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IR microspectroscopic identification of microplastics in municipal wastewater treatment plants

机译:市政废水处理厂中微型光谱鉴定微型光谱鉴定

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Municipal wastewater treatment plants (WWTPs) have been identified as a key source of microplastics (MPs) release into rivers and oceans. Varied extents of MPs pollution have been observed at different WWTPs with limited information in Thailand. This research aimed to study the occurrence of MPs in municipal WWTPs in Thailand by measuring MPs of three WWTPs which employ different treatment process. The WWTPs were selected to represent MP pollution from urbanized and suburbanized areas with different treatment set-ups, i.e., sequence batch reactor (WWTP-A), oxidation ditch (WWTP-B), and conventional activated sludge (WWTP-C). Water and sludge sampling was performed at the inlet and outlet of primary and secondary treatment units. The results indicate that the average MPs removal efficiency of the WWTPs was ca. 84%, with the aeration tank as the main removal unit by transferring MPs from the water phase to sludge. Primary treatment comprising of screening and grit chambers could not remove MPs effectively. Most of the MPs observed in the WWTPs were fibers (32-57%), mostly made of polyester, polyethylene, polyacrylate, and polypropylene. From these results, it is suggested to implement tertiary treatment options to improve MPs removal efficiency in WWTPs, and to apply post-treatment to the WWTPs' raw sludge to prevent the MPs' release into the environment when the sludge is applied to agricultural land.
机译:市政废水处理厂(WWTPS)已被鉴定为微薄(MPS)释放到河流和海洋的关键来源。在不同的WWTPS在泰国有限的不同WWTPS观察到MPS污染的各种范围。该研究旨在通过测量三种WWTPS采用不同治疗过程的MPS来研究泰国市的MPS在泰国的MPS发生。选择WWTPS以不同的处理设置,即序列批量反应器(WWTP-A),氧化沟(WWTP-B)和常规活性污泥(WWTP-C)来表示来自城市化和郊区的MP污染。在初级和次级处理单元的入口和出口进行水和污泥采样。结果表明,WWTP的平均MPS去除效率是CA。 84%,通过将MP从水相移入污泥,与曝气罐作为主要移除单元。包含筛选和砂腔室的初级处理不能有效地除去MPS。在WWTPS中观察到的大多数MPS是纤维(32-57%),主要由聚酯,聚乙烯,聚丙烯酸酯和聚丙烯制成。从这些结果来看,建议实施三级治疗方案,以提高WWTPS中的MPS去除效率,并在污泥适用于农业土地时防止MPS释放到环境中的治疗。

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