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Membrane bioreactor process for removing biodegradable organic matter and disinfection by-product precursors from water: Modeling and process efficiency.

机译:从水中去除可生物降解的有机物和消毒副产物前体的膜生物反应器工艺:建模和工艺效率。

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摘要

The membrane bioreactor (MBR) process combines biodegradation and adsorption for removing dissolved constituents and microfiltration (MF) for removing suspended solids. The MBR process is a promising new technology for treating potable water sources having high disinfection by-product (DBP) formation or with high biodegradable organic matter (BOM) levels. This research evaluated an MBR process combined with pre-ozonation for removing BOM and lowering halogenated by-product formation in potable water. Additionally, a mathematical model was developed to predict MBR process efficiency.; Ozonation studies were first conducted to determine the magnitude of ozone by-product formation and to evaluate suitable BOM surrogates for mathematical modeling. A comprehensive series of tests were conducted using a bench-scale and mini-pilot-scale MBR process treating pre-ozonated water that exhibited high assimilable organic carbon (AOC) formation potential and high trihalomethane (THM) formation potential. These tests evaluated the MBR process efficiency for removing total aldehydes, dissolved organic carbon (DOC), biodegradable organic carbon (BDOC), AOC, and THM precursors at different powdered activated carbon (PAC) doses, varying hydraulic residence times (HRTs), and at different pH levels. A mathematical model was developed that predicted substrate removal in the MBR process. The combined adsorption/biofilm model was calibrated using parameter constants measured in adsorption isotherm, adsorption rate, and biokinetic studies. The calibrated model was verified for predicting total aldehyde, DOC, BDOC, and AOC removal using data measured in MBR experiments. The calibrated model was then used to predict MBR process performance under a wide range of hypothetical large-scale operating conditions.; In conclusion, the MBR process is a promising technology for treating potable water sources having high THM formation or with high BDOC levels. This study has demonstrated that operating strategy has a substantial impact on membrane flux and, ultimately, on process economics and viability. The scale of studies conducted in this work provided a proof of concept and a preliminary assessment of operating strategies to minimize membrane fouling and maximize BOM removal.
机译:膜生物反应器(MBR)工艺将生物降解和吸附相结合以去除溶解的成分,而微滤(MF)则将悬浮固体去除。 MBR工艺是一种有前途的新技术,用于处理具有高消毒副产物(DBP)形成或高生物可降解有机物(BOM)水平的饮用水源。这项研究评估了MBR工艺与预臭氧处理相结合的方法,该工艺可去除BOM并降低饮用水中卤化副产物的形成。另外,开发了数学模型来预测MBR工艺效率。首先进行臭氧化研究,以确定臭氧副产物形成的幅度,并评估用于数学建模的合适BOM替代物。使用台式规模和小型中试规模的MBR工艺进行了一系列综合测试,该工艺处理了展现出高可吸收有机碳(AOC)形成潜力和高三卤甲烷(THM)形成潜力的预臭氧水。这些测试评估了MBR工艺在不同的粉状活性炭(PAC)剂量,不同的水力停留时间(HRT)和不同的粉状活性炭去除率下去除总醛,溶解有机碳(DOC),可生物降解有机碳(BDOC),AOC和THM前体的效率。在不同的pH值水平。建立了数学模型,该模型预测了MBR工艺中的基材去除情况。使用在吸附等温线,吸附速率和生物动力学研究中测得的参数常数对组合的吸附/生物膜模型进行校准。使用MBR实验中测得的数据对校准后的模型进行验证,以预测总醛,DOC,BDOC和AOC的去除。然后将校准后的模型用于预测在各种假设的大规模操作条件下的MBR工艺性能。总之,MBR工艺是用于处理具有高THM形成或高BDOC水平的饮用水源的有前途的技术。这项研究表明,操作策略对膜通量具有重大影响,并最终对工艺经济性和可行性具有重大影响。在这项工作中进行的研究规模提供了概念验证和运行策略的初步评估,以最大程度地减少膜污染并最大程度地去除BOM。

著录项

  • 作者

    Williams, Mark Dennis.;

  • 作者单位

    University of Southern California.;

  • 授予单位 University of Southern California.;
  • 学科 Engineering Environmental.; Engineering Chemical.; Engineering Sanitary and Municipal.; Engineering Civil.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 p.2856
  • 总页数 266
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境污染及其防治;
  • 关键词

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