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1)  Obsolete electronic product
废旧电子
2)  used electronics and equipment
废旧电子电器
1.
The paper discusses the extended responsibilities of each party,offers a closed-loop supply chain operation reference model,discusses the extended responsibility of reclaiming used electronics and equipment in China and proposes howto carry out the relevant relaiming management.
通过各方延伸责任的分析,并借助构建的闭环供应链参考流程图,探究我国废旧电子电器回收延伸责任问题,并据此提出相关回收管理的建议。
3)  waste electronic material
废旧电子材料
1.
Status and developing prospect of recycle utilization of waste electronic material;
废旧电子材料回收利用现状及发展展望
4)  spent lithium ion batteries
废旧锂离子电池
1.
Extraction of cobalt from spent lithium ion batteries;
废旧锂离子电池中钴的浸出
2.
The wet-chemical recovery process of spent lithium ion batteries was investigated.
废旧锂离子电池中钴的含量较高。
3.
According to the characteristic of positive electrode materials of spent lithium ion batteries,the recovery experiment to separate the valuable metals from the spent lithium ion batteries was investigated.
根据锂离子二次电池的正极废料的性质特点,对废旧锂离子电池正极材料中有价金属进行了分离回收试验研究。
5)  Spent electronic scrap
废旧电子元件
6)  spent lithium-ion batteries
废旧锂离子电池
1.
Reductive leaching of cobalt using hydrochloric acid from cathodes of spent lithium-ion batteries
采用盐酸溶液从废旧锂离子电池正极还原浸取钴
2.
A new process involving ultrasonic separation of electrode materials, acid dissolution, precipitation of cobalt and lithium has been applied to recover metals values from spent lithium-ion batteries.
采用超声波分离电极材料-酸浸-钴锂沉淀新工艺分离并回收了废旧锂离子电池中的有价金属。
3.
Nanocrystal Co-ferrites were synthesized from spent lithium-ion batteries by a hydrothermal method.
以废旧锂离子电池为原料,采用水热法制备出纳米晶钴铁氧体,并对制备过程的影响因素进行了探讨,借助于X-衍射(XRD)对各制备条件下的产物进行了跟踪检测,且通过扫描电镜(SEM)、震动样品磁强计(VSM)等表征方法对产物的形貌、磁性能进行了表征。
补充资料:电子-电子双共振
      在垂直静磁场H的方向,施加两个微波电磁场:①较弱的微波电磁场,激发电子从能级2向能级3跃迁,不致于饱和;②强的微波电磁场,激发电子从能级1向能级4跃迁,使达到饱和,从而导致能级4的电子转移至能级3,以观察反映2→3跃迁的电子自旋共振信号强度的变化,故称为电子-电子双共振。它与电子-核双共振不同之处是不涉及核的跃迁,并且观察的与电子自旋共振有关的能级和未观察的跃迁能级之间无共享的公共能级。
  

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