基于人体健康风险评价的废塑料可控燃烧与热解比较

IF 4.6 Q2 GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY Recycling Pub Date : 2023-04-03 DOI:10.3390/recycling8020038
Arianna Moranda, O. Paladino
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引用次数: 0

摘要

经济和社会福利条件的改善导致了废物产生的增加。在废品中,很大一部分是消费品成分中流行的塑料材料。因此,可以提出通过控制燃烧将塑料转化为能量,通过热/催化热解或气化将塑料转化成燃料,以处理不能作为单独聚合物回收的残余非均相混合塑料。从这些过程中可能获得的燃料的质量和类型不同,排放的质量也不同,这些燃料通常含有挥发性有机物、多氯联苯、二恶英、多环芳烃和重金属。在这项工作中,我们提出了一种基于人类健康风险评估的方法来比较控制燃烧和催化热解。分析了许多途径,并计算了大气、水、蔬菜、鱼类和食物中的污染物浓度。通过考虑不确定性来评估吸入和摄入途径的暴露。我们的研究结果表明,催化热解的风险很低。控制燃烧仍然是一个令人感兴趣的过程,但即使采用了最佳可用技术(BAT),如果考虑长期运行,颗粒物中所含PAHs导致的癌症风险也接近生活在工厂附近的人们的阈值。
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Controlled Combustion and Pyrolysis of Waste Plastics: A Comparison Based on Human Health Risk Assessment
Increasing conditions of economic and social well-being have led to an increase in waste production. Among the waste products, a significant portion consists of plastic materials that are popular in the components of consumer goods. For this reason, the conversion of plastic to energy via controlled combustion and plastic to fuel via thermal/catalytic pyrolysis or gasification can be proposed to treat the residual heterogeneous mixed plastics that cannot be recovered as individual polymers. The quality and type of fuels that are possible to obtain from these processes are different, as is the quality of their emissions, which generally contain VOCs, PCBs, dioxins, PAHs, and heavy metals. In this work, we propose a methodology based on human health risk assessment to compare controlled combustion and catalytic pyrolysis. Many pathways are analyzed, and pollutant concentrations are computed in the atmosphere, water, vegetables, fish, and food. Exposure is evaluated for inhalation and ingestion routes by taking into account uncertainties. Our results show that the risk profile of catalytic pyrolysis is low. Controlled combustion remains an interesting process, but even if Best Available Technologies (BAT) are adopted, the cancer risk due to PAHs contained in particulate is around the threshold for people living near the plant if a long period of operation is considered.
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来源期刊
Recycling
Recycling Environmental Science-Management, Monitoring, Policy and Law
CiteScore
6.80
自引率
7.00%
发文量
84
审稿时长
11 weeks
期刊最新文献
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