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Trace organic contaminant removal from drinking waters by granular activated carbon: Adsorption, desorption, and the effect of background organic matter.

机译:颗粒状活性炭可去除饮用水中的有机污染物:吸附,解吸和背景有机物的影响。

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摘要

Granular activated carbon (GAC) adsorption can be an effective barrier against a wide array of trace organic contaminants; however, assessing GAC performance in the presence of background dissolved organic matter (DOM) is difficult. The objectives of this thesis are to investigate overall performance of GAC adsorption of trace organic contaminants in the presence of background organic matter and to make the rapid small-scale column test (RSSCT) a more useful bench-scale tool for prediction full-scale performance of GAC adsorption of trace organic contaminants. The role of GAC particle size on the reduction of GAC adsorption capacity for trace organic contaminants by DOM was examined and applied to performance scale-up. Equilibrium adsorption capacity tests on GAC preloaded with DOM and RSSCT breakthrough curves at three different GAC particle sizes indicated that GAC adsorption capacity was dependent on GAC particle size when DOM was present. Thus, the RSSCT cannot be expected to match full-scale results unless a scaling factor is applied to the results. Kinetic tests indicated intraparticle diffusivity of five probe compounds at environmentally relevant concentrations was dependent on GAC particle size, i.e., nonconstant. A method to convert breakthrough curves from an RSSCT with a known diffusivity factor to another value of diffusivity factor was developed and validated. A series of RSSCTs were performed to assess the role of DOM in GAC adsorption of trace organic contaminants. More favorable GAC use rates were found with shorter empty bed contact times (EBCTs), because longer beds are subject to more fouling by the DOM. Adsorbers operated for taste and odor or disinfection byproduct control were shown to result in good removal of the 18 trace organic contaminants tested. The role of concentration gradient driven desorption on GAC adsorber performance was investigated. Experiments developed to simulate backwashing did not lead to an impact on the trace organic contaminants breakthrough curves. Desorption after a pulse loading was found to be less severe than expected because of hindered back diffusion.
机译:颗粒状活性炭(GAC)的吸附可以有效地抵抗各种痕量有机污染物。但是,很难在背景溶解有机物(DOM)存在的情况下评估GAC的性能。本文的目的是研究背景有机物存在下GAC吸附痕量有机污染物的总体性能,并使快速小规模柱试验(RSSCT)成为预测满量程性能的更有用的台式工具GAC对痕量有机污染物的吸附。考察了GAC粒径对DOM降低GAC对痕量有机污染物的吸附能力的作用,并将其应用于性能提升。在三种不同的GAC粒径下,预先加载DOM和RSSCT突破曲线的GAC的平衡吸附容量测试表明,当存在DOM时,GAC吸附容量取决于GAC粒径。因此,除非将比例因子应用于结果,否则不能期望RSSCT匹配满量程结果。动力学测试表明,五种探针化合物在与环境有关的浓度下的颗粒内扩散度取决于GAC粒径,即非恒定粒径。开发并验证了一种将具有已知扩散系数的RSSCT的突破曲线转换为另一扩散系数值的方法。进行了一系列RSSCT评估DOM在GAC吸附痕量有机污染物中的作用。空床接触时间(EBCT)较短时,发现GAC的使用率更高,这是因为较长的床会受到DOM的更多污染。结果表明,用于味道和气味或消毒副产物控制的吸附剂可很好地除去所测试的18种痕量有机污染物。研究了浓度梯度驱动的解吸对GAC吸附器性能的影响。为模拟反冲洗而开发的实验并未对痕量有机污染物的突破曲线产生影响。由于受阻的反向扩散,发现脉冲加载后的解吸不如预期的严重。

著录项

  • 作者单位

    University of Colorado at Boulder.;

  • 授予单位 University of Colorado at Boulder.;
  • 学科 Engineering Civil.;Engineering Sanitary and Municipal.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 128 p.
  • 总页数 128
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:37:08

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