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基于 MBR 工艺的陶瓷支撑体上氧化石墨烯/壳聚糖复合膜的制备及其对莠去津的去除。

Development of graphene oxide/chitosan composite membrane on ceramic support for atrazine remediation by MBR process.

机构信息

CSIR-Central Glass and Ceramic Research Institute, Academy of Scientific and Innovative Research (AcSIR), New Delhi, India.

Ceramic Membrane Division, CSIR-Central Glass and Ceramic Research Institute, 196, Raja S.C.Mullick Road, Jadavpur, Kolkata, 700032, India.

出版信息

Environ Sci Pollut Res Int. 2018 Nov;25(33):33334-33352. doi: 10.1007/s11356-018-3255-9. Epub 2018 Sep 26.

Abstract

Graphene oxide (GO)-based composite ultrafiltration (UF) membranes were prepared on macroporous ceramic support tubes following a new way. Chitosan was used as an intermediate matrix between the substrate and GO coating. It has hydroxyl and amine groups, which enhances its film forming capacity with hydrophilic GO. This led us to use them as precursors for membrane development. Process efficiency of the prepared UF membrane was assessed in terms of the removal of toxic pesticide atrazine in side-stream membrane bioreactor (MBR) processes. Response surface methodology (RSM) was used to optimize the atrazine biodegradation efficiency. Enhanced atrazine removal of > 95% was obtained in the MBR treatment at the optimized conditions. Hermia's model equations were applied to analyze the mechanism of membrane fouling in the UF-MBR system. The influencing parameters were studied in details and pneumatic backpulsing was applied to minimize fouling in the UF-MBR system by statistical analysis. Mixed liquor suspended solids (MLSS) was found to affect both atrazine biodegradation and membrane fouling; hence, its effect was thoroughly analyzed. The developed process hence proved to be highly proficient in terms of such organic pesticides removal for long-term operations.

摘要

基于氧化石墨烯(GO)的复合超滤(UF)膜是在大孔陶瓷支撑管上通过一种新方法制备的。壳聚糖作为基底和 GO 涂层之间的中间基质。它具有羟基和胺基,这增强了其与亲水性 GO 的成膜能力。这使得我们可以将它们用作膜开发的前体。通过侧流膜生物反应器(MBR)过程中去除有毒农药莠去津来评估所制备的 UF 膜的处理效率。响应面法(RSM)用于优化莠去津的生物降解效率。在优化条件下,MBR 处理中莠去津的去除率超过 95%。Hermia 模型方程被应用于分析 UF-MBR 系统中膜污染的机理。详细研究了影响参数,并通过统计分析应用气动反冲洗来最小化 UF-MBR 系统中的污染。混合液悬浮固体(MLSS)被发现同时影响莠去津的生物降解和膜污染;因此,对其影响进行了彻底分析。该工艺在长期运行中对这类有机农药的去除表现出很高的效率。

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