Elimination of microplastic from soil by pyrolysis and potential hazard analysis: Effects of pyrolysis temperature and holding time

Kaiying Qiu, Lingling Zhang, Shibing Xie, Mengwei Zheng, Zhenyu Wang, Zefeng Wang
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Abstract

Efficient and harmless treatment of microplastics in soil is the current focus of microplastic pollution management. In this study, the pyrolysis effect of soil microplastics at different temperatures and holding times was analyzed. The results showed that temperature and holding time significantly affected the morphology and compositional structure of soil. Pure microplastics and product adhesion after pyrolysis at low temperature (400°C) were not easy to remove. Interestingly, compared with pure polyethylene (PE), direct pyrolysis of microplastics in soil could obtain better results, and the content of organic matter and polycyclic aromatic hydrocarbons (PAH) could be significantly reduced. However, the pyrolysis performance was very unsatisfactory even if the action time was prolonged at 400°C. Prolonged high-temperature treatment accelerated the fragmentation of the alkane main chain of PE, thus generating more PAH, and the temperature was not high enough (400°C) for further effective degradation of PAH into carbon dioxide and water. Therefore, higher temperature and longer holding time need to be selected to ensure the pyrolysis performance. This study revealed the role and mechanism of pyrolysis in soil microplastic mixed systems, aiming to provide a basis for the treatment of microplastics in terrestrial ecosystems.

通过热解消除土壤中的微塑料及潜在危害分析:热解温度和保温时间的影响
高效、无害地处理土壤中的微塑料是当前微塑料污染治理的重点。本研究分析了不同温度和保温时间下土壤微塑料的热解效果。结果表明,温度和保温时间对土壤的形态和成分结构有显著影响。低温(400°C)热解后的纯微塑料和产品附着物不易去除。有趣的是,与纯聚乙烯(PE)相比,直接热解土壤中的微塑料可获得更好的效果,有机物和多环芳烃(PAH)的含量可明显降低。然而,即使在 400°C 下延长作用时间,热解效果也很不理想。长时间的高温处理会加速聚乙烯烷烃主链的破碎,从而产生更多的多环芳烃,而且温度不够高(400°C),无法进一步有效地将多环芳烃降解为二氧化碳和水。因此,需要选择更高的温度和更长的保温时间,以确保热解性能。本研究揭示了热解在土壤微塑料混合系统中的作用和机理,旨在为陆地生态系统中微塑料的处理提供依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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