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Cu-Co-Mn/AC 催化臭氧氧化法改善煤气化反渗透浓缩液处理。

Improvement of coal gasification reverse osmosis concentrate treatment by Cu-Co-Mn/AC catalytic ozonation.

机构信息

National Engineering Research Center of Industrial Wastewater Detoxication and Resource Recovery, East China University of Science and Technology, Shanghai 200237, China E-mail:

Shanghai Municipal Engineering Design Institute (Group) Co., LTD, Shanghai 200082, China.

出版信息

Water Sci Technol. 2023 Jan;87(1):144-156. doi: 10.2166/wst.2022.420.

Abstract

Approximately 20% of concentrate will be produced from coal gasification wastewater after reverse osmosis treatment. The organic matter contained in the concentrate affects its evaporation crystallisation; therefore, the refractory organics must be removed. In this study, Cu-Co-Mn/AC catalytic ozonation was used to treat reverse osmosis concentrate (ROC). With the addition of the Cu-Co-Mn/AC catalyst, the production of ·OH increased by 82 μmol/L, thereby enhancing the ozonation performance. The pH, ozone dosage, and catalyst dosage all affected the catalytic ozonation performance. By constructing a response surface model, it was found that the catalyst dosage had the most significant effect on the catalytic ozonation performance. The predicted optimal reaction conditions were pH = 9.02, ozone dosage = 1.08 g/L, and catalyst dosage = 1.33 g/L, under which the chemical oxygen demand (COD) removal reached a maximum of 81.49%.

摘要

反渗透处理后,煤制气废水中将产生约 20%的浓缩液。浓缩液中含有的有机物会影响其蒸发结晶,因此必须去除难挥发的有机物。本研究采用 Cu-Co-Mn/AC 催化臭氧化法处理反渗透浓缩液(ROC)。添加 Cu-Co-Mn/AC 催化剂后,·OH 的生成量增加了 82μmol/L,从而增强了臭氧化性能。pH 值、臭氧用量和催化剂用量均会影响催化臭氧化性能。通过构建响应面模型发现,催化剂用量对催化臭氧化性能的影响最为显著。预测的最佳反应条件为 pH=9.02、臭氧用量=1.08g/L、催化剂用量=1.33g/L,在此条件下化学需氧量(COD)去除率最高可达 81.49%。

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