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Environment and economic impacts assessment of PET waste recycling with conventional and renewable sources of energy

机译:使用常规和可再生能源对PET废物进行回收的环境和经济影响评估

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The use of large amount of plastic has created environment threats and thus it needs to be recycled. The recycling of plastic waste requires energy but the energy production with conventional sources depletes the natural resources and creates environmental degradation. This study aims to assess and compare the environmental and economic impacts from the recycling of PET plastic bottle waste with conventional and renewable sources of electricity in India. An experiment is conducted wherein the PET bottle waste is used to make filament for 3-D printing by using three different scenarios. Scenario A uses the virgin PET granules with conventional Indian electricity mix, scenario B uses PET bottle waste recycling with conventional Indian electricity mix, and scenario C uses PET bottle waste recycling with solar electricity. The ISO 14040 guidelines are followed to conduct cradle-to-grave LCA for scenario A; and grave to grave LCAs for scenarios B & C. The impact categories considered for the endpoint assessment are ecosystem quality, human health and resources. Climate change, fossil depletion, human toxicity, ozone depletion, terrestrial acidification, and water depletion are considered for midpoint assessment. The results of the study show that scenario B has high environmental impacts followed by scenarios C & A. The findings of this experimental study suggest the use of renewable energy (solar electricity) for recycling of PET bottle waste for filament production. The limitation of the study is that it’s a region specific experiment for environmental and economic impacts.
机译:大量使用塑料已经对环境造成威胁,因此需要回收利用。塑料废料的回收需要能源,但是使用常规能源生产能源会消耗自然资源并造成环境恶化。这项研究旨在评估和比较印度使用传统和可再生能源回收PET塑料瓶废料对环境和经济的影响。进行了一项实验,其中使用三种不同的方案,将PET瓶废料用于制造3D打印用的长丝。方案A将原始的PET颗粒与常规的印度电力混合使用,方案B使用具有常规的印度电力混合的PET瓶废物回收,方案C使用具有太阳能的PET瓶废物回收。遵循ISO 14040准则对方案A进行从摇篮到坟墓的LCA;对于情景B和C,LCA到坟墓。对于端点评估考虑的影响类别是生态系统质量,人类健康和资源。中点评估考虑了气候变化,化石消耗,人类毒性,臭氧消耗,陆地酸化和水消耗。研究结果表明,方案B具有较高的环境影响,其次是方案C和A。此实验研究的结果表明,可再生能源(太阳能)可用于回收PET瓶废料以生产长丝。该研究的局限性在于它是针对环境和经济影响的区域特定实验。

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