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Environmental impact assessment of emissions from non-recycled plastic-to-energy processes

机译:来自非循环塑料到能量工艺的排放量的环境影响评估

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摘要

Abstract Generally, plastics pose a variety of environmental impacts due to their increased use and non-biodegradability. End-of-life treatment is a viable way of recovering energy from plastics while at the same time reducing the amount of plastics disposed of in landfills. This paper studies the environmental impact of Non-Recycled Plastics (NRP)-to-energy processes. Three waste treatment processes were considered for NRP: pyrolysis, waste-to-energy (WtE), and landfill. The environmental impact assessment results indicated that conversion technologies such as pyrolysis and WtE are preferred over landfill. The total energy consumed in the pyrolysis process was 24635.7?MJ/tonne. The conversion technologies have a lower environmental impact and produced net positive energy from NRP. The global warming potential shows that pyrolysis (3.91?kg?eq. CO2) contributes the least to global warming than waste-to-energy (18.56?kg?eq. CO2) and landfill (17.5?kg?eq. CO2). However, sensitivity analysis suggested that the inefficiencies of the current conversion technologies should be addressed. Between the two technologies studied, pyrolysis contributed less environmental burden, having a lower global warming potential, a higher efficiency in energy conversion, and less harmful emissions such as selenium and methane.
机译:摘要通常,塑料由于使用增加和非生物降解性而产生了多种环境影响。生命终止治疗是从塑料中回收能量的一种可行方法,同时减少了垃圾填埋场中处置的塑料量。本文研究了非重生塑料(NRP)对能量工艺的环境影响。 NRP考虑了三个废物处理过程:热解,废物到能量(WTE)和垃圾填埋场。环境影响评估结果表明,诸如热解和WTE之类的转化技术比垃圾填埋场更优选。热解过程中消耗的总能量为24635.7?mj/tonne。转化技术具有较低的环境影响,并从NRP产生了净正能。全球变暖的潜力表明,比废物到能源(18.56?kg?eq。CO2)和垃圾填埋场(17.5?kg?eq。Eq。CO2),热解(3.91?kg?等式CO2)对全球变暖的贡献最少。但是,灵敏度分析表明,应解决当前转换技术的效率低下。在研究的两种技术之间,热解的贡献减少了环境负担,具有较低的全球变暖潜力,较高的能量转化效率以及诸如硒和甲烷等有害排放量较小。

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