首页> 外文学位 >Desalination of Produced Water with Electrodialysis: Ion Exchange Membrane Fouling, System Performance, and Fate of Organic Constituents.
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Desalination of Produced Water with Electrodialysis: Ion Exchange Membrane Fouling, System Performance, and Fate of Organic Constituents.

机译:电渗析法对产出水进行脱盐:离子交换膜结垢,系统性能和有机成分的结局。

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摘要

Treatment of oil and gas (O&G) wastewater is a growing practice that increases water resources available for beneficial reuse. Electrodialysis (ED) is an established desalination process with the potential to remove ions from saline produced water (PW), a byproduct of O&G production. However, the current ED literature lacks studies that investigate the fate of organic contaminants during ED treatment using real PW. This work examines ion exchange membrane (IEM) fouling, system performance, and the transport of organic constituents through IEMs during ED treatment of real PW.;A bench-scale ED apparatus was operated in batch mode at constant voltage to desalinate pre-treated PW using two types of IEMs. Pretreatment methods included combinations of biologically active filtration, ultrafiltration, and microfiltration with the intention of progressively increasing IEM exposure to organic matter. Impacts of membrane selection were investigated through measuring stack resistance, current utilization, and loss of water from the diluate due to electro-osmosis. Pristine and fouled IEMs were characterized using environmental scanning electron microscopy (ESEM) and ion exchange capacity measurements.;Fouling layers were not observed using ESEM, though both IEM types experienced decreases in ion exchange capacity. Neosepta IEMs retained a larger proportion of organic matter in the diluate and demonstrated a lower rate of electro-osmosis compared to GE IEMs. Salinity removal was not affected by initial TOC loading in the feed. The mechanism for TOC transport using Neosepta IEMs may be convection, while diffusion is likely the driving force for TOC transport through the GE IEMs. A mass balance of TOC shows that some organic matter was unaccounted for---because excessive membrane fouling was not immediately apparent, this may be evidence that organic matter undergoes oxidation at the anode during ED treatment.
机译:油气废水的处理是一种日益增长的实践,它增加了可用于有益再利用的水资源。电渗析(ED)是一种既定的脱盐工艺,具有去除盐分产水(PW)中的离子的潜力,而盐分产水是O&G生产的副产品。但是,当前的ED文献缺乏研究使用实际PW在ED处理过程中有机污染物的命运的研究。这项工作检查了离子交换膜(IEM)的结垢,系统性能以及有机物在ED处理真实PW期间通过IEM的有机成分的传输。台式ED装置在恒压下以间歇模式运行以淡化预处理的PW。使用两种类型的IEM。预处理方法包括生物活性过滤,超滤和微滤的组合,目的是逐步增加IEM对有机物的暴露。通过测量堆电阻,电流利用率以及由于电渗引起的稀释液中的水分流失,来研究膜选择的影响。使用环境扫描电子显微镜(ESEM)和离子交换容量测量对原始和结垢的IEM进行了表征;使用ESEM未观察到结垢层,尽管两种IEM类型都经历了离子交换容量的下降。 Neosepta IEM与GE IEM相比,在稀释液中保留了较大比例的有机物,并具有较低的电渗透率。盐度的去除不受饲料中初始TOC含量的影响。使用Neosepta IEM进行TOC传输的机制可能是对流,而扩散可能是通过GE IEM进行TOC传输的驱动力。 TOC的质量平衡表明,由于以下原因而无法解释某些有机物,因为没有立即发现过多的膜污染,这可能表明有机物在ED处理过程中在阳极处发生了氧化。

著录项

  • 作者

    Yoshino, Amanda S.;

  • 作者单位

    Colorado School of Mines.;

  • 授予单位 Colorado School of Mines.;
  • 学科 Environmental engineering.;Environmental science.;Chemistry.;Hydrologic sciences.;Water resources management.
  • 学位 M.S.
  • 年度 2017
  • 页码 46 p.
  • 总页数 46
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:38:38

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