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Treatment of a chemical industry effluent by nanofiltration and reverse osmosis

机译:通过纳滤和反渗透处理化学工业废水

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摘要

Advanced filtration processes, namely nanofiltration (NO) and reverse osmosis (RO), can produce high-quality permeate from industrial effluents for a safe discharge or water reuse. In the present study, a biologically treated complex chemical industry wastewater was dead-end filtered through commercial NE and RO membranes. Dow Filmtec NF270, NE90, BW30 and SW30 membranes and Lewabrane RO B090 membrane were tested either separately or sequentially by NE followed by RO. Filtration through NF270 decreased chemical oxygen demand, color and conductivity from 202 mg/L, 222 Pt-Co and 10,150 mu S/cm to 110 mg/L, 46 Pt-Co and 5,700 mu S/cm, respectively. NE membrane mainly removed organic matter and divalent ions. RO membrane BW30 further removed these parameters as well as monovalent ions and thereby significantly decreased conductivity to 1,914 mu S/cm. A secondary BW30 further decreased conductivity to 582 mu S/cm for water reuse in industry. NE membranes served as pretreatment for RO membranes preventing fouling. Satisfactory membrane permeabilities were obtained as 2.2 LMH/bar for NF270 at 70% water recovery and 1.2 LMH/bar for the succeeding BW30 at 50% recovery at 15 bar filtration pressure. The study showed that sequential NE RO process can successfully produce reusable permeates from a biologically pretreated chemical industry effluent.
机译:先进的过滤工艺,即纳米过滤(NO)和反渗透(RO),可以从工业废水中产生高质量的渗透物,从而实现安全排放或中水回用。在本研究中,经过生物处理的复杂化学工业废水通过商用NE和RO膜进行了死端过滤。分别或依次用NE和RO分别测试Dow Filmtec NF270,NE90,BW30和SW30膜和Lewabrane RO B090膜。通过NF270过滤,化学需氧量,颜色和电导率分别从202 mg / L,222 Pt-Co和10,150μS/ cm降低到110 mg / L,46 Pt-Co和5,700μS/ cm。 NE膜主要去除有机物和二价离子。反渗透膜BW30进一步去除了这些参数以及一价离子,从而将电导率显着降低至1,914μS / cm。二次BW30的电导率进一步降低至582μS / cm,可用于工业用水。 NE膜可作为RO膜的预处理,防止结垢。在15 bar的过滤压力下,令人满意的膜通透性对于NF270在水回收率为70%时为2.2 LMH / bar,对于随后的BW30在50%回收率下为1.2 LMH / bar。研究表明,顺序NE RO工艺可以成功地从生物预处理的化学工业废水中产生可重复使用的渗透物。

著录项

  • 来源
    《Desalination and water treatment》 |2017年第5期|274-283|共10页
  • 作者单位

    Istanbul Medeniyet Univ, Bioengn Dept, TR-34700 Istanbul, Turkey;

    Istanbul Medeniyet Univ, Bioengn Dept, TR-34700 Istanbul, Turkey;

    Hasan Kalyoncu Univ, Dept Civil Engn, TR-27410 Gaziantep, Turkey;

    Yildiz Tech Univ, Environm Engn Dept, TR-34220 Istanbul, Turkey;

    ENTA Treatment Syst Engineer & Contract LTD, Fazil Kaftanoglu Cad 7, TR-34485 Istanbul, Turkey;

    ENTA Treatment Syst Engineer & Contract LTD, Fazil Kaftanoglu Cad 7, TR-34485 Istanbul, Turkey;

    ENTA Treatment Syst Engineer & Contract LTD, Fazil Kaftanoglu Cad 7, TR-34485 Istanbul, Turkey;

    ENTA Treatment Syst Engineer & Contract LTD, Fazil Kaftanoglu Cad 7, TR-34485 Istanbul, Turkey;

    ENTA Treatment Syst Engineer & Contract LTD, Fazil Kaftanoglu Cad 7, TR-34485 Istanbul, Turkey;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Chemical industry wastewater; Nanofiltration; Reverse osmosis; Membrane fouling; Water reuse;

    机译:化工废水;纳滤;反渗透;膜污染;中水回用;

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