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Waste battery treatment options: Comparing their environmental performance

机译:废电池处理选项:比较其环保性能

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摘要

Waste consumer batteries are recycled using different routes based on hydrometallurgical and pyromet-allurgical processes. Two hydrometallurgical and two pyrometallurgical treatment scenarios are compared starting from an average composition of Belgian waste batteries. The environmental performance is compared using life cycle analysis (LCA). The recycling rate is studied through mass balance calculation.rnEach treatment scenario results in a specific recycling rate. The environmental impact and benefits also vary between the treatment options. There is no such thing as a typical hydrometallurgical or pyrometallurgical treatment. When applying a hydrometallurgical treatment scenario, the focus lies on zinc and iron recycling. When allowing manganese recycling, the energy demand of the hydrometallurgical process increases considerably. Both pyrometallurgical options recycle zinc, iron and manganese. According to the LCA, none of the treatment scenarios performs generally better or worse than the others. Each option has specific advantages and disadvantages. The Batteries Directive 2006/66/EC sets out a recycling rate of 50% for consumer waste batteries. Based on metal recycling alone, the mass balances show that the target is difficult to obtain.
机译:废消费电池通过基于湿法冶金和高温热熔法的不同途径回收。从比利时废电池的平均组成开始,比较了两种湿法冶金方案和两种火法冶金方案。使用生命周期分析(LCA)对环境绩效进行比较。通过质量平衡计算来研究回收率。每种处理方案都会产生特定的回收率。不同的治疗方案对环境的影响和益处也有所不同。没有典型的湿法冶金或火法冶金处理。在采用湿法冶金处理方案时,重点在于锌和铁的回收。当允许锰再循环时,湿法冶金工艺的能量需求显着增加。两种火法冶金选件都回收锌,铁和锰。根据LCA,没有任何一种治疗方案比其他方案更好或更差。每个选项都有特定的优点和缺点。电池指令2006/66 / EC规定了消费废电池的回收率为50%。仅基于金属回收,质量平衡表明难以达到目标。

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  • 来源
    《Waste Management》 |2009年第8期|2321-2331|共11页
  • 作者单位

    VITO, Boeretang 200, B2400 Mo/. Belgium;

    VITO, Boeretang 200, B2400 Mo/. Belgium;

    VITO, Boeretang 200, B2400 Mo/. Belgium;

    VITO, Boeretang 200, B2400 Mo/. Belgium;

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