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The effect of humic acids on nitrobenzene oxidation by ozonation and O_3/UV processes

机译:腐殖酸对臭氧氧化和O_3 / UV工艺对硝基苯氧化的影响

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Three types of commercially available humic acids from different sources were used to simulate natural organic matter in water for the investigation of nitrobenzene oxidation by ozonation and O_3/UV. Despite the structural differences among the Fluka, Aldrich and Suwanee River humic acids as reflected by the UV absorptivity, their effects on nitrobenzene removal rate was observed to be similar for the two processes. Removal rate of nitrobenzene was hindered by the addition of humic acids in ozonation as well as in O_3/UV processes. However, the hindrance by the humic acids was more pronounced in O_3/UV as compared to the ozonation process. The effect of humic acid in O_3/UV was primarily a UV light screening. Addition of humic acids above a certain concentration did not cause any further retardation on nitrobenzene removal rate by ozonation and O_3/UV. Accumulation of hydrogen peroxide as well as probable formation of peroxy radicals in the solutions might induce chain promoting reactions to produce hydroxyl radical during the nitrobenzene oxidation. For waters containing high levels of humic acid, ozonation alone might be as effective as O_3/UV process for the removal of nitrobenzene.
机译:三种不同来源的可商购腐殖酸被用于模拟水中的天然有机物,以研究臭氧化和O_3 / UV对硝基苯的氧化作用。尽管紫外线吸收率反映了Fluka,Aldrich和Suwanee River腐殖酸之间的结构差异,但在这两个过程中,观察到它们对硝基苯去除率的影响相似。在臭氧化以及O_3 / UV工艺中,腐殖酸的加入阻碍了硝基苯的去除速率。但是,与臭氧化过程相比,腐殖酸的阻碍在O_3 / UV中更为明显。腐殖酸在O_3 / UV中的作用主要是紫外光屏蔽。高于一定浓度的腐殖酸的添加不会通过臭氧化和O_3 / UV进一步阻止硝基苯的去除速率。过氧化氢的积累以及溶液中过氧自由基的形成可能会引起链促进反应,从而在硝基苯氧化过程中产生羟基自由基。对于腐殖酸含量高的水,单独的臭氧氧化可能与O_3 / UV工艺去除硝基苯一样有效。

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