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采用膜生物反应器与粉末活性炭联用去除微污染物 - 一种统计分析方法。

Removal of micropollutants using a membrane bioreactor coupled with powdered activated carbon - A statistical analysis approach.

机构信息

Department of Engineering, University of Ferrara, Via Saragat 1, 44122 Ferrara, Italy; Department of Analytical Chemistry, Faculty of Chemical Engineering and Technology, University of Zagreb, Trg Marka Marulića 19, 10000 Zagreb, Croatia.

Department of Engineering, University of Ferrara, Via Saragat 1, 44122 Ferrara, Italy.

出版信息

Sci Total Environ. 2022 Sep 20;840:156557. doi: 10.1016/j.scitotenv.2022.156557. Epub 2022 Jun 9.

Abstract

The occurrence of micropollutants in wastewater is largely documented as well as the environmental risk posed by their residues in the aquatic environment. Many investigations have been carried out and plan to study and improve their removal efficiency in existing wastewater treatment plants. At the same time, efforts are being made to develop new technologies or upgrade existing ones to increase the removal of a selection of micropollutants. Due to the great variability in their chemical and physical properties, it would be advisable to find representative compounds or identify the factors which most influence the removal mechanisms under specific conditions. This study analyses the removal efficiencies of a great number of micropollutants in wastewater treated in a membrane bioreactor coupled with powdered activated carbon (PAC), which was the subject of a review article we have recently published. The main operational parameters (i.e. PAC dosage, PAC retention time and sludge retention time) and compound physico-chemical properties (i.e. octanol-water distribution coefficient, charge and molecular weight) were first selected on the basis of a dedicated screening step and then an attempt was carried out to clarify their influence on the removal of micropollutants from wastewater during its treatment. To this end, a statistical analysis, mainly based on exploratory methods (cluster analysis and principal component analysis) and regression analysis, was carried out to compare and discuss the different results published in the scientific literature included in the cited review article. It emerged, that, based on the collected dataset, micropollutant charge and LogD seem to play the most important role in the removal mechanisms occurring in MBR coupled with PAC.

摘要

废水中微污染物的存在已被大量记录,其残留对水生环境造成的环境风险也同样受到关注。许多调查已经展开,并计划研究和提高现有废水处理厂对这些污染物的去除效率。同时,人们正在努力开发新技术或升级现有技术,以增加对选定微污染物的去除。由于其化学和物理性质的巨大可变性,找到有代表性的化合物或确定在特定条件下最能影响去除机制的因素是明智的。本研究分析了大量在膜生物反应器中与粉末活性炭(PAC)耦合处理的废水中的微污染物的去除效率,这是我们最近发表的一篇综述文章的主题。主要操作参数(即 PAC 剂量、PAC 保留时间和污泥保留时间)和化合物物理化学性质(即辛醇-水分配系数、电荷和分子量)首先根据专门的筛选步骤进行选择,然后尝试澄清它们对在处理废水过程中去除微污染物的影响。为此,主要基于探索性方法(聚类分析和主成分分析)和回归分析进行了统计分析,以比较和讨论在引用的综述文章中包含的科学文献中发表的不同结果。结果表明,基于收集的数据,微污染物的电荷和 LogD 似乎在 MBR 与 PAC 耦合的去除机制中起着最重要的作用。

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