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首页> 外文期刊>Chemical engineering journal >Treatment of organics in reverse osmosis concentrate from a municipal wastewater reclamation plant: Feasibility test of advanced oxidation processes with/without pretreatment
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Treatment of organics in reverse osmosis concentrate from a municipal wastewater reclamation plant: Feasibility test of advanced oxidation processes with/without pretreatment

机译:来自市政废水回收厂的反渗透浓缩液中的有机物的处理:带/不带预处理的高级氧化工艺的可行性测试

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摘要

Four simple advanced oxidation processes (AOPs), i.e. heterogeneous photocatalytic oxidation (PCO), sonolysis (US), ozonation (O3) and H2O2 oxidation, as well as their combinations were investigated in bench-scale for removing the organics present in the reverse osmosis (RO) concentrate from a municipal wastewater reclamation plant. It was observed that the degradation efficiencies reached a plateau after 1 h of reaction, with varying removals of dissolved organic carbon (DOC) up to 52%. The O3-based AOPs exhibited relative high efficiencies in treating the organics present in the raw RO concentrate. Ferric chloride (FeCl3) coagulation was preferred over activated carbon adsorption as pretreatment process to improve the subsequent AOP treatments of the RO concentrate. Coupling pretreatment with coagulation, the various AOPs could efficiently remove the organics, resulting in an overall DOC removal of 34-68%, a significant improvement in biodegradability (7-20 times), and a decrease of ecotoxicity. Analyses of molecular weight (MW) distribution of the treated RO concentrate revealed that coagulation could remove large MW organics that were AOP-resistant, while AOP treatments could effectively decompose the complex organics into small molecular organics. The results also demonstrated that a simple integrated method, FeCl3 coagulation + photocatalysis (UVC/TiO2), could finally achieve 95% of the organics removal from the RO concentrate within 6 h.
机译:在工作台规模上研究了四种简单的高级氧化工艺(AOP),即多相光催化氧化(PCO),声解(US),臭氧化(O3)和H2O2氧化及其组合,以去除反渗透中存在的有机物。 (RO)来自市政废水回收厂的浓缩液。观察到,反应1小时后,降解效率达到了平稳状态,溶解有机碳(DOC)的去除率变化高达52%。基于O3的AOP在处理原始RO浓缩物中存在的有机物时显示出相对较高的效率。氯化铁(FeCl3)凝结法比活性炭吸附法更可作为预处理工艺,以改善RO精矿的后续AOP处理。结合凝血的预处理,各种AOP可以有效去除有机物,从而使DOC总体去除34-68%,可生物降解性显着提高(7-20倍),并降低了生态毒性。经处理的反渗透浓缩物的分子量(MW)分布分析表明,混凝可以去除抗AOP的大分子有机物,而AOP处理则可以有效地将复杂的有机物分解为小分子有机物。结果还表明,简单的集成方法FeCl3混凝+光催化(UVC / TiO2)可以在6小时内最终实现从RO精矿中去除95%的有机物。

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