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Effectiveness of Solar Photo-Fenton Process for Simultaneous Detoxification of Heavy Metals and Disinfection in Municipal Wastewater by Using Response Surface Method

机译:太阳能Photo-Fenton过程的有效性同时重金属和解毒在城市污水消毒使用响应面方法

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The goal of this paper was to evaluate the effectiveness of solar photo-Fenton (Fe2+/H2O2/UV-vis) treatment that is able to degrade heavy metal contents (Cu, Cd, Cr, Fe, Ni, Pb and Zn) and pathogenic microbial population (Fecal Coliform/100 mL) present in municipal wastewater with minimal iron and H2O2 concentrations. Photo-Fenton experiments were performed in a solar parabolic trough reactor (PTR). Three level factorial design and response surface method (RSM) was used for characterization and optimization of the process in which a response of interest is influenced by four key variables (pH, solar exposure time, catalyst dose (Fe2+/Fe3+), and amount of oxidant (H2O2)). The performance of advanced oxidant process was investigated in terms of percentage degradation of heavy metals and Fecal Coliform (FC) bacteria present in municipal wastewater. The result shows that variables have significant effect on the degradation process of municipal wastewater. Photocatalytic degradation efficiency was found to be dependent on optimized catalyst dose (Fe2+ 100 mg/L) and amount of oxidant (H2O2 500 mg/L). Analysis of variance (ANOVA) exhibited a high coefficient (R-2 = 0.72-0.89), thereby indicating a satisfactory fit between the experimental results. The statistical model of solar photo-Fenton has shown excellent performance. Excessive hydrogen peroxide and iron have shown scavenging effects on hydroxyl radicals and reduced degradation of micro-pollutants present in wastewater. (C) 2016 American Institute of Chemical Engineers Environ Prog, 36: 448-459, 2017
机译:本文的目的是评估太阳能photo-Fenton的有效性(价/过氧化氢/紫外治疗能降低重金属含量(铜、Cd、铬、铁、镍、铅和锌)和致病微生物种群(粪便大肠杆菌/ 100毫升)出现在城市中废水通过最少的铁和过氧化氢浓度。在太阳能抛物槽反应堆(PTR)。用于表面方法(RSM)描述和优化的过程响应的兴趣是影响四个关键变量(pH值、太阳曝光时间,催化剂用量(价/ Fe3 +)和氧化剂(过氧化氢))。过程研究的百分比降解的重金属和粪便大肠杆菌(FC)细菌存在于城市污水。结果表明,变量有显著的影响市政的退化过程废水。被发现依赖于优化催化剂剂量(价100 mg / L)和氧化剂(过氧化氢500 mg / L)。高系数(r2 = 0.72 - -0.89)表示满意的之间的配合实验结果。太阳能photo-Fenton显示优秀的性能。显示对羟基清除影响吗激进分子和减少退化micro-pollutants出现在废水。美国化学工程师学会环境学监,36岁:448 - 459,2017

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