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Resource and environmental assessment of pyrolysis-based high-value utilization of waste passenger tires

机译:废物乘用车轮胎热解基高价值利用的资源与环境评价

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摘要

Carbon black and fuel oil as the products of conventional pyrolysis are limited in application owing to their low quality. This paper presents a pyrolysis-based high-value utilization process of waste passenger tires (WPTs). A comparison of the life cycle assessment (LCA) between this process and a conventional pyrolysis process was carried out. Moreover, a comprehensive evaluation index of the ratio of economic profit to environmental cost (PCR) was established. The results show that the increase in economic profits brought about by the high-value utilization process is higher than the increase in environmental costs, and the pyrolysis-based high-value utilization of WPTs has more positive benefits than conventional pyrolysis. Reducing the consumption of electricity and natural gas in the high-value utilization process has a significant effect on the decline of the main environmental impacts. Compared with the production of conventional pyrolytic products, this has the dual advantages of resource saving and environmental protection. Also, the environmental loads of ozone layer depletion (ODP) and human toxicity (HTP) are reduced by over 90%, and the loads of abiotic depletion (ADP) of minerals and fossil fuels are reduced by over 84%. Sensitivity analyses show that both the production cost and the price of carbon black significantly influence the PCR. The replacement of coal-fired power generation with renewable energy generation has a positive effect on improving the resource and environmental performance for the high-value utilization process of WPTs.
机译:由于它们的低质量,碳黑和燃料油作为常规热解的产品受到限制。本文介绍了废物乘用车轮胎(WPTS)的热解基的高价值利用过程。进行该方法与常规热解过程之间的生命周期评估(LCA)的比较。此外,建立了经济利润与环境成本(PCR)的综合评价指标。结果表明,高价值利用过程所带来的经济利润的增加高于环境成本的增加,WPTS的热解基高值利用率比常规热解具有更大的效益。降低高价值利用过程中的电力和天然气的消耗对主要环境影响的衰落有显着影响。与常规热解产品的生产相比,这具有资源储蓄和环保的双重优势。此外,臭氧层耗尽(ODP)和人毒性(HTP)的环境载荷减少了90%以上,矿物质和化石燃料的非生物耗尽(ADP)减少了84%。敏感性分析表明,生产成本和炭黑的价格都会显着影响PCR。利用可再生能源产生燃烧发电具有积极影响,对提高WPTS的高价值利用过程的资源和环境性能。

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