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零水耗盐湖提锂技术解决方案
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久吾高科:公司可以提供零水耗盐湖提锂技术解决方案
Zheng Quan Ri Bao· 2025-10-27 14:27
Core Viewpoint - The company, Jiuwu High-Tech, has developed a zero-water consumption lithium extraction technology solution that significantly reduces freshwater usage during the lithium extraction process from salt lakes, addressing the water scarcity issue in highland areas where these resources are located [2]. Summary by Relevant Sections - **Technology Advantages** - The solution utilizes a new type of adsorbent and adsorption process technology, which greatly minimizes freshwater consumption during lithium extraction [2]. - The system incorporates advanced smart energy technology, intelligent control technology, adsorption-coupled membrane lithium extraction technology, and zero wastewater discharge technology, enabling industrial-scale lithium extraction without reliance on external power grids or freshwater supplies [2]. - **Addressing Water Scarcity** - The technology effectively tackles the challenge of water resource shortages in large-scale lithium resource development from salt lakes, which is often a bottleneck due to the high costs of transporting freshwater or producing freshwater from brine [2]. - The solution allows for the full reuse of wastewater generated within the system through desalination techniques, achieving internal water balance [2].
久吾高科:公司可提供零水耗盐湖提锂技术解决方案
Core Viewpoint - Jiuwu High-Tech (300631) announced its capability to provide zero-water consumption lithium extraction technology solutions, addressing the water scarcity issue in lithium resource development from salt lakes [1] Group 1: Company Insights - Jiuwu High-Tech's zero-water consumption lithium extraction technology can potentially overcome the bottleneck of water shortage in large-scale lithium resource development from salt lakes [1] - The technology utilizes adsorption coupling membrane methods, making it feasible to develop lithium resources in salt lakes located in arid highland regions [1] Group 2: Industry Context - The traditional methods of transporting fresh water or preparing fresh water from brine are cost-prohibitive, which has hindered the large-scale development of lithium resources from salt lakes [1] - The introduction of zero-water consumption technology could significantly enhance the efficiency and feasibility of lithium extraction in water-scarce regions [1]