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首页> 外文期刊>The Science of the Total Environment >The feasibility of UF-RO integrated membrane system combined with coagulation/flocculation for hairwork dyeing effluent reclamation
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The feasibility of UF-RO integrated membrane system combined with coagulation/flocculation for hairwork dyeing effluent reclamation

机译:UF-RO集成膜系统与混凝/絮凝相结合用于染发染色废水回收的可行性

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This paper aims to validate the feasibility of hairwork dyeing effluent (HDE) reclamation using an ultrafiltration (UF)-reverse osmosis (RO) integrated membrane system combined with coagulation-flocculation and sedimentation acquiring the highest possible product water recovery rate along with both satisfactory separation performance and well controlled membrane fouling. Under the circumstance of only physical cleaning involved, the laboratory-scale test yielded a higher and satisfactory reuse ratio of 76% for HDE, and the corresponding RO product as reclaimed water contained only 223 mg.L-1 of TDS, 3.87 mg.mL(-1) of DOC and 10.3 mg.mL(-1) of total hardness, which was obviously better than the quality of existing feedwater in hairwork dyeing process. After each processing unit, the distributions of fulvic (region III) and humic (region V) organics decreased continuously, while an overall rising trend in distribution of protein-like organics (regions I and II) was observed. Contact angle for the fouled UF and RO membranes significantly increased by 19.5 degrees and decreased by 19.7 degrees, respectively, which suggested that different polarity of organic or inorganic adsorption rather than membrane roughness was the main factors affecting wetting properties of the fouled employed membranes. Both ATR-FTIR and XPS spectra indicated that organic fouling on UF membrane surface under harsh condition (R-UF = 90%) was mild and tolerable, whereas a surprising amount of hydrophilic micromolecular organics riched in carboxyl and hydroxyl functional groups were absorbed on RO membrane surface after permeation. (C) 2019 Elsevier B.V. All rights reserved.
机译:本文旨在验证使用超滤(UF)-反渗透(RO)集成膜系统结合混凝-絮凝和沉淀法获得染发液(HDE)的可行性,以实现最高的产品水回收率以及令人满意的分离效果性能和良好的膜污染控制。在仅涉及物理清洁的情况下,实验室规模的测试对HDE的回收率达到了较高且令人满意的76%,并且相应的RO产品作为再生水仅包含223 mg.L-1的TDS,3.87 mg.mL (-1)DOC和总硬度的10.3 mg.mL(-1),明显优于染发过程中现有给水的质量。在每个处理单元之后,黄腐病(III区)和腐殖质(V区)的分布持续下降,而蛋白质样有机物(I区和II区)的分布总体呈上升趋势。被污染的超滤膜和反渗透膜的接触角分别显着增加了19.5度和减小了19.7度,这表明不同极性的有机或无机吸附而不是膜粗糙度是影响被污染膜的润湿性能的主要因素。 ATR-FTIR和XPS光谱均表明,在苛刻条件下(R-UF = 90%),超滤膜表面的有机污垢温和且可耐受,而令人惊讶的数量丰富的富含羧基和羟基官能团的亲水性微分子有机物被RO吸收渗透后的膜表面。 (C)2019 Elsevier B.V.保留所有权利。

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