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Life cycle assessment on the reuse and recycling of the nickel-metal hydride battery: Fleet-based study on hybrid vehicle batteries from Japan

机译:镍氢电池再利用和回收的生命周期评估——基于车队的日本混合动力汽车电池研究

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摘要

With the increasing popularity of hybrid vehicles, which were initially commercialized from Japan, the use of nickel-metal hydride (NiMH) batteries has also increased dramatically. This will inevitably lead to a large number of NiMH batteries in the future. This makes the reuse and recycling of these waste NiMH batteries an urgent concern. Nevertheless, the environmental burden generated from the reuse and recycling processes has not been clarified. Moreover, many NiMH batteries are exported from Japan to developing countries and will eventually be landfilled. Such problems severely weaken the efficiency of the waste battery recycling system in Japan. This research aims to analyze the environmental impact of a NiMH battery under each type of waste treatment strategy using the life cycle assessment (LCA) method. Then, a fleet-based LCA is performed to show how exactly the collection rate of waste batteries affects the efficiency of the recycling industry. The results show that, if we can reuse or recycle a waste NiMH battery instead of it being directly landfilled, the absolute environmental impact of the NiMH battery can be decreased. Especially in the reuse and recycle scenario, approximately 83 kg of CO2 emissions, 1.37 kg of resource depletion, 0.044 m(3) of landfill volume, and 1611 MJ energy consumption will be conserved for each NiMH battery. Moreover, the efficiency of the Japanese recycling industry would significantly improve if more waste NiMH batteries can be recycled or reused in Japan instead of being exported to developing countries.
机译:随着最初从日本商业化的混合动力汽车的日益普及,镍氢(NiMH)电池的使用也急剧增加。这将不可避免地导致未来镍氢电池的大量使用。这使得这些废旧镍氢电池的再利用和回收成为一个紧迫的问题。然而,再利用和回收过程产生的环境负担尚未得到澄清。此外,许多镍氢电池从日本出口到发展中国家,最终将被填埋。这些问题严重削弱了日本废旧电池回收系统的效率。本研究旨在使用生命周期评估 (LCA) 方法分析镍氢电池在每种废物处理策略下对环境的影响。然后,进行基于车队的 LCA,以显示废电池的收集率如何影响回收行业的效率。结果表明,如果我们能够重复使用或回收废旧镍氢电池,而不是直接填埋,则可以减少镍氢电池对环境的绝对影响。特别是在再利用和回收场景中,每个镍氢电池将节省约 83 kg 的 CO2 排放量、1.37 kg 的资源消耗、0.044 m(3) 的垃圾填埋量和 1611 MJ 的能耗。此外,如果更多的废旧镍氢电池可以在日本回收或再利用,而不是出口到发展中国家,日本回收行业的效率将大大提高。

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