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各种反应参数对光/草酸铁/H₂O₂体系中2,4-二氯苯氧乙酸去除效果的影响

Influence of various reaction parameters on 2,4-D removal in photo/ferrioxalate/H(2)O(2) process.

作者信息

Lee Yunho, Jeong Joonseon, Lee Changha, Kim Soomyung, Yoon Jeyong

机构信息

School of Chemical Engineering, College of Engineering, Seoul National University, Kwanak Ku, Shilimdong san 56-1, South Korea.

出版信息

Chemosphere. 2003 Jun;51(9):901-12. doi: 10.1016/S0045-6535(03)00044-4.

Abstract

The influence of various reaction parameters on herbicide 2,4-dichlorophenoxyacetic acid (2,4-D) removal were examined in the photo/ferrioxalate/H(2)O(2) system, with regard to: (1) sulfate, phosphate, and z.rad;OH scavenger, as solution constituent; and (2) light intensity, ferrioxalate, H(2)O(2), and oxalate concentration, as operating parameter. In terms of 2,4-D removal, the photo/ferrioxalate/H(2)O(2) system has always been superior to the photo/Ferric ion/H(2)O(2) system, despite the high presence of anions (sulfate 100 mM, phosphate 1 mM) or z.rad;OH scavenger. Not only the rate of 2,4-D removal, but also the decomposition rate of H(2)O(2) and oxalate proportionally increase with light intensity. The ferrioxalate concentration determines the light absorption fraction, and thus, controls the rates of 2,4-D removal, and the decomposition of H(2)O(2) and oxalate, are predicted from kinetic formulations. The optimal concentration of H(2)O(2) and oxalate, according to the extent of the z.rad;OH scavenging reaction with these reagents, has been demonstrated for 2,4-D removal. It was found that an increasing oxalate concentration, which bears the burden of increased dissolved organic carbon (DOC), does not occur. This is because its decomposition, as a result of the photochemical reduction of the ferric oxalate complex, results in a decrease of the equivalent DOC. The importance of the key reaction factors to be considered, when applying this system to real wastewater treatment, is also discussed.

摘要

在光/草酸铁/H₂O₂体系中,研究了各种反应参数对除草剂2,4-二氯苯氧乙酸(2,4-D)去除效果的影响,具体涉及:(1)作为溶液成分的硫酸盐、磷酸盐和·OH清除剂;(2)作为操作参数的光强度、草酸铁、H₂O₂和草酸盐浓度。就2,4-D去除效果而言,尽管存在高浓度阴离子(100 mM硫酸盐、1 mM磷酸盐)或·OH清除剂,但光/草酸铁/H₂O₂体系始终优于光/铁离子/H₂O₂体系。2,4-D的去除速率以及H₂O₂和草酸盐的分解速率均随光强度成比例增加。草酸铁浓度决定光吸收分数,因此,可通过动力学公式预测其对2,4-D去除速率以及H₂O₂和草酸盐分解的控制作用。根据与这些试剂发生的·OH清除反应程度,已证明了用于2,4-D去除的H₂O₂和草酸盐的最佳浓度。研究发现,草酸盐浓度增加时,并不会出现溶解有机碳(DOC)增加的情况。这是因为草酸铁络合物的光化学还原导致其分解,从而使等效DOC减少。还讨论了将该体系应用于实际废水处理时需要考虑的关键反应因素的重要性。

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