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首页> 外文期刊>Water Science and Technology >A statistical experimental design approach for mineralization and detoxification of diethyl phthalate by H_2O_2/UV-C process
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A statistical experimental design approach for mineralization and detoxification of diethyl phthalate by H_2O_2/UV-C process

机译:H_2O_2 / UV-C工艺对邻苯二甲酸二乙酯矿化解毒的统计实验设计方法

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摘要

In the present study, a three-factor central composite design (CCD) was implemented to evaluate the major factors (treatment time, initial H _2O_2 dose and initial diethyl phthalate (DEP) concentration) influencing the H_2O_2/UV-C treatment of aqueous DEP solution. Significant regression models for total organic carbon (TOC) removal and residual H_2O_2 concentration were derived using analysis of variance (ANOVA), which were found to be adequate to perform the process variables optimization. According to the applied ANOVA, treatment time (positive effect) and initial H_2O_2 dose (negative effect after an optimum value) were found to be significant on the H _2O_2/UV-C process performance. TOC removal efficiencies were enhanced with increasing initial H_2O_2 dose up to an optimum value, and further increases in H_2O_2 dose resulted in a decrease in TOC removals due to the hydroxyl radical scavenging effect. When initial H_2O_2 dose increased from 10 to 30 mM, the TOC removal efficiency improved from 41 to 100% for DEP_o of 100 mg/L for treatment time of 50 min. Further increase in initial H_2O _2 dose to 50 mM decreased the TOC removal efficiency down to 38%. The results of toxicity assessments with Vibrio fischeri on aqueous DEP solutions subjected to H_2O_2/UV-C treatment revealed complete detoxification at the optimum conditions.
机译:在本研究中,采用三因素中心复合设计(CCD)来评估影响HDE的H_2O_2 / UV-C处理的主要因素(处理时间,初始H _2O_2剂量和初始邻苯二甲酸二乙酯(DEP)浓度)。解。使用方差分析(ANOVA)得出了总有机碳(TOC)去除和残留H_2O_2浓度的重要回归模型,发现该模型足以执行过程变量优化。根据所应用的方差分析,发现处理时间(正效应)和初始H_2O_2剂量(最佳值后的负效应)对H _2O_2 / UV-C工艺性能具有重要意义。随着初始H_2O_2剂量增加至最佳值,TOC去除效率得以提高,并且由于羟基自由基清除作用,H_2O_2剂量的进一步增加导致TOC去除率降低。当初始H_2O_2剂量从10 mM增加到30 mM时,对于50分钟的治疗时间,对于100 mg / L的DEP_o,TOC去除效率从41%提高到100%。初始H_2O _2剂量进一步增加至50 mM会使TOC去除效率降低至38%。用费氏弧菌对DEP水溶液进行H_2O_2 / UV-C处理的毒性评估结果表明,在最佳条件下完全排毒。

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