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Natural Treatment Systems for Stormwater Cleanup in Southern California: A biofilter coastal case study.

机译:加利福尼亚南部雨水净化的自然处理系统:沿海生物滤池案例研究。

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摘要

Biofiltration systems use a variety of biological, chemical, and physical processes to capture and improve the water quality of stormwater runoff. Biofilters are frequently specified for design in construction projects in southern California, but are rarely monitored for long-term success. Typically, the engineering design criteria are focused on the hydrologic aspects, soil type, and vegetation, but rarely consider the benefits of ecological services or the presence of fauna. By improving our understanding of biofilters, we can introduce a scientific component to an engineered design that does not typically consider the benefits of a man-made ecosystem. Four biofilters constructed in 2010 at the Scripps Institution of Oceanography were selected as a model to examine existing biofilter function based on biofilter pollutant removal capabilities and ecosystem structure. Historic and current analysis of the biofilters show that concentrations of total copper, total zinc, and total suspended solids were reduced by the biofilter, though the percent pollutant removed has decreased over time. Nutrient and bacteria removal is more complicated, with input rather than removal during some periods; improvements could be made to optimize this. Recommendations to improve the sustainability and longevity of biofilters based on the data and literature include a) the incorporation of a saturated zone, b) the use of rain barrels, c) outreach and education, and d) further local experimentation on the relationship between biofilter flora and fauna.
机译:生物过滤系统利用各种生物,化学和物理过程来捕获和改善雨水径流的水质。生物滤池经常被指定用于加利福尼亚南部建筑项目的设计中,但很少受到长期成功监测。通常,工程设计标准侧重于水文方面,土壤类型和植被,但很少考虑生态服务或动物群的好处。通过增进对生物过滤器的了解,我们可以将科学成分引入通常不考虑人造生态系统收益的工程设计中。选择了斯克里普斯海洋研究所于2010年建造的四台生物滤池作为模型,根据生物滤池的污染物去除能力和生态系统结构来检查现有的生物滤池功能。对生物滤池的历史和当前分析表明,尽管去除的污染物百分率随时间降低,但生物滤池降低了总铜,总锌和总悬浮固体的浓度。营养和细菌的去除更为复杂,需要投入,而不是在某些时期去除。可以进行改进以优化此方法。根据数据和文献,提高生物滤池可持续性和寿命的建议包括:a)纳入饱和区,b)使用雨桶,c)推广和教育,d)关于生物滤池之间关系的进一步本地试验植物群和动物群。

著录项

  • 作者

    Galloway, Kathleen Elaine.;

  • 作者单位

    University of California, San Diego.;

  • 授予单位 University of California, San Diego.;
  • 学科 Environmental engineering.;Civil engineering.;Ecology.
  • 学位 M.S.
  • 年度 2016
  • 页码 77 p.
  • 总页数 77
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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