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首页> 外文期刊>Journal of Hazardous Materials >Human Health Risk Assessment of a pilot-plant for catalytic pyrolysis of mixed waste plastics for fuel production
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Human Health Risk Assessment of a pilot-plant for catalytic pyrolysis of mixed waste plastics for fuel production

机译:用于燃料生产混合废塑料催化热解的试验厂的人体健康风险评估

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Dioxins, PCBs and VOCs are the main hazardous chemicals emitted by gaseous streams from catalytic pyrolysis of waste plastics. In this work we propose a methodology to assess toxic and cancer risk under uncertainty, due to inhalation and ingestion of these chemicals by considering complex scenarios, as repeated start-ups and short continuous operation that may occur in a pilot-plant. Different simulation tools are combined to evaluate the expected concentration of pollutants in the environmental compartments and food. Hazard Index and Cancer Risk remain under the threshold for both dioxins (HI 0.012, CR 5.03 10(-7)) and PCBdl (HI 1.3 10(-7), CR 2.49 10(-12)) in all the simulated scenarios, also for the worst case of children ingesting vegetables and meat and uncertainty factors up to 1000. Different results are obtained for VOCs since repeated leakages during the pilot-plant operation are possible. All the risk indexes for benzene are under the threshold (HI 0.175, CR 1.41 10(-7)); acute toxic risk due to inhalation and cancer risk due to ingestion of grain/vegetables are over the threshold if all the uncertainties are considered. Lesson learned: HHRA is important also during scale-up; pilot-plants for pyrolysis of waste plastics must always be equipped with all the abatement systems designed for the final plant.
机译:二恶英,PCB和VOC是来自废塑料催化热解的气流流发射的主要危险化学品。在这项工作中,我们提出了一种方法论,通过考虑复杂的情景,通过考虑复杂的场景,在这些化学物质中吸入和摄取这些化学品,以重复的初创性和可能发生的方法,这些方法提出了一种不确定性的疾病和癌症风险。组合不同的仿真工具,以评估环境隔间和食物中的污染物浓度。危害指数和癌症风险仍然在二恶英(Hi <0.012,Cr <5.03 10(-7))和PCBD1(Hi <1.3 10(-7),Cr <2.49 10(-12))中的阈值模拟场景,也是最糟糕的儿童,摄取蔬菜和肉类以及​​高达1000的不确定因素。对于VOC而言,可以获得不同的结果,因为在导频工厂操作期间重复泄漏是可能的。苯的所有风险指标都在阈值下(Hi <0.175,Cr <1.41 10(-7));如果考虑所有不确定因素,由于摄入谷物/蔬菜的吸入和癌症风险导致的急性毒性风险是在门槛上。课程学习:HHRA在扩大过程中也很重要;用于热解的飞行植物必须始终配备所有为最终植物设计的消减系统。

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