首页> 外文期刊>Polish Journal of Environmental Studies >Advanced Treatment of Paper-Making Wastewater Using Catalytic Ozonation with Waste Rice Straw-Derived Activated Carbon-Supported Manganese Oxides as a Novel and Efficient Catalyst
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Advanced Treatment of Paper-Making Wastewater Using Catalytic Ozonation with Waste Rice Straw-Derived Activated Carbon-Supported Manganese Oxides as a Novel and Efficient Catalyst

机译:稻秸秆衍生的活性炭负载的锰氧化物作为新型高效催化剂的催化臭氧化深度处理造纸废水

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摘要

Waste rice straw was converted into activated carbon-supported manganese oxides (MnOx/RSAC) that were first used as a catalyst to improve the performance of ozonation of real paper-making wastewater. The results indicated that catalytic ozonation with the prepared catalyst exhibited a highly efficient performance in advanced treatment of paper-making wastewater, and the corresponding color and COD removal efficiencies were 58.5 and 77.5%, respectively. And the treated wastewater was more biodegradable and less toxic than that in ozone alone. Based on significant inhibition of the radical scavenger and fluorescence test in the catalytic ozonation process, we deduced that the enhancement of catalytic activity was responsible for MnOx/RSAC catalyzing ozone to generate more hydroxyl radicals and the possible reaction pathway was proposed. Thus, MnOx/RSAC catalyzing ozonation could serve as a stable, efficient, and economical process with a potential engineering application for treated refractory wastewater, and the results offered new insights for sustainable use of waste rice straw.
机译:废稻草被转化为活性炭负载的锰氧化物(MnOx / RSAC),首先被用作催化剂来改善实际造纸废水的臭氧化性能。结果表明,所制备的催化剂催化臭氧氧化在造纸废水的深度处理中表现出很高的效率,相应的脱色率和COD去除率分别为58.5和77.5%。与仅在臭氧中相比,处理后的废水具有更高的生物降解性和更低的毒性。基于对自由基清除剂的显着抑制作用和催化臭氧化过程中的荧光测试,我们推断出催化活性的增强是MnOx / RSAC催化臭氧产生更多羟基自由基的原因,并提出了可能的反应途径。因此,MnOx / RSAC催化臭氧化可作为稳定,高效,经济的方法,对处理后的难处理废水具有潜在的工程应用,结果为废稻草的可持续利用提供了新的见识。

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