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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Treatment of chlorophenols in water matrix by UV/ferri-oxalate system: Part II. Degradation mechanisms and ecological parameters evaluation
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Treatment of chlorophenols in water matrix by UV/ferri-oxalate system: Part II. Degradation mechanisms and ecological parameters evaluation

机译:UV /草酸亚铁体系处理水基质中的氯酚:第二部分。退化机理与生态参数评价

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摘要

The aim of the study was to evaluate mechanisms involved in degradation of p-CP in water matrix by UV/ ferrioxalate (UV/Fe(OX)) system regarding the type of applied UV irradiation source (UV-C and UV-A). Besides the monitoring of parent pollutant degradation and the formation of its typical degradation byproducts, the process effectiveness was evaluated on the basis of mineralization extent and changes in biodegradability and toxicity of p-CP model wastewater during the applied treatments. In Part I of the study, the optimal conditions for applied UV-C/Fe(OX) and UV-A/Fe(OX) were determined and used in this comparative study. Biodegradability is estimated over BOD5/COD ratio. The toxic effects were investigated on Vibrio fischeri determining EC_(50) value. It was found out that p-CP degradation by UV-C/Fe(OX) process occurred via synergy of direct photolysis and radical mechanism, while radicals formed through photo-induced degradation of ferrioxalates played a dominant role when UV-A/Fe(OX) process was applied. The presence of ferrioxalates strongly influenced the mineralization yield and improved biodegradability in the cases when UV-A and UV-C irradiation sources were applied, respectively. However, all applied processes yielded higher toxicity of treated water within observed treatment period presumably due to the presence of p-CP degradation by-products, which are more toxic than parent pollutant.
机译:该研究的目的是评估紫外线/铁氧体(UV / Fe(OX))系统对水基质中p-CP降解的机理,涉及所施加的紫外线辐射源的类型(UV-C和UV-A)。除了监测母体污染物的降解及其典型降解副产物的形成以外,还根据矿化程度以及应用处理过程中p-CP模型废水的生物降解性和毒性变化来评估工艺效果。在研究的第一部分中,确定了适用于UV-C / Fe(OX)和UV-A / Fe(OX)的最佳条件,并将其用于此比较研究中。估计的生物降解性超过BOD5 / COD比率。研究了对费氏弧菌的毒性作用,确定了EC_(50)值。发现通过UV-C / Fe(OX)过程的p-CP降解是通过直接光解和自由基机理的协同作用而发生的,而当UV-A / Fe( OX)过程被应用。在分别使用UV-A和UV-C照射源的情况下,草酸亚铁的存在强烈影响矿化产率和改善的生物降解性。但是,所有应用的方法在观察到的处理期内均会产生较高的毒性,这可能是由于存在p-CP降解副产物,该副产物比母体污染物的毒性更大。

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