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Evaluation of the hybrid system combining electrocoagulation, nanofiltration and reverse osmosis for biologically treated textile effluent: Treatment efficiency and membrane fouling

机译:相结合电凝矿,纳米滤灰和反渗透的杂种系统评价生物处理纺织品流出物的治疗效率和膜污垢

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摘要

The efficiency of the hybrid electrocoagulation-nanofiltration-reverse osmosis (EC-NF-RO) system for the treatment of biologically treated textile effluent was investigated. The treatment performances and membrane fouling behaviours of nanofiltration (NF) and hybrid EC-NF systems were compared. EC process was evaluated concerning mitigate the membrane fouling and increasing the removal efficiencies. Besides, the treated waste-water with the hybrid EC-NF process was finally processed using RO process for reuse purpose in the textile industry. The EC treatment was applied using Fe and Al electrodes at various conditions; pH:4-10, current density:0.5-17 mA/cm~2 and operating time:30-180 min. Fe electrode showed better performance in terms of higher removal efficiencies (76% COD, 96% DFZ_(436)), lower energy (21.1 kWh/m~3) and electrode consumptions (3.7 kg/m~3) for the optimum conditions. Scanning Electron Microscopy-Energy Dispersive Index (ESEM-EDX) and Fourier-Transform Infrared Spectroscopy (FTIR) analyses were carried out for EC sludge samples obtained with Fe and Al electrodes. Desal 5 DL and NF 270 membranes were tested in terms of removal efficiency and membrane fouling for NF and hybrid EC-NF process of textile wastewater. Membrane fouling was evaluated with flux values, resistance-in-series model results as well as Atomic Force Microscopy (AFM), FTIR and contact angle measurements. NF 270 membrane achieved better chloride (28%) and conductivity (41%) removal efficiencies for NF treatment. EC pretreatment did not result in any noticeable improvement in rejections except for chloride (48%) and conductivity (59%) for the hybrid EC-NF process with NF 270. The ratios of R_c decreased to 40% for NF 270 and 42% for Desal 5DL after EC pretreatment. NF270 membrane indicated high permeate flux and low membrane fouling considering cake resistance distribution, surface roughness, hydrophilicity and chemical structure variation. >93% COD, 99% conductivity, 97% chloride, and 91% TDS removal efficiencies were obtained with the hybrid EC-NF-RO process. Finally, the obtained high quality water by RO after the EC + NF 270 hybrid process could be used for all textile finishing process.
机译:研究了用于治疗生物处理的纺织品流出物的杂化电凝聚 - 纳米过滤 - 反渗透(EC-NF-RO)系统的效率。比较了纳米滤灰(NF)和杂化EC-NF系统的治疗性能和膜污染行为。 EC过程关于减轻膜污垢并增加去除效率的过程。此外,最终处理处理过的废水,用杂交EC-NF过程使用RO方法进行加工,以便在纺织业中重用目的。在各种条件下使用Fe和Al电极施加EC处理; pH:4-10,电流密度:0.5-17 mA / cm〜2和操作时间:30-180分钟。 Fe电极在更高的去除效率(76%COD,96%DFZ_(436)),较低的能量(21.1kWh / m〜3)和电极消耗(3.7kg / m〜3)方面表现出更好的性能。用Fe和Al电极获得的EC污泥样品进行扫描电子显微镜 - 能量分散指数(ESEM-EDX)和傅立叶变换红外光谱(FTIR)分析。在纺织废水的NF和杂合EC-NF过程的去除效率和膜污染方面测试了DESAL 5 DL和NF 270膜。通过助焊剂值,串联型模型结果以及原子力显微镜(AFM),FTIR和接触角测量来评估膜污染。 NF 270膜实现了NF处理的氯化物(28%)和导电性(41%)去除效率(41%)。 EC预处理并未导致除氯化物(48%)和杂合EC-NF过程中的抑制剂的抑制剂的任何显着改善,NF 270的菌丝EC-NF过程。r_c的比率降至40%,对于NF 270和42% EC预处理后的Desal 5dl。考虑到滤饼抗性分布,表面粗糙度,亲水性和化学结构变异,NF270膜表明高渗透磁通量和低膜污染。用杂合EC-NF-RO方法获得93%COD,99%的电导率,97%氯化物和91%的TDS去除效率。最后,EC + NF 270混合过程后,通过RO获得的高质量水可用于所有纺织品整理过程。

著录项

  • 来源
    《Journal of Environmental Management》 |2021年第15期|113042.1-113042.14|共14页
  • 作者

    Eda Guenes; Z. Beril Goender;

  • 作者单位

    Istanbul University-Cerrahpasa Faculty of Engineering Department of Environmental Engineering Avcilar Campus Avcilar 34320 Istanbul Turkey;

    Istanbul University-Cerrahpasa Faculty of Engineering Department of Environmental Engineering Avcilar Campus Avcilar 34320 Istanbul Turkey;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Electrocoagulation; Fouling mechanism; Membrane processes; Pretreatment; Reuse;

    机译:电凝;污垢机制;膜过程;预处理;重复使用;

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