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Evaluation of Physical Processing in the Recycling of Spent Domestic Batteries

机译:对国内电池回收的物理处理评估

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Domestic-type batteries sample was tested aiming at its characterization and the evaluation of the feasibility of physical separation of its main components. The sample was essentially constituted by saline and alkaline types (Zn-MnO_2 based systems, >90% w/w) and cylindrical shape (> 90% w/w). The mass balance of alkaline battery samples indicated as main battery components the steel case materials (25 %), the electrodes (71%) and the connector and separator/insulating materials (4 %), while the corresponding values to the saline type are 16%, 72% and 12% respectively. Despite electrochemical principles are similar, internal constitution of saline and alkaline batteries is different. Differences in electrolytes are also relevant (KOH in alkaline type and chloride salts in saline type) affecting therefore the mass balances in the chemical treatment. Fragmentation of batteries was done aiming at to evaluate the efficiency of the liberation of different components, namely scrap and electrodes. Results obtained are very promising considering the good efficiency reached on the physical separation treatment and consequently the chemical step will be necessarily improved.
机译:测试国内型电池样品旨在其表征和评估其主要成分物理分离的可行性。该样品基本上由盐水和碱性类型(基于Zn-MnO_2的系统,> 90%w / w)和圆柱形状(> 90%w / w)构成。碱性电池样品的质量平衡指示为主电池组件,钢壳材料(25%),电极(71%)和连接器和分离器/绝缘材料(4%),而盐水类型的相应值为16 %,72%和12%。尽管电化学原理类似,盐水和碱性电池的内部构造是不同的。电解质的差异也是相关的(碱性型KOH和盐酸盐中的氯化物盐)影响化学处理中的质量平衡。电池的碎片旨在旨在评估不同组分的释放效率,即废料和电极。考虑到物理分离处理达到的良好效率,所获得的结果非常有前途,因此必须改善化学步骤。

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