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使用MeO过滤系统作为预处理工艺去除地表水中的铵和锰。

Removal of ammonium and manganese from surface water using a MeO filter system as a pretreatment process.

作者信息

Zhang Ruifeng, Huang Tinglin, Wen Gang, Tian Xuan, Tang Zhangcheng

机构信息

School of Urban Planning and municipal engineering, Xi'an Polytechnic University, Xi'an, PR People's Republic of China.

Key Laboratory of Northwest Water Resource, Environment and Ecology, MOE, Xi'an University of Architecture and Technology, Xi'an, PR People's Republic of China.

出版信息

Environ Technol. 2023 Apr;44(9):1302-1312. doi: 10.1080/09593330.2021.2000040. Epub 2021 Nov 28.

Abstract

Residual aluminium from the coagulation-sedimentation process in the treatment of surface water can decrease the catalytic activity of a manganese co-oxide filter film (MeO) used for ammonium and manganese removal. To solve this problem, a MeO filter was used as a pretreatment process to filtrate source water directly before the coagulation and sedimentation treatment. The removal performance and the mechanism of change in the activity of MeO were investigated. The experimental results indicated that the MeO filter removed ammonium and manganese from surface water sources effectively, and its manganese removal activity was enhanced. The characteristics of MeO were investigated via SEM, EDS, XPS, and the BET surface area. Analysis of the experimental results showed that the increase in the content of Al under this condition was much lower than that under treatment with the coagulation-sedimentation process. After long-term operation, the amount and surface area of MeO coated on the filter sand increased significantly, leading to an increase in the catalytic activity. However, in cold water, the catalytic activity of MeO decreased, and more Mn(II) was obtained on the surface of MeO. Thus, the morphology of MeO changed. Fortunately, when water temperature increases, the removal activity can recover immediately. By inactivating microorganisms and comparing the removal performance with that under other conditions, the MeO activity of the pretreatment process is preserved effectively and no strengthening measures are required. This study will provide a new strategy for the use of the MeO catalytic technology.

摘要

在地表水的处理过程中,混凝沉淀工艺产生的残余铝会降低用于去除铵和锰的锰氧化物滤膜(MeO)的催化活性。为解决这一问题,采用MeO滤池作为预处理工艺,在混凝沉淀处理之前直接对原水进行过滤。研究了MeO的去除性能及其活性变化机制。实验结果表明,MeO滤池能有效去除地表水源中的铵和锰,且其除锰活性增强。通过扫描电子显微镜(SEM)、能谱仪(EDS)、X射线光电子能谱(XPS)和比表面积分析仪(BET)对MeO的特性进行了研究。实验结果分析表明,在此条件下铝含量的增加远低于混凝沉淀工艺处理时的增加量。长期运行后,滤砂表面包覆的MeO的量和表面积显著增加,导致催化活性增强。然而,在冷水环境中,MeO的催化活性下降,MeO表面获得更多的二价锰(Mn(II)),从而导致MeO的形态发生变化。幸运的是,当水温升高时,去除活性可立即恢复。通过灭活微生物并与其他条件下的去除性能进行比较,预处理工艺的MeO活性得到有效保持,无需强化措施。本研究将为MeO催化技术的应用提供一种新策略。

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