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催化臭氧化反渗透膜浓缩液:性质与机理。

Catalytic ozonation of reverse osmosis membrane concentrates by catalytic ozonation: Properties and mechanisms.

机构信息

College of Urban Construction, Nanjing Tech University, Nanjing, China.

出版信息

Water Environ Res. 2024 Jun;96(6):e11058. doi: 10.1002/wer.11058.

DOI:10.1002/wer.11058
PMID:38831682
Abstract

Ni-Mn@KL ozone catalyst was prepared for the efficient treatment of reverse osmosis membrane concentrates. The working conditions and reaction mechanism of the ozone-catalyzed oxidation by Ni-Mn@KL were systematically studied. Then, a comprehensive CRITIC weighting-coupling coordination evaluation model was established. Ni-Mn@KL was characterized by scanning electron microscopy, BET, X-ray diffraction, X-ray photoelectron spectroscopy, energy-dispersive spectrometry, and X-ray fluorescence spectrometry and found to have large specific surface area and homogeneous surface dispersion of striped particles. Under the optimum working conditions with an initial pH of 7.9 (raw water), a reaction height-to-diameter ratio of 10:1, an ozone-aeration intensity of 0.3 L/min, and a catalyst filling rate of 10%, the maximum COD removal rate was 60.5%. Free-radical quenching experiments showed that OH oxidation played a dominant role in the Ni-Mn@KL-catalyzed ozone-oxidation system, and the reaction system conformed to the second-order reaction kinetics law. Ni-Mn@KL catalysts were further confirmed to have good catalytic performance and mechanical performance after repeated utilization. PRACTITIONER POINTS: Ni-Mn@KL catalyst can achieve effective treatment of RO film concentrated liquid. High COD removal rate of RO membrane concentrated liquid was obtained at low cost. Ni-Mn@KL catalyst promotes ozone decomposition to produce ·OH and O · oxidized organic matter. The Ni-Mn@KL catalyst can maintain good stability after repeated use. A CRITIC weight-coupling coordination model was established to evaluate the catalytic ozonation.

摘要

镍锰@介孔 KIT-6 臭氧催化剂用于反渗透膜浓缩液的高效处理。系统研究了 Ni-Mn@KL 臭氧催化氧化的工作条件和反应机理。然后,建立了综合 CRITIC 加权耦合协调评价模型。通过扫描电子显微镜、BET、X 射线衍射、X 射线光电子能谱、能量色散光谱和 X 射线荧光光谱对 Ni-Mn@KL 进行了表征,发现其具有大的比表面积和均匀的条状颗粒表面分散性。在初始 pH 值为 7.9(原水)、反应高度与直径比为 10:1、臭氧曝气强度为 0.3 L/min 和催化剂填充率为 10%的最佳工作条件下,最大 COD 去除率为 60.5%。自由基猝灭实验表明,OH 氧化在 Ni-Mn@KL 催化臭氧氧化体系中起主导作用,反应体系符合二级反应动力学规律。Ni-Mn@KL 催化剂经重复利用后,进一步证实具有良好的催化性能和机械性能。

实践者要点

镍锰@介孔 KIT-6 催化剂可实现反渗透膜浓缩液的有效处理。

以低成本获得反渗透膜浓缩液的高 COD 去除率。

Ni-Mn@KL 催化剂促进臭氧分解产生·OH 和 O·氧化有机物。

Ni-Mn@KL 催化剂经重复使用后仍能保持良好的稳定性。

建立了 CRITIC 加权耦合协调评价模型来评价催化臭氧化。

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