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铁基混凝-超滤工艺的膜污染性能:沉淀时间的影响。

Membrane fouling performance of Fe-based coagulation-ultrafiltration process: Effect of sedimentation time.

机构信息

State Key Laboratory of Pollution Control and Resource Reuse, School of Environmental Science and Engineering, Tongji University, Shanghai, 200092, China; Key Laboratory of Drinking Water Science and Technology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing, 100085, China; University of Chinese Academy of Sciences, Beijing, 100049, China.

Institute of Environmental Research at Greater Bay Area; Key Laboratory for Water Quality and Conservation of the Pearl River Delta, Ministry of Education, Guangzhou University, Guangzhou, 510006, China.

出版信息

Environ Res. 2021 Apr;195:110756. doi: 10.1016/j.envres.2021.110756. Epub 2021 Jan 23.

Abstract

Pre-coagulation is commonly used with ultrafiltration (UF) to alleviate the membrane fouling. Compared to conventional coagulation-sedimentation-UF (CSUF) processes, the direct coagulation-UF (CUF) processes are widely believed to perform better due to the formation of a looser cake layer. It is however shown in this study that not only the density of a cake layer, but also its thickness as well, can affect the membrane fouling behavior, which therefore are influenced by both the sedimentation time and flocs characteristics. Herein, the membrane fouling performance of Fe-based coagulation-UF process was systematically investigated with different sedimentation times. A critical threshold of 30 min was observed at the lab-scale: if shorter than that, the membrane fouling depended mainly on the cake layer density, and thus CUF outperformed CSUF; but when the sedimentation time was over 30 min, the cake layer thickness turned to be the dominant factor, thereby resulting in CSUF performing better. Furthermore, it was shown that the critical sedimentation time was decided by flocs characteristics. A lower water temperature induced the formation of irregular flocs with a lower fractal dimension, and the corresponding cake layer exhibited an almost identical density with increasing sedimentation time. In this regard, CSUF processes were constantly superior to CUF as the cake layer thickness decreased. On the other hand, a critical sedimentation time reappeared because of the higher floc fractal dimension under acidic conditions. This work showed for the first time that the membrane fouling of CSUF was up to the sedimentation time, and it was possible to outperform CUF if the sedimentation time exceeded a critical threshold. Such a finding is crucial to the future development of coagulation integrated UF processes.

摘要

预处理经常与超滤(UF)一起使用以减轻膜污染。与传统的混凝-沉淀-UF(CSUF)工艺相比,直接混凝-UF(CUF)工艺由于形成较松散的滤饼层而被广泛认为具有更好的性能。然而,本研究表明,不仅滤饼层的密度,而且其厚度也会影响膜污染行为,因此会受到沉淀时间和絮体特性的影响。在此,系统研究了不同沉淀时间下基于铁的混凝-UF 过程的膜污染性能。在实验室规模上观察到 30 分钟的临界阈值:如果沉淀时间短于此时间,则膜污染主要取决于滤饼层密度,因此 CUF 优于 CSUF;但当沉淀时间超过 30 分钟时,滤饼层厚度成为主要因素,从而导致 CSUF 表现更好。此外,结果表明,临界沉淀时间取决于絮体特性。较低的水温会导致形成具有较低分形维数的不规则絮体,并且相应的滤饼层随着沉淀时间的增加而表现出几乎相同的密度。在这方面,由于滤饼层厚度减小,CSUF 过程始终优于 CUF。另一方面,由于酸性条件下的絮体分形维数较高,再次出现了临界沉淀时间。这项工作首次表明,CSUF 的膜污染取决于沉淀时间,如果沉淀时间超过临界阈值,则有可能优于 CUF。这一发现对于未来混凝集成 UF 工艺的发展至关重要。

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