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通过热解从生物固体中去除微塑料、全氟辛酸及其替代品,并生产生物炭:可行性和技术经济分析。

Elimination of microplastics, PFAS, and PPCPs from biosolids via pyrolysis to produce biochar: Feasibility and techno-economic analysis.

机构信息

Bren School of Environmental Science & Management, University of California, Santa Barbara, United States.

Bren School of Environmental Science & Management, University of California, Santa Barbara, United States.

出版信息

Sci Total Environ. 2024 Oct 15;947:174773. doi: 10.1016/j.scitotenv.2024.174773. Epub 2024 Jul 14.

DOI:10.1016/j.scitotenv.2024.174773
PMID:39013495
Abstract

Biosolids from municipal wastewater treatment contain many contaminants of emerging concern, including microplastics (MPs), per- and polyfluoroalkyl substances (PFAS), pharmaceuticals and chemicals from personal care products (PPCPs). Many of these contaminants have very slow biotic or abiotic degradation rates and have been shown to have human and ecological health impacts. Application of biosolids to agriculture, a common disposal method, can result in extended environmental contamination. An approach for eliminating the contaminants is pyrolysis, which can also generate biochar, enhancing carbon sequestration as a side-benefit. We pyrolyzed biosolid samples from an operating facility at various temperatures from 400 to 700 °C with a 2-hour residence time. We then evaluated contaminant removal, which in many cases was 100 %, with only a few residuals. No trace of PFAS was detectable even at 400 °C. Overall mass removal of PPCPs, including PFAS, was over 99.9 %. MP removal via pyrolysis ranged from 91 to 97 %. The biochar contains significant amounts of Fe and P, which make it a useful fertilizer amendment. The techno-economic analysis indicates that pyrolysis may generate significant cost savings, and revenue from the sale of biochar, sufficient to more than cover the investment and operating costs of the dryer and pyrolysis unit.

摘要

城市污水处理厂的生物固体中含有许多新兴关注污染物,包括微塑料 (MPs)、全氟和多氟烷基物质 (PFAS)、药品和个人护理产品 (PPCP) 中的化学物质。这些污染物中的许多生物降解或非生物降解速度非常缓慢,并且已被证明对人类和生态健康有影响。将生物固体应用于农业是一种常见的处理方法,可能会导致环境的持续污染。消除这些污染物的一种方法是热解,这也可以产生生物炭,作为一种附带好处增强碳固存。我们在 400 到 700°C 的不同温度下对来自运行设施的生物固体样品进行了 2 小时的热解处理。然后,我们评估了污染物的去除情况,在许多情况下去除率达到了 100%,只有很少的残留。即使在 400°C 也检测不到 PFAS 的痕迹。总体而言,包括 PFAS 在内的 PPCP 的去除率超过 99.9%。通过热解去除的 MP 范围在 91%到 97%之间。生物炭含有大量的铁和磷,使其成为一种有用的肥料添加剂。技术经济分析表明,热解可能会带来显著的成本节约,并且生物炭的销售收入足以覆盖干燥器和热解装置的投资和运营成本。

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Elimination of microplastics, PFAS, and PPCPs from biosolids via pyrolysis to produce biochar: Feasibility and techno-economic analysis.通过热解从生物固体中去除微塑料、全氟辛酸及其替代品,并生产生物炭:可行性和技术经济分析。
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