In mid-April, CATL announced plans to invest 30 billion yuan to establish a wholly-owned subsidiary, Times Resources Group, registered in Xiamen and positioned as a professional investment, operation, and management platform in the new energy minerals sector.
This major move is not only a key step for CATL in building a closed-loop entire industry chain of "ore — materials — battery — recycling," but will also inject strong momentum into the extraction and reuse of rare and precious metal resources, driving the battery recycling industry from standardized development toward a new phase of technological breakthroughs and scale expansion.
The core mission of Times Resources Group is to integrate global critical minerals resources such as lithium, nickel, and cobalt, while expanding into high-quality rare and precious metal mining projects. From an industry perspective, lithium, nickel, and cobalt are core raw materials for power batteries, while rare and precious metals such as gold, silver, and platinum group metals are indispensable in electronic devices and catalysts. Through this 30 billion yuan capital deployment, CATL can both ensure that its primary lithium resources self-supply rate rises above 35% and keep lithium chemicals costs below 50,000 yuan/mt, while also establishing stable raw material connection channels for rare and precious metal regeneration after battery recycling through full industry chain control of mineral resources.
More notably, CATL hired Chen Jinghe, founder of Zijin Mining, as a mining consultant, leveraging his extensive experience in mineral exploration and extraction to further optimize resource development processes. This means the upstream extraction segment will place greater emphasis on green and efficient technology applications, such as adopting efficient leaching technology for low-grade ore and comprehensive recovery processes for rare and precious metal associated ore, improving resource utilization rate from the source, laying the raw material foundation for rare and precious metal regeneration in subsequent battery recycling, and achieving synergy between "primary extraction + secondary recycling."
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