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Effects of different pretreatments on the performance of ceramic ultrafiltration membrane during the treatment of oil sands tailings pond recycle water: A pilot-scale study

机译:不同预处理对油砂尾矿池循环水处理过程中陶瓷超滤膜性能的影响:中试研究

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摘要

Membrane filtration is an effective treatment method for oil sands tailings pond recycle water (RCW); however, membrane fouling and rapid decrease in permeate flux caused by colloids, organic matter, and bitumen residues present in the RCW hinder its successful application. This pilot-scale study investigated the impact of different pretreatment steps on the performance of a ceramic ultrafiltration (CUF) membrane used for the treatment of RCW. Two treatment trains were examined: treatment train 1 consisted of coagulant followed by a CUF system, while treatment train 2 included softening (Multiflo™ system) and coagulant addition, followed by a CUF system. The results indicated that minimum pretreatment (train 1) was required for almost complete solids removal. The addition of a softening step (train 2) provided an additional barrier to membrane fouling by reducing hardness-causing ions to negligible levels. More than 99% removal of turbidity and less than 20% removal of total organic carbon were achieved regardless of the treatment train used. Permeate fluxes normalized at 20 ℃ of 127-130 L/m~2 h and 111-118 L/m~2 h, with permeate recoveries of 90-93% and 90-94% were observed for the treatment trains 1 and 2, respectively. It was also found that materials deposited onto the membrane surface had an impact on trans-membrane pressure and influenced the required frequencies of chemically enhanced backwashes (CEBs) and clean-in-place (CIP) procedures. The CIP performed was successful in removing fouling and scaling materials such that the CUF performance was restored to baseline levels. The results also demonstrated that due to their low turbidity and silt density index values, permeates produced in this pilot study were suitable for further treatment by high pressure membrane processes.
机译:膜过滤是处理油砂尾矿池循环水的有效方法。但是,由于RCW中存在的胶体,有机物和沥青残留物引起的膜污染和渗透通量的快速下降,阻碍了RCW的成功应用。这项中试研究调查了不同预处理步骤对用于处理RCW的陶瓷超滤(CUF)膜性能的影响。检查了两个处理程序:处理程序1由凝结剂和CUF系统组成,而处理过程2包括软化(Multiflo™系统)和添加凝结剂,然后由CUF系统组成。结果表明,几乎完全除去固体需要最少的预处理(火车1)。通过将引起硬度的离子降低到可以忽略的水平,增加了软化步骤(系列2),为膜污染提供了额外的屏障。无论使用哪种处理方法,均可实现超过99%的混浊去除率和少于20%的总有机碳去除率。在处理温度为1和2的处理机组中,在20℃下标准化的渗透通量为127-130 L / m〜2 h和111-118 L / m〜2 h,观察到的渗透率分别为90-93%和90-94%。分别。还发现沉积在膜表面上的材料会影响跨膜压力,并影响化学增强反洗(CEB)和就地清洁(CIP)程序所需的频率。进行的CIP成功清除了结垢和结垢材料,使CUF性能恢复到基准水平。结果还表明,由于它们的低浊度和淤泥密度指数值,该初步研究中产生的渗透物适用于高压膜工艺的进一步处理。

著录项

  • 来源
    《Journal of Environmental Management》 |2015年第15期|540-549|共10页
  • 作者单位

    Canadian Natural Resources Ltd., Fort McMurray, Alberta T9H 3H5, Canada,Technology Development-Horizon Oil Sands, Canadian Natural Resources Ltd., Fort McMurray, AB T9H 3H5, Canada;

    Department of Civil and Environmental Engineering, University of Alberta, Edmonton, Alberta T6G 2W2, Canada;

    Department of Civil and Environmental Engineering, University of Alberta, Edmonton, Alberta T6G 2W2, Canada,NSERC Senior Industrial Research Oil Sands Tailings Water Treatment, Helmholtz - Alberta Initiative Lead (Theme 5), Department of Civil and Environmental Engineering, University of Alberta, Edmonton, Alberta T6G 2W2, Canada;

  • 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

    Ultrafiltration; Ceramic membrane; Pretreatment; Oil sands; Recycle water;

    机译:超滤;陶瓷膜预处理;油砂;循环水;
  • 入库时间 2022-08-17 13:33:11

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