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Catalytic Ozonation of Organics in Reverse Osmosis Concentrate with Catalysts Based on Activated Carbon

机译:基于活性炭的催化剂对反渗透浓缩液中有机物的催化臭氧氧化作用

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摘要

Acid-washed activated carbon (AC-A), nitric acid modified activated carbon (AC-NO ), aminated activated carbon (AC-NH ) and cerium-loaded activated carbon (Ce/AC) were prepared and characterized by BET procedure, Boehm titration and SEM. Their performances were investigated for the ozonation of p-chlorobenzoic acid (p-CBA) in its solution and organic compounds in reverse osmosis concentrate (ROC). Nitration and amination had little effect on the surface area of catalyst, but increased the concentration of surface acid and basic functional group respectively. After loading Ce, the surface area of the catalyst decreased, and amount of Ce particles were agglomerated on the surface of activated carbon. All the four catalysts can improve the removal rate of the organics in water. Among the four catalysts, Ce/AC shows the highest catalytic activity. The removal rates of p-CBA, TOC and three target pollutants (e.g., tetracycline, metoprolol, atrazine) are 99.6%, 70.38%, 97.76%, 96.21% and 96.03%, respectively. Hydroxyl radical (·OH) was proved to be the core of catalytic reaction mechanism for Ce/AC, with the contribution rate to p-CBA removal of 91.4%. The surface groups and the Ce loaded on AC were the initiator for the rapid generation of ·OH. Electron transfer between electron-rich structures and cerium oxide might be a synergistic effect that can increase catalytic activity of Ce loaded on AC. Catalytic ozonation with Ce/AC is a promising ROC treatment technology due to its efficiency and possibilities for improvement.
机译:制备酸洗活性炭(AC-A),硝酸改性活性炭(AC-NO),胺化活性炭(AC-NH)和负载铈的活性炭(Ce / AC),并通过BET程序,Boehm进行表征滴定和SEM。研究了它们在溶液中对氯苯甲酸(p-CBA)和反渗透浓缩液(ROC)中有机化合物的臭氧化性能。硝化和胺化对催化剂的表面积影响很小,但分别增加了表面酸和碱性官能团的浓度。负载Ce后,催化剂的表面积减小,并且Ce颗粒的量聚集在活性炭的表面上。四种催化剂均可提高水中有机物的去除率。在四种催化剂中,Ce / AC表现出最高的催化活性。对CBA,TOC和三种目标污染物(例如四环素,美托洛尔,阿特拉津)的去除率分别为99.6%,70.38%,97.76%,96.21%和96.03%。羟基自由基(·OH)被证明是Ce / AC催化反应机理的核心,对p-CBA的去除率为91.4%。表面基团和负载在AC上的Ce是快速生成·OH的引发剂。富电子结构与氧化铈之间的电子转移可能是一种协同效应,可以增加负载在AC上的Ce的催化活性。 Ce / AC催化臭氧氧化技术是一种很有前途的ROC处理技术,因为它具有效率和改进的可能性。

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