained in our newsletter is not trustworthy unless verified by their own independent research. Also, because events and circumstances frequently do not occur as expected, there will likely be differences between the any predictions and actual results. Always consult a licensed investment professional before making any investment decision. Be extremely careful, investing in securities carries a high degree of risk; you may likely lose some or all of the investment.

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SoftBank Corp. and TOPPAN Holdings Develop Lightweight, Durable Skin for Solar HAPS Aircraft Wings

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Skin’s compatibility with stratospheric conditions such as extreme UV rays and ultra-low temperatures makes longer HAPS operations possible

TOKYO, April 27, 2026 /PRNewswire/ — SoftBank Corp. (TYO: 9434) (President & CEO: Junichi Miyakawa, “SoftBank”) and TOPPAN Holdings Inc. (TYO: 7911) (President & COO: Satoshi Oya, “TOPPAN Holdings”) jointly developed a lightweight, durable skin for use on solar High-Altitude Platform Station (HAPS) aircraft wings and devised a testing method that replicates the stratosphere’s environment. Test production will go forward, and the aircraft wing skin is planned for use with HTA-type[1] HAPS, which SoftBank plans to deploy for commercial services from 2029 onwards.     

This jointly developed HAPS aircraft wing skin and test method that reproduces stratospheric conditions were made possible by combining SoftBank’s HAPS expertise and TOPPAN Holdings’ know-how accrued over years of creating advanced multi-layered film technology designed for packaging and construction materials. TOPPAN Holdings also leveraged its proprietary technology that evaluates weather resistance. This joint development mitigates film damage (degradation) caused by strong ultraviolet (UV) rays and ultra-low temperatures of almost -100°C. As a result, the aircraft can stay in the stratosphere for longer periods. 

Development Background
HAPS, also referred to as “base stations in the sky,” provide communication services from uncrewed aircraft that remain airborne in the stratosphere. Being able to keep an aircraft with a communications payload airborne for extended periods of time would make it possible to provide an alternative means of communications in the aftermath of large-scale natural disasters, as well as provide communication services to under-connected areas, such as mountainous regions and remote islands. As these platforms operate from the stratosphere at an altitude of approximately 20 km above, they offer wider-area coverage than base stations on the ground, while also providing high-quality, high-volume, low-latency communications superior to satellite-based communications. However, at this altitude in the stratosphere, UV ray and ozone exposure is far greater than at ground level, and with exposure to extremely cold temperatures that sometimes drop to almost -100℃, impaired efficacy due to these environmental factors had been a serious issue with conventional all-purpose skins. Responding to this challenge, SoftBank and TOPPAN Holdings jointly developed a new ultra-lightweight, high-durability skin for aircraft wings capable of withstanding the harsh conditions of the stratosphere, along with a specialized methodology for its evaluation.     

Wing Skin & Evaluation Method Characteristics
1. Use of impact-resistant advanced resin and proprietary structure to achieve both lightweighting and safety
Leveraging converting technology[2] developed for packaging by TOPPAN Holdings, an optimized skin structure was achieved by precisely layering original materials and impact-resistant advanced resin suitable for use at extremely low temperature conditions. The resulting skin weighs the same as or less than average conventional all-purpose skin, and even if damage to the skin were to occur, the break-resistant design keeps damage from spreading, allowing for both a safe and lighter HAPS airframe.    

2. Advanced durability to address harsh stratospheric conditions
SoftBank has contributed real-world data from its stratospheric HAPS flights, including actual temperature measurements and deep ultraviolet (UV-C) ray exposure conditions, and has also defined requirements such as weight reduction and other performance criteria. This has enabled TOPPAN Holdings to design a skin that addresses exposure to the harsh environmental conditions of the stratosphere by applying technology developed for construction materials. These conditions particular to the stratosphere include everything from extremely low temperatures (approximately -50℃ to -95℃) to extreme heat (approximately 100℃) from direct sunlight. The skin is also resistant to short wave UV-C and high-concentration ozone (10-20 ppm, parts per million) exposure that are far stronger than at ground level. This durability will allow for extended HAPS operation periods.      

3. Establishing a testing method that simulates stratospheric conditions to ensure reliability
TOPPAN Holdings leveraged its knowledge of packaging film testing and accelerated durability testing of construction materials, to construct a new test environment that assesses the skin under a simulation of the ultralow temperatures of the stratosphere, while also facilitating the testing of simultaneous exposure from short wave UV rays and the ozone. By using this test environment, it is possible to understand the detailed mechanisms of deterioration particular to the stratosphere and to use that knowledge for improved product design. This understanding and design adjustment makes it possible to carry out a more precise and more reliable evaluation compared to former testing methods.     

Roles of Both Companies
SoftBank
Provide expertise required to evaluate the suitability of the skin as well as expertise on HAPS operations
Supervision of advancing use with HAPS aircraft and transferring advances to practical application

TOPPAN Holdings
Develop and provide skin material suitable for HAPS aircraft
Proposal for evaluation method in stratospheric environment

Future Developments
SoftBank and TOPPAN Holdings will proceed with research to make the skin material developed within the scope of this project even lighter and stronger by fiscal 2027 (the year ending March 31, 2028). Additionally, while evaluating durability in the stratosphere, both companies will also attempt to establish mass production technology capable of ensuring sufficient supply and reliable quality by fiscal 2028. Also, based on testing outcomes, additional functions will be added, and the skin is expected to be used by SoftBank on HTA-type HAPS aircraft that provide commercial services, planned for launch from 2029 onwards. Both companies also plan to apply this skin to other fields that require a high level of durability.

[1] HTA (Heavier-Than-Air) refers to HAPS that remain airborne by generating aerodynamic lift, similar to conventional aircraft.

[2] Converting technology is the process of transforming materials like film into high-function final products through specialized processing such as printing and lamination. 

For more information:
https://www.holdings.toppan.com/en/news/04/newsrelease260427_1.html 

About SoftBank Corp.
Guided by the SoftBank Group’s corporate philosophy, “Information Revolution – Happiness for everyone,” SoftBank Corp. (TOKYO: 9434) operates telecommunications and IT businesses in Japan and globally. Building on its strong business foundation, SoftBank Corp. is expanding into non-telecom fields in line with its “Beyond Carrier” growth strategy while further growing its telecom business by harnessing the power of 5G/6G, IoT, Digital Twin and Non-Terrestrial Network (NTN) solutions, including High Altitude Platform Station (HAPS)-based stratospheric telecommunications. While constructing AI data centers and developing homegrown LLMs specialized for the Japanese language, SoftBank is integrating AI with radio access networks (AI-RAN), with the aim of becoming a provider of next-generation social infrastructure.
https://www.softbank.jp/en/corp/

About the TOPPAN Group
Established in Tokyo in 1900, the TOPPAN Group is a leading and diversified global provider committed to delivering sustainable, integrated solutions in fields including printing, communications, security, packaging, décor materials, electronics, and digital transformation. The TOPPAN Group’s global team of more than 50,000 employees offers optimal solutions enabled by industry-leading expertise and technologies to address the diverse challenges of every business sector and society and contribute to the achievement of shared sustainability goals.
https://www.holdings.toppan.com/en/
https://www.linkedin.com/company/toppan/

 

View original content:https://www.prnewswire.com/news-releases/softbank-corp-and-toppan-holdings-develop-lightweight-durable-skin-for-solar-haps-aircraft-wings-302753970.html

SOURCE TOPPAN Holdings

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TravelingWiki Foundation Launches SportsFanWiki.com, Providing Disabled Fans with Sports Venue Specific Information in Wiki Format

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The setup of SportsFanWiki.com mirrors the extremely successful format of TravelingWiki.com, which documents disability resources for all FAA Large Sized and FAA Medium Sized hub airports and leverages the launch of a GenAI platform to ensure access across society to expanded disability resources information.

LAS VEGAS, April 27, 2026 /PRNewswire-PRWeb/ — TravelingWiki Foundation announces the launch of SportsFanWiki.com, providing a comprehensive database of sports venue information for fans with Non Visible Disabilities. The setup of SportsFanWiki.com mirrors the extremely successful format of TravelingWiki.com, which documents disability resources for all FAA Large Sized and FAA Medium Sized hub airports.

Leadership of TravelingWiki Foundation is honored to expand to sports venue disability information, offered free to the public and funded via the the sale of cards from the extraordinary careers of Michael Jordan, Lebron James, Shohei Ohtani and Mickey Mantle.

The launch of SportsFanWiki occurs at the same time as the launch of ShoheiAutographs.com; MantleRookies.com; KobeRookies.com; and LebronRookies.com, offering market leading sports card inventory of Shohei Ohtani, Mickey Mantle, Kobe Bryant and Lebron James, respectively. The launch highlights TravelingWiki’s services offered including new Generative AI functionality via a GenAI platform currently in beta testing. The launch also spotlights TravelingWiki’s CardForACause.com platform for free disability resources offered to 20 million Americans for no cost as funded with sports cards sales nationwide via the most two recent White House administrations.

TravelingWiki CEO Jonathan Sutter notes, “Leadership of TravelingWiki Foundation is honored to expand to sports venue disability information, offered free to the public and funded via the the sale of cards from the extraordinary careers of Michael Jordan, Lebron James, Shohei Ohtani and Mickey Mantle, to highlight the critical resources offered via TravelingWiki for the Non Visible Disability community.”

More information about the non-profit work of TravelingWiki foundation is available via visiting http://www.Travelingwiki.com.

Media Contact

Jonathan Sutter, TravelingWiki Foundation, 1 4044033333, jonathan.sutter@travelingwiki.com, http://www.TravelingWiki.com

Jonathan Sutter, TravelingWiki Foundation, 1 4044033333, jonathan.sutter@travelingwiki.com, http://www.TravelingWiki.com

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SOURCE TravelingWiki Foundation

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AiPPT.com Expands Its Approach to Turning Information into Ready-to-Use Presentations in India

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NEW DELHI, April 27, 2026 /PRNewswire/ — AiPPT.com has refined its platform as demand continues to grow in India for faster ways to turn everyday information into structured presentations.

Across universities, coaching centers, startups, and corporate teams, presentation work often begins with scattered material from notes, documents, and online sources. The platform focuses on converting this workflow into a single process that produces usable slides from raw input. The aim is to reduce preparation time while keeping presentations clear and ready for use.

A Workflow Built Around Content

AiPPT.com allows users to start in familiar ways. A topic can be entered directly, or files such as Word and PDF documents can be uploaded. Web content can also be converted into slides via the URL-to-PPT feature, which turns online information into structured presentations.

The system analyzes the input and builds a presentation with clear sections and logical flow. Slides are generated with formatting applied automatically, reducing manual effort.

For users looking for inspiration, AiPPT.com also provides resources such as easy presentation topics to help them get started more quickly.

From Scattered Information to Clear Communication

In academic and workplace settings, information is often spread across multiple formats. Turning this into a structured presentation can take time.

AiPPT.com simplifies this process. A report can become a meeting deck. A research paper can be turned into a seminar presentation. Startups can quickly build investor materials using the AI pitch deck generator. Educators can create structured lessons with support from tools designed for teaching, such as AI for teachers.

A Flexible System for Editing and Conversion

AiPPT.com supports full editing after generation. Users can adjust text, change slide order, or refine structure. Presentations can also be edited directly through its online PPT editor.

Users can also choose from a range of presentation templates to match different use cases. This flexibility helps users adapt presentations for classrooms, meetings, and digital sharing without rebuilding them.

About AiPPT.com

AiPPT.com is an AI-powered PPT generator focused on turning information into structured presentations. The company builds tools that connect content creation, organization, and presentation in one workflow. Its goal is to support clearer communication by helping users transform ideas and materials into ready to use slides efficiently.

Contact Information
Company Name: PIXELBLOOM PTE. LTD.
Email: support@aippt.com

Website: https://www.aippt.com/

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