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Temperature-Dependent Ammonium Removal Capacity of Biological Activated Carbon Used in a Full-Scale Drinking Water Treatment Plant

机译:用于全规模饮用水处理厂的生物活性炭的温度依赖性铵去除能力

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摘要

Nitrification is a key function of biological activated carbon (BAC) filters for drinking water treatment. It is empirically known that the nitrification activity of BAC filters depends on water temperature, potentially resulting in the leakage of ammonium from BAC filters when the water temperature decreases. However, the ammonium removal capacity of BAC filters and factors governing the capacity remain unknown. This study employed a bench-scale column assay to determine the volumetric ammonium removal rate (VARR) of BAC collected from a full-scale drinking water treatment plant. VARR was determined at a fixed loading rate under different conditions. Seasonal variations of the VARR as well as impacts of the water matrix and water temperature on ammonium removal were quantitatively analyzed. While the VARR in an inorganic medium at 25°C was maintained even during low water temperature periods and during breakpoint chlorination periods, the water matrix factor reduced the VARR in ozonated water at 25°C by 33% on average. The VARR in ozonated water was dependent on water temperature, indicating that the microbial activity of BAC did not adapt to low water temperature. The Arrhenius equation was applied to reveal the relationship between VARR and water temperature. The actual ammonium removal performance of a full-scale BAC filter was predicted. VARR is useful for water engineers to reexamine the loading and filter depth of BAC filters.
机译:硝化是用于饮用水处理的生物活性炭(BAC)过滤器的关键功能。经验证称,BAC过滤器的硝化活性取决于水温,潜在地在水温降低时从BAC过滤器中渗漏铵。然而,BAC过滤器的铵去除能力和控制能力的因素仍然未知。该研究采用了稳压柱测定,以确定从全规模饮用水处理厂收集的BAC的体积铵去除率(VAR)。 VAR以固定的加载率在不同条件下确定。总量分析了VAR的季节性变化以及水基质和水温对铵去除的影响。虽然在低水温期间和在断点氯化时段期间,维持在25℃的无机培养基中的VAR,但水基质因子将臭氧水的载体平均降低25℃的氟化水。臭氧水中的VAR依赖于水温,表明BAC的微生物活性不适应低水温。 Arrhenius方程被应用于揭示Varr和水温之间的关系。预先预测全尺寸BAC过滤器的实际铵去除性能。 Varr对水工程师来说是有用的,以重新审视BAC过滤器的装载和滤波深度。

著录项

  • 来源
    《Environmental Science & Technology》 |2020年第20期|13257-13263|共7页
  • 作者单位

    Department of Urban Engineering School of Engineering The University of Tokyo Tokyo 113-S656 Japan;

    Department of Urban Engineering School of Engineering The University of Tokyo Tokyo 113-8656 Japan;

    Research Center for Water Environment Technology School of Engineering The University of Tokyo Tokyo 113-8656 Japan;

    Research Center for Water Environment Technology School of Engineering The University of Tokyo Tokyo 113-8656 Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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