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首页> 外文期刊>Chemosphere >Biological treatment of non-biodegradable azo-dye enhanced by zero-valent iron (ZVI) pre-treatment
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Biological treatment of non-biodegradable azo-dye enhanced by zero-valent iron (ZVI) pre-treatment

机译:零价铁(ZVI)预处理增强了非生物降解的偶氮染料的生物学处理

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摘要

Zero-valent iron (ZVI) pre-treatment in sequential strategy for removal of non-biodegradable azo-dye Orange II by activated-sludge was quantitatively examined. The decolorization and TOC (total organic carbon) removal of Orange II by ZVI pre-treatment were examined in the ranges of pH from 3 to 11 and ZVI dosage from 500 to 2000 mgL(-1). While the decolorization was enhanced with decreasing pH and the optimal pH for decolorization was found at pH 3, the TOC removal rate at pH 3 remained at 22.2% and the maximum TOC removal rate of 78.2% was obtained at pH 4. The decolorization and TOC removal of Orange II were monotonously increased with increasing ZVI dosage. To quantify the ZVI pre-treatment, the contributions of redox degradation, complexation/precipitation and adsorption to TOC removal by ZVI were defined. Novel kinetic models for the ZVI pre-treatment and activated-sludge post-treatment were developed. The proposed kinetic models satisfactorily predicted the transitional behaviors of the ZVI pre-treatment and activated-sludge post-treatment and the contributions of redox degradation, complexation/precipitation and adsorption to TOC removal by the ZVI pre-treatment. The complete removal of non-biodegradable azo-dye Orange II of 300 mgL(-1) was accomplished by 78.2% removal after 360 min ZVI pre-treatment with the ZVI dosage of 1000 mgL(-1) at pH 4 and subsequently 21.8% removal after 480 min activated-sludge post-treatment. The ZVI pre-treatment integrated with activated-sludge post-treatment was proved to be an effective strategy for treating non-biodegradable pollutants. (C) 2020 Elsevier Ltd. All rights reserved.
机译:定量检查了通过活性污泥去除非可生物降解的偶氮染料橙II的顺序策略预处理的零价铁(ZVI)预处理。通过ZVI预处理去除橙色II的脱色和TOC(总有机碳)除去从500至2000mg1(-1)的pH值3至11和ZVI剂量。虽然在pH 3中发现脱色并在pH 3中发现脱色的最佳pH值,但在pH3的TOC去除率保持在22.2%,在pH4时获得78.2%的最大TOC去除率为78.2%。脱色和TOC获得78.2%随着ZVI剂量的增加,将橙色II的除去单调。为了量化ZVI预处理,定义了ZVI氧化还原降解,络合/沉淀和吸附对TOC的贡献。开发了用于ZVI预处理和活化污泥后处理的新型动力学模型。所提出的动力学模型令人满意地预测ZVI预处理和活化污泥的过渡行为后处理和氧化还原降解,络合/沉淀和吸附对TOC的贡献通过ZVI预处理。完全除去300mg1(-1)的非可生物降解的偶氮染料橙II的橙色II通过760 min ZVI预处理在pH 4下的ZVI剂量为1000mg(-1)后的78.2%,随后21.8% 480分钟活性污泥后的去除后处理。被证明,ZVI预处理与活性污泥后处理一体化是治疗非可生物降解污染物的有效策略。 (c)2020 elestvier有限公司保留所有权利。

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