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污水污泥和生物固体中微塑料的调查与分析:来自英国一家污水处理厂的案例研究

Investigation and analysis of microplastics in sewage sludge and biosolids: A case study from one wastewater treatment works in the UK.

作者信息

Harley-Nyang Daisy, Memon Fayyaz Ali, Jones Nina, Galloway Tamara

机构信息

College of Engineering, Mathematics and Physical Sciences, Harrison Building, University of Exeter, North Park Road, Exeter, Devon EX4 4QF, UK.

College of Life and Environmental Sciences, Geoffrey Pope Building, Stocker Road, University of Exeter, Devon, EX4 4QD, UK.

出版信息

Sci Total Environ. 2022 Jun 1;823:153735. doi: 10.1016/j.scitotenv.2022.153735. Epub 2022 Feb 8.

Abstract

There is an increasing concern about the impacts of microplastic pollution in the terrestrial environment. Identifying sources, pathways and sinks of terrestrial microplastics is crucial to determining environmental exposure and applying efficient intervention measures. In the UK alone, 3.5 million tonnes (wet weight) of biosolids from the wastewater industry are recycled each year to agricultural land, raising the possibility that recycling of biosolids could be a significant source of microplastic pollution to the terrestrial environment. To address this issue, the present study determined the presence of microplastics from across the whole sludge treatment stream from one exemplar wastewater treatment works in the UK. Both sewage sludge (a liquid by-product produced from the wastewater treatment processes) and biosolids (sewage sludge that has undergone a treatment process) were examined as a source of microplastics to the terrestrial environment. Microplastics were detected in all samples taken from across the treatment process with concentrations ranging from 37.7-286.5 number of microplastics/g of sludge (dry weight). The microplastic load in the final biosolid products produced at the site ranged from 37.7-97.2 number of microplastics/g of sludge (dry weight). The wastewater treatment works in this study produces 900 tonnes of anaerobically digested sludge cake and 690 tonnes of lime stabilised cake per month. Based on the results from this study, the application of these biosolids to agricultural land as fertilisers can potentially release 1.61 × 10 and 1.02 × 10 microplastics in anaerobically digested and lime stabilised sludge respectively, every month (equivalent to the same volume as >20,000 plastic bank cards). The results illustrate the extent to which microplastics may enter the terrestrial environment through this route.

摘要

人们越来越关注微塑料污染对陆地环境的影响。确定陆地微塑料的来源、途径和汇对于确定环境暴露情况以及采取有效的干预措施至关重要。仅在英国,每年就有350万吨(湿重)来自废水处理行业的生物固体被回收用于农业用地,这增加了生物固体回收可能成为陆地环境微塑料污染重要来源的可能性。为解决这一问题,本研究确定了英国一家典型废水处理厂整个污泥处理流程中微塑料的存在情况。污水污泥(废水处理过程产生的液体副产品)和生物固体(经过处理过程的污水污泥)都被作为陆地环境微塑料的来源进行了检测。在整个处理过程中采集的所有样品中都检测到了微塑料,浓度范围为每克污泥(干重)含37.7 - 286.5个微塑料。该场地最终生产的生物固体产品中的微塑料负荷为每克污泥(干重)含37.7 - 97.2个微塑料。本研究中的废水处理厂每月生产900吨厌氧消化污泥饼和690吨石灰稳定饼。根据本研究结果,将这些生物固体作为肥料施用于农田,厌氧消化污泥和石灰稳定污泥每月分别可能释放1.61×10⁶和1.02×10⁶个微塑料(相当于超过20000张塑料银行卡的体积)。结果说明了微塑料通过这一途径进入陆地环境的程度。

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