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Catalytic ozonation of humic acid in water with modified activated carbon: Enhancement and restoration of the activity of an activated carbon catalyst

机译:改性活性炭对水中腐殖酸的催化臭氧氧化作用:增强和恢复活性炭催化剂的活性

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Catalytic ozonation of organic compounds in water is an important research area for addressing the current pollution crisis. The objective of the present study was to find a modification method for enhancing and restoring the activity of the activated carbon (AC) catalyst applied in the catalytic ozonation of the humic acid (HA) aquatic contaminant. A three-step treatment consisting of an initial thermal treatment, oxidation treatment, and further thermal treatment increased the amount of surface hydroxyl groups (C-OH) of AC while reducing the amounts of other surface groups, such as basic, carboxyl, lactone, and carbonyl groups. The obtained ACN(2)O(2)N(2) shows better catalytic performance for HA ozonation than virgin AC, and the COD removal improved from 71% to 96% after reacting for 10 min. This modification method could also restore the catalytic activity of used ACN(2)O(2)N(2), as the COD removal improved from 74% to 97% after reacting 10 min. The apparent first-order rate constant (k(app)) was obtained by fitting the evolution of TOC. The regression analyses of the relationships between the k(app) and the surface chemical properties, textural properties, and degree of AC graphitization showed that the increase in the amount of C-OH was the main factor driving the enhancement and restoration of the AC catalyst activity.
机译:水中有机化合物的催化臭氧氧化是解决当前污染危机的重要研究领域。本研究的目的是找到一种改进方法,用于增强和恢复用于腐殖酸(HA)水生污染物催化臭氧化的活性炭(AC)催化剂的活性。由初始热处理,氧化处理和进一步热处理组成的三步处理可以增加AC的表面羟基(C-OH)的数量,同时减少其他表面基团(例如碱性,羧基,内酯,和羰基。获得的ACN(2)O(2)N(2)对HA臭氧氧化反应比原始AC表现出更好的催化性能,反应10分钟后,COD的去除率从71%提高到96%。此修饰方法还可以恢复使用的ACN(2)O(2)N(2)的催化活性,因为反应10分钟后,COD的去除率从74%提高到97%。通过拟合TOC的演变获得表观一级速率常数(k(app))。对k(app)与表面化学性质,织构性质和AC石墨化程度之间关系的回归分析表明,C-OH含量的增加是驱动AC催化剂增强和恢复的主要因素。活动。

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