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锂离子液流电池监控系统的初步研究与设计 被引量:1
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作者 李爱晶 陈永翀 +2 位作者 张晓虎 刘丹丹 谢晨 《电工电能新技术》 CSCD 北大核心 2018年第2期83-88,共6页
锂离子液流电池是一种新型储能电池,具有绿色环保、功率密度和能量密度高、输出功率和储能容量彼此独立等优点,在规模储能中具有应用潜力。本文分析了锂离子液流电池的系统结构及特点,对电池监控系统的硬件和软件进行了初步研究与设计,... 锂离子液流电池是一种新型储能电池,具有绿色环保、功率密度和能量密度高、输出功率和储能容量彼此独立等优点,在规模储能中具有应用潜力。本文分析了锂离子液流电池的系统结构及特点,对电池监控系统的硬件和软件进行了初步研究与设计,包括电池模块的检测和驱动系统的检测。同时,本文还对锂离子液流电池间歇式驱动模式进行了分析,发现通过合理设置驱动时间可以减小系统机械损耗,从而保证锂离子液流电池的高效稳定运行。 展开更多
关键词 锂离子液流电池 监控系统 参数监测 间歇式控制
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Exploring the potential for improving material utilization efficiency to secure lithium supply for China's battery supply chain 被引量:1
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作者 Xin Sun Han Hao +2 位作者 Yong Geng Zongwei Liu Fuquan Zhao 《Fundamental Research》 CAS CSCD 2024年第1期167-177,共11页
Lithium-ion battery(LIB)is the key technology for climate change mitigation.The sustainability of LIB supply chain has caused widespread concern since the material utilization efficiency of LIB supply chain has not be... Lithium-ion battery(LIB)is the key technology for climate change mitigation.The sustainability of LIB supply chain has caused widespread concern since the material utilization efficiency of LIB supply chain has not been well investigated.This study aims to fill this research gap by conducting a dynamic material flow analysis of lithium in China from 2015 to 2021.Results indicate that within the temporal boundary,lithium flow and in-use stock grew significantly in China due to the rapid development of the EV market,with lithium flow in domestic production of basic chemicals increasing by 614%to 100 kt,end-use consumption increasing by 160%to 35 kt,and in-use stock increasing by 62%to 195 kt.China has been a net importer of lithium,of which cumulative imports and exports were 343 kt and 169 kt,respectively.In addition,103 kt of lithium was converted to inventories or was lost during the processing from 2015 to 2021.By optimizing inventory and processing,developing substitutes for lithium for non-battery applications,and improving lithium recycling,China's net import dependency of lithium could be reduced from 27%-86%to 0%-16%.Our study demonstrates that it is urgent to improve material utilization efficiency so that the lithium resource supply can be secured. 展开更多
关键词 LITHIUM lithium-ion battery Critical material Supply chain Material flow analysis
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