Fe2+/过硫酸氢盐/ UV光化学降解水中2,4-二氯苯酚

K. Taghavi, Dariush Naghipour, Azita Mohagheghian, Mehrdad Moslemzadeh
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引用次数: 14

摘要

苯酚及其衍生物是水生生态系统中最常见的污染物之一。由于2,4- dcp对水生生物的高毒性、抗生物降解和潜在的生物积累,它被认为是水生环境中的优先污染物。高级氧化工艺已成功地用于降解不可生物降解的污染物,这些污染物对常规处理工艺具有抗性。因此,利用自由基(SO4)等有效自由基的先进氧化技术将是一个有趣的研究方向。研究了2,4- dcp、Fe2+、过硫酸氢盐(PDS)浓度和pH值对2,4- dcp光化学降解效率的影响。pH值的增加对去除率和反应速率常数有负面影响,而Fe2+和(PDS)浓度的增加对去除率和反应速率常数均有提高。反应速率常数随PDS浓度的增加呈线性增加。在本研究中,总的来说,PDS是Fe2+/PDS/UV降解2,4- dcp的最有效因素。
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Photochemical Degradation of 2,4-dichlorophenol in Aqueous Solutions by Fe2+/ Peroxydisulfate/ UV Process
Phenol and its derivatives are one of the most common contaminants in the aquatic ecosystem. Because of high toxicity of 2,4-DCP for aquatic life, resistance to biodegradation and potential for biological accumulation it is known as a priority contaminant in the aquatic environment. Advanced Oxidation Processes were successfully used for degradation of non-biodegradable contaminants that are resistant to conventional treatment processes. So, it would be interesting that advance oxidation technologies was used which apply such effective radicals as radicals (SO4). In present study, effects of concentrations of 2,4-DCP, Fe2+, peroxydisulfate (PDS) and pH value were investigated on the 2,4-DCP photochemical degradation efficiency. The increase of pH value negatively influenced the removal efficiency and reaction rate constant while an increase in the Fe2+  and (PDS) concentrations increased both the removal efficiency and reaction rate constant. In addition, the reaction rate constant increased linearly with increasing (PDS) concentration. In this study, in general, PDS was found as the most effective factor on the degradation of 2,4-DCP by Fe2+/PDS/UV.
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