Department of Food, Agricultural, and Biological Engineering, The Ohio State University. 590 Woody Hayes Drive, Columbus, OH, 43210, USA.
California State Water Resources Control Board, 1001 I Street, Sacramento, CA, 95833, USA.
Water Res. 2021 Feb 1;189:116648. doi: 10.1016/j.watres.2020.116648. Epub 2020 Nov 16.
Bioretention systems are widely used green infrastructure elements that utilize engineered bioretention soil media (BSM) for stormwater capture and treatment. Conventional bioretention soil media, which typically consists of sand, sandy loam, loamy sand or topsoil amended with compost, has limited capacity to remove and may leach some stormwater pollutants. Alternative engineered amendments, both organic and inorganic, have been tested to supplement BSM. Yet, municipalities and regulatory agencies have been slow to adopt these alternative amendments into their design specifications, partly because of a lack of clear guidance on how to select the right amendment to treat a target stormwater contaminant under highly variable climatic conditions. This article aims to provide that guidance by: (1) summarizing the current design BSM specifications adopted by jurisdictions worldwide, (2) comparing the performance of conventional and amended BSM, (3) highlighting advantages and limitations of BSM amendments, and (4) identifying challenges for implementing amendments in field conditions. The analysis not only informs the research community of the barriers faced by stormwater managers in implementing BSM amendments but also provides guidelines for their adoption by interested agencies to comply with existing regulations and meet design needs. This feedback loop could catalyze further innovation in the development of sustainable stormwater treatment technologies.
生物滞留系统是广泛应用的绿色基础设施元素,利用工程化的生物滞留土壤介质(BSM)来捕获和处理雨水。传统的生物滞留土壤介质通常由沙子、沙壤土、壤土或添加堆肥的表土组成,其去除能力有限,并且可能会淋滤一些雨水污染物。已经测试了替代的工程化改良剂,包括有机和无机改良剂,以补充 BSM。然而,市政当局和监管机构一直不愿将这些替代改良剂纳入其设计规范,部分原因是缺乏关于如何在高度变化的气候条件下选择正确的改良剂来处理目标雨水污染物的明确指导。本文旨在通过以下方式提供该指导:(1)总结全球司法管辖区采用的当前设计 BSM 规范,(2)比较传统和改良 BSM 的性能,(3)突出 BSM 改良剂的优点和局限性,以及(4)确定在现场条件下实施改良剂的挑战。该分析不仅使研究界了解到雨水管理人员在实施 BSM 改良剂方面面临的障碍,还为感兴趣的机构提供了采用这些改良剂的指南,以遵守现有法规并满足设计需求。这种反馈循环可以促进可持续雨水处理技术的进一步创新。