聚丙烯微塑料浓度对废水脱氮的影响

Xiongshuang Su, Cheng Chen, Jia Li, Shunxing Lu, Guihua Xu
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引用次数: 3

摘要

微塑料在环境中无处不在,大量微塑料进入污水处理厂,其对活性污泥反硝化的影响鲜有报道。以聚丙烯(PP)微塑料为研究对象,进行了脱氮研究。本研究设置不同浓度的PP微塑料,研究其对污水脱氮的影响。采用no3 -N、no2 -N、Total-N (TN)、胞外高分子物质、Zeta电位、n2o产量等指标评价反硝化效果。结果表明,聚丙烯微塑料的浓度对脱氮过程有影响。它的浓度可能会破坏污泥的反硝化作用,特别是在低浓度下,因为它减缓了NO 2- - n的还原过程。同时,由于浓度呈正相关,也会释放一定量的温室气体n2o。然而,在不同浓度的PP微塑料脱氮过程中,no3 - - n的去除率几乎不受影响。当PP微塑料浓度达到60 mg L -1时,出水no2 - n的积累量显著增加。因此,胞外聚合物和电位指标也表明,PP微塑料会降低污泥的絮凝能力,导致污泥的整体反硝化效率下降。当PP微塑料浓度超过100 mg L -1时,微塑料对反硝化水质指标的影响相对较小,但会增加n2o排放量,产生负面影响。此外,添加不同微塑料对活性污泥反硝化途径的影响有待于进一步研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Polypropylene Microplastics Concentration on Wastewater Denitrification
: Microplastics have been ubiquitously in the environment, and a large number of microplastics have entered wastewater treatment plants, and their effects on activated sludge denitrification are rarely reported. Polypropylene (PP) microplastics were selected as the research object for denitrification research. Herein, we set different concentrations of PP microplastics to study their effect on sewage denitrification. Several indicators including NO 3- -N, NO 2- -N, Total-N (TN), extracellular polymer substances, Zeta potential, and N 2 O production, etc., were employed to evaluate the denitrification effect. Results demonstrated that the denitrification process was affected by the concentration of PP microplastics. Its concentration may damage the denitrification of sludge, especially in low concentrations, due to its slowing down the NO 2- -N reduction process. Meanwhile, it will release an amount of greenhouse gas N 2 O as the concentration is positively correlated. However, the removal of NO 3- -N is almost unaffected in different concentrations of PP microplastics during the denitrification process. When the concentration of PP microplastics reached 60 mg L -1 , the accumulation of NO 2- -N in the effluent increased significantly. Accordingly, the extracellular polymer and potential indicators also showed that PP microplastics will reduce the flocculation capacity of the sludge, resulting in a decrease in the denitrification efficiency of the sludge overall. When the concentration of PP microplastics exceeded 100 mg L -1 , the impact of microplastics on denitrification water quality indicators was relatively small, but it will increase the N 2 O emission with a negative impact. In addition, the activated sludge denitrification pathway can be affected by the addition of different microplastics and requires further investigations in the future.
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