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Laboratory assessment of factors affecting soil clogging of soil aquifer treatment systems

机译:实验室评估影响含水层处理系统土壤堵塞的因素

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摘要

In this study the effect of soil type, level of pre-treatment, ponding depth, temperature and sunlight on clogging of soil aquifer treatment (SAT) systems was evaluated over an eight week duration in constant temperature and glasshouse environments. Of the two soil types tested, the more permeable sand media clogged more than the loam, but still retained an order of magnitude higher absolute permeability. A 6- to 8-fold difference in hydraulic loading rates was observed between the four source water types tested (one potable water and three recycled waters), with improved water quality resulting in significantly higher infiltration. Infiltration rates for ponding depths of 30 cm and 50 cm were higher than 10 cm, although for 50 cm clogging rates were higher due to greater compaction of the clogging layer. Overall, physical clogging was more significant than other forms of clogging. Microbial clogging becomes increasingly important when the particulate concentrations in the source waters are reduced through pre-treatment and for finer textured soils due to the higher specific surface area of the media. Clogging by gas binding took place in the glasshouse but not in the lab, and mechanical clogging associated with particle rearrangement was evident in the sand media but not in the loam. These results offer insight into the soil, water quality and operating conditions needed to achieve viable SAT systems.
机译:在这项研究中,在恒温和温室环境下,在八周的时间内评估了土壤类型,预处理水平,蓄水深度,温度和阳光对土壤含水层处理(SAT)系统堵塞的影响。在测试的两种土壤类型中,渗透性更高的砂介质比壤土堵塞得更多,但绝对渗透率仍保持一个数量级。在所测试的四种水源类型(一种饮用水和三种循环水)之间观察到水力负荷率相差6到8倍,水质得到改善,渗透率大大提高。积水深度为30 cm和50 cm时的渗透率高于10 cm,尽管对于50 cm时,由于堵塞层的压实度更大,堵塞率更高。总体而言,物理堵塞比其他形式的堵塞更重要。当通过预处理降低源水中的颗粒物浓度时,由于介质的比表面积较高,微生物堵塞变得越来越重要。气体结合导致堵塞发生在温室中,而不是在实验室中发生,并且与颗粒重排相关的机械堵塞在砂质介质中很明显,但在壤土中则没有。这些结果为深入了解实现可行的SAT系统所需的土壤,水质和运行条件提供了见识。

著录项

  • 来源
    《Water Research》 |2011年第10期|p.3153-3163|共11页
  • 作者单位

    International Water Management Institute, Hyderabad, India;

    CSIRO Land and Water, Adelaide, Australia;

    VeoIia Water (OEWA), Leipzig, Germany;

    CSIRO Land and Water, Adelaide, Australia,Flinders University, School of Chemistry, Physics and Earth Sciences, Adelaide, Australia;

    CSIRO Land and Water, Adelaide, Australia;

    Flinders University, School of Chemistry, Physics and Earth Sciences, Adelaide, Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    clogging; biofilm; recycled water; sat;

    机译:堵塞;生物膜;循环水;饱和度;
  • 入库时间 2022-08-17 13:48:27

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