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Direct Membrane Filtration of Domestic Wastewater: Implications for Coupling with Anaerobic Membrane Bioreactor (DF-AnMBR) for Wastewater Resource Recovery.

机译:直接过滤生活污水:与厌氧膜生物反应器(DF-AnMBR)耦合用于废水资源回收的意义。

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摘要

With the growing use of membranes in the water industry, different methods for using membranes to treat water is still occurring. Enhancing membrane performance is generally performed with extensive pretreatment methods before the feedwater is filtered by the membrane. With the utilization of direct membrane filtration (DF), no pretreatment is performed and the membrane is exposed to raw wastewater. While this may suggest that membrane performance and permeate quality would suffer in the process, DF testing with a 0.03 microm ultrafiltration PVDF membrane showed that relatively high membrane flux was sustained while producing a high quality effluent. Due to the rejection of the membrane, a highly concentrated fraction of the wastewater, which is significantly reduced in volume but high in solids and organic strength, is obtained and can be treated in other ways.;A process is proposed to treat municipal wastewater by coupling a DF system with an anaerobic membrane bioreactor (AnMBR). AnMBRs generally treat industrial strength wastewater, which is high in chemical oxygen demand (COD), and may struggle with domestic wastewater, which is generally considered low strength in terms of COD. By coupling the DF with an AnMBR, the DF-AnMBR can be used to treat the low strength domestic wastewater. The DF portion can handle the bulk of the liquid fraction, while the highly concentrated fraction of wastewater is treated by the AnMBR stage, thus improving the energy profile of the AnMBR and enhancing performance. A series of flow and mass balance equations for the combined DF-AnMBR was developed, and used to shed insight on design parameters relevant to this novel treatment process.;Since membrane fouling occurs gradually over weeks or months, it is difficult to systematically determine how processes changes may affect membrane performance. Hence, a method to rapidly determine the fouling propensity of wastewater was desired. The modified fouling index (MFI) was previously developed to test the fouling propensity of feedwater for seawater RO desalination, but has not been applied to membrane filtration of wastewater. The MFI method was adapted and used to test the fouling propensity of various treatment streams in the DF-AnMBR system, including raw domestic wastewater, concentrated domestic wastewater (20X by DF), and liquor from an active AnMBR. The effect of powdered activated carbon (PAC) on fouling propensity was also investigated. Raw wastewater had a fouling potential of about 25% of the AnMBR MFI, and with the utilization of PAC the fouling potential was further decreased to nearly 50% of the original fouling potential. The DF concentrated stream had a higher MFI value than liquor from the AnMBR, but presumably some of organics contributing to fouling would be degraded in the AnMBR. This study demonstrated that DF of raw wastewater is feasible, and the combined use of DF and AnMBR is highly promising.
机译:随着膜在水工业中的使用越来越多,使用膜处理水的不同方法仍在发生。通常在进水被膜过滤之前,通过广泛的预处理方法来提高膜的性能。利用直接膜过滤(DF),无需进行任何预处理,并且膜会暴露于原废水中。虽然这可能表明该过程会影响膜性能和渗透质量,但使用0.03微米超滤PVDF膜进行的DF测试表明,在产生高质量废水的同时,可以维持相对较高的膜通量。由于膜的截留,获得了高浓度的废水,该废水的体积显着减小,但具有较高的固体和有机强度,可以用其他方法进行处理。 DF系统与厌氧膜生物反应器(AnMBR)耦合。 AnMBR通常会处理化学需氧量(COD)高的工业强度废水,并且可能会与生活污水(按COD而言通常被认为是低强度)相抗衡。通过将DF与AnMBR耦合,DF-AnMBR可用于处理低浓度的生活污水。 DF部分可以处理大部分液体馏分,而废水的高浓度馏分通过AnMBR阶段进行处理,从而改善了AnMBR的能量分布并提高了性能。开发了用于组合式DF-AnMBR的一系列流量和质量平衡方程,并用于深入了解与此新颖处理过程相关的设计参数。;由于膜结垢在数周或数月内逐渐发生,因此难以系统地确定如何工艺变化可能会影响膜性能。因此,需要一种快速确定废水的结垢倾向的方法。先前已经开发了改进的结垢指数(MFI)来测试给水对海水进行RO脱盐的结垢倾向,但尚未应用于废水的膜过滤。改进了MFI方法并用于测试DF-AnMBR系统中各种处理流的结垢倾向,包括原始生活废水,浓缩的生活废水(DF生产的20X)和来自活性AnMBR的液体。还研究了粉状活性炭(PAC)对结垢倾向的影响。原废水的结垢潜力约为AnMBR MFI的25%,而随着PAC的使用,结垢潜力进一步降低至原始结垢潜力的近50%。 DF浓缩物流的MFI值比AnMBR的白酒高,但据推测,造成结垢的某些有机物会在AnMBR中降解。这项研究表明,原废水的去污剂是可行的,并且去污剂和AnMBR的组合使用是很有前途的。

著录项

  • 作者

    Dick, George H.;

  • 作者单位

    University of South Florida.;

  • 授予单位 University of South Florida.;
  • 学科 Environmental engineering.;Water resources management.
  • 学位 M.S.E.V.
  • 年度 2015
  • 页码 144 p.
  • 总页数 144
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:52:19

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