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Global lead-acid battery recycling situation: Lead-acid batteries have long been widely used in areas such as automobiles and UPS, with a relatively high recycling rate. However, due to the presence of hazardous substances in lead-acid batteries, improper handling can cause severe harm to the environment and human health. Therefore, governments worldwide have introduced policies to support the recycling and reuse of lead-acid batteries, while strengthening regulatory efforts to encourage enterprises and the public to actively participate. Global lithium battery recycling situation: Compared with lead-acid batteries, lithium batteries have a relatively lower recycling rate. However, due to the presence of rare metals and other resources, they hold higher value. To promote the recycling of lithium batteries, policies regarding their recycling and reuse have gradually become stricter. Enterprises in the relevant industry chains across the globe are also actively researching and developing new recycling technologies and processes to facilitate the sustainable development of lithium batteries.
Against this backdrop,the GBRC 2025SMM Battery Recycling and Circular Industry Conferencecame into being, aiming to promote global exchanges and cooperation in battery recycling and reuse, drive innovation and development in related technologies, jointly address environmental issues arising from repeated battery use, and contribute to the sustainable development of the clean energy industry.
At this conference,Guizhou Weihua Technology Co., Ltd. will attend as a sponsor, engaging in in-depth discussions with peers from upstream and downstream sectors of the battery recycling industry on the pain points and challenges of industry development, jointly exploring business opportunities for win-win cooperation, and discussing ways to promote high-quality development of the industry.
Click on the registration form to register immediately for the conference. Follow the "electric" path to a new "battery" era of green energy. We'll see you in Ningbo.
Revolutionizing Phosphorus-Iron Synthesis, Weihua Leads the Future
Guizhou Weihua Technology Co., Ltd., established in 2013, is a high-tech enterprise and a specialized and innovative enterprise, having passed the intellectual property management system certification and ISO9001 quality system certification. It is a revolutionary and leader in high-end chemical reactors.
Core technological advantages of the enterprise: Customized development of synthesis equipment with different structural forms tailored to the characteristics of various chemical synthesis production processes, addressing safety risks in the chemical synthesis process from the source, and achieving consistent, stable, and continuous production of products.
The company's products cover related industries such as new energy materials, nanomaterials, and fine chemicals. It holds a leading position in the R&D design, manufacturing, construction, installation, and commissioning of manufacturing equipment, intelligent continuous synthesis production lines, and smart factories, as well as in the development and design of automated intelligent equipment. Based on product process requirements, the company provides customized and professional products and services to customers, including early-stage design and development, mid-stage turnkey projects, and later-stage maintenance, upgrades, and personnel training. Currently, the company's main customers are involved in cutting-edge industries such as new energy material manufacturing, fine chemical synthesis production, and precision machining.
In the field of new energy material manufacturing equipment, the company has been conducting in-depth research since 2016 and has now developed equipment such as nanomaterial continuous synthesis equipment, continuous hydrothermal synthesis equipment, lithium iron (manganese) phosphate liquid-phase one-step synthesis equipment, and 10,000 mt-class iron phosphate continuous synthesis equipment. These can help new energy material enterprises solve problems such as unstable product quality, significant batch differences, and difficulties in controlling particle size and morphology, thereby enhancing the market competitiveness of their products and making chemical production safer, more economical, more environmentally friendly, and more intelligent.
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