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An overview of fenton oxidation process in water and wastewater treatment

机译:芬顿氧化工艺在水和废水处理中的应用概述

摘要

Advanced oxidation processes (AOPs) belong to chemical oxidation process which produce and utilise hydroxyl radicals (HO • ) as their key oxidant. These processes are among the relatively recent technologies being developed to solve the environmental problems related to the generation of nonbiodegradable and toxic aqueous wastes. Although the idea of AOPs has been in existence since the mid 20 th century, active research efforts in this field has only taken place in the last 30 years (Aieta et al., 1988; Strukul, 1992; Andreozzi et al. 1999). As shown in Table 1, HO • is the second most reactive common oxidising agent known to mankind after fluorine. The typical rate constants for reaction between HO • and organic or inorganic materials are in the order of 10 6 to 10 9 M -1 s -1 (Farataziz and Ross, 1977). These rates, as shown in Table 2, are about 10 9 times higher than its closest competitor, ozone (O3) (Andreozzi et al., 1999). A combination of hydrogen peroxide (H2O2) and ferrous (Fe 2+ ), known as Fenton’s Reagent (FR) is of the AOPs. Discovered by H. J. H. Fenton in 1894, FR can be considered as the oldest AOPs. As compared to other AOPs, FR can be considered as the simplest technique in generating the HO • .
机译:高级氧化过程(AOP)属于化学氧化过程,其产生并利用羟基自由基(HO•)作为其主要氧化剂。这些工艺是为解决与不可生物降解和有毒含水废物的产生有关的环境问题而开发的相对较新的技术之一。尽管AOP的想法自20世纪中叶就已经存在,但在该领域中才进行了积极的研究,直到最近30年(Aieta等,1988; Strukul,1992; Andreozzi等,1999)。如表1所示,HO•是人类已知的仅次于氟的第二高反应性普通氧化剂。 HO•与有机或无机材料之间反应的典型速率常数约为10 6到10 9 M -1 s -1(Farataziz and Ross,1977)。如表2所示,这些比率比最接近的竞争对手臭氧(O3)高约10 9倍(Andreozzi等,1999)。过氧化氢(H2O2)和亚铁(Fe 2+)的组合称为Fenton试剂(FR),属于AOP。 FR由H. J. H. Fenton在1894年发现,可以认为是最古老的AOP。与其他AOP相比,FR可被视为生成HO•的最简单技术。

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    Aris Azmi;

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  • 年度 2008
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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