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首页> 外文期刊>Chemosphere >Numerical assessment of a soil moisture controlled wastewater SDI disposal system in Alabama Black Belt Prairie
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Numerical assessment of a soil moisture controlled wastewater SDI disposal system in Alabama Black Belt Prairie

机译:Alabama黑带草原土壤防水控制废水SDI处置系统的数值评价

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摘要

To promote the environmental sustainability of rural sanitation, a soil moisture controlled wastewater subsurface drip irrigation (SDI) dispersal system was field tested in the Black Belt Prairie of Alabama, USA. The soil moisture control strategy was designed to regulate wastewater disposal timing according to drain field conditions to prevent hydraulic overloading and corresponding environmental hazard. CW2D/HYDRUS simulation modeling was utilized to explore difficult-to-measure aspects of system performance. While the control system successfully adapted hydraulic loading rate to changing drain field conditions, saturated field conditions during the dormant season presented practical application challenges. The paired field experiment and simulation model demonstrate that soil biofilm growth was stimulated in the vicinity of drip emitters. Although biofilm growth is critical in maintaining adequate COD and NH4+-N removal efficiencies, the efficient removal of biodegradable COD itself by soil biofilm limits denitrification of formed NO3- - N. Furthermore, stimulated soil biofilm growth can create soil clogging around drip emitters, which was discerned in the field experiment along with salt accumulation, both of which were verified by simulation. Comparable modeling of system performance in sand and clay media demonstrate that the placement of soil moisture sensors within the drain field can have pronounced impacts on system hydraulic performance, depending on the soil permeability. Overall, the soil moisture control strategy tested is shown as a viable supplemental technology to promote the environmental sustainability of rural sanitation systems. (C) 2020 Elsevier Ltd. All rights reserved.
机译:为促进农村卫生环境的环境可持续性,土壤防潮废水地下滴灌(SDI)分散系统是美国阿拉巴马州黑带草原的田间。设计土壤防潮策略根据排水场条件来调节废水处理时序,以防止液压过载和相应的环境危害。 CW2D / Hydrus仿真建模用于探讨系统性能的难以测量方面。虽然控制系统成功地调整了液压装载速率以改变漏极场条件,但休眠季节期间的饱和现场条件呈现了实际应用挑战。配对场实验和仿真模型表明,在滴灌的发射器附近刺激了土壤生物膜生长。虽然生物膜生长对于维持足够的COD和NH 4 + -N去除效率至关重要,但通过土壤生物膜限制成立NO3- N的脱氮有效去除可生物降解的COD本身。此外,刺激的土壤生物膜生长可以产生滴落器堵塞的土壤堵塞在现场实验中被探测以及盐累积,两者都通过模拟验证。砂和粘土介质中系统性能的可比建模表明,根据土壤渗透率,在排水管场内的土壤水分传感器的放置可以发音对系统液压性能的影响。总的来说,测试的土壤水分控制策略被证明是一种可行的补充技术,以促进农村卫生系统的环境可持续性。 (c)2020 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Chemosphere 》 |2021年第3期| 128210.1-128210.8| 共8页
  • 作者单位

    Huazhong Agr Univ Coll Resources & Environm Wuhan 430070 Peoples R China;

    Auburn Univ Dept Biosyst Engn Auburn AL 36849 USA;

    Czech Univ Life Sci Prague Fac Environm Sci Dept Appl Ecol Prague 16500 Czech Republic;

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

    Biofilm; CW2D; HYDRUS; SDI; Modeling; Wastewater treatment;

    机译:生物膜;CW2D;肼;SDI;建模;废水处理;

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