Comprehensive Performance Evaluation of Green Infrastructure Practices for Urban Watersheds Using an Engineering–Environmental–Economic (3E) Model
Green infrastructure practices could provide innovative solutions for on-site stormwater management and runoff pollution control, which could relieve the stress of nonpoint pollution resulting from heavy rainfall events. In this study, the performance and cost-effectiveness of six green infrastructu...
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doaj-66d5b0da23484ac489d71b3a7f4a0a3b2021-04-22T23:03:42ZengMDPI AGSustainability2071-10502021-04-01134678467810.3390/su13094678Comprehensive Performance Evaluation of Green Infrastructure Practices for Urban Watersheds Using an Engineering–Environmental–Economic (3E) ModelYi-Jia Xing0Tse-Lun Chen1Meng-Yao Gao2Si-Lu Pei3Wei-Bin Pan4Pen-Chi Chiang5School of Environment and Energy, South China University of Technology, Guangzhou 510006, ChinaGraduate Institute of Environmental Engineering, National Taiwan University, 71 Chou-Shan Road, Da-an District, Taipei City 10673, TaiwanDepartment of Chemical Engineering, National Taiwan University of Science and Technology, Taipei 10607, TaiwanResearch Institute of CNTY, Shanghai 200000, ChinaSchool of Environment and Energy, South China University of Technology, Guangzhou 510006, ChinaGraduate Institute of Environmental Engineering, National Taiwan University, 71 Chou-Shan Road, Da-an District, Taipei City 10673, TaiwanGreen infrastructure practices could provide innovative solutions for on-site stormwater management and runoff pollution control, which could relieve the stress of nonpoint pollution resulting from heavy rainfall events. In this study, the performance and cost-effectiveness of six green infrastructure practices, namely, green roofs, rain gardens, pervious surfaces, swales, detention basins, and constructed wetlands, were investigated. The comprehensive performance evaluation in terms of the engineering performance, environmental impact, and economic cost was determined in the proposed engineering–environmental–economic (3E) triangle model. The results revealed that these green infrastructure practices were effective for stormwater management in terms of runoff attenuation, peak flow reduction and delay, and pollutant attenuation. It was suggested that for pollution control, detention basins can efficiently reduce the total suspended solids, total nitrogen, total phosphorus, and lead. The implementation of detention basins is highly recommended due to their higher engineering performance and lower environmental impact and economic cost. A case study of a preliminary cost–benefit analysis of green infrastructure practice exemplified by the Pearl River Delta in China was addressed. It suggested that green infrastructure was cost-effective in stormwater management in this area, which would be helpful for sustaining healthy urban watersheds.https://www.mdpi.com/2071-1050/13/9/4678urban watershedsstormwater managementgreen infrastructure practicesmulti-function3E trianglestrategies |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Yi-Jia Xing Tse-Lun Chen Meng-Yao Gao Si-Lu Pei Wei-Bin Pan Pen-Chi Chiang |
spellingShingle |
Yi-Jia Xing Tse-Lun Chen Meng-Yao Gao Si-Lu Pei Wei-Bin Pan Pen-Chi Chiang Comprehensive Performance Evaluation of Green Infrastructure Practices for Urban Watersheds Using an Engineering–Environmental–Economic (3E) Model Sustainability urban watersheds stormwater management green infrastructure practices multi-function 3E triangle strategies |
author_facet |
Yi-Jia Xing Tse-Lun Chen Meng-Yao Gao Si-Lu Pei Wei-Bin Pan Pen-Chi Chiang |
author_sort |
Yi-Jia Xing |
title |
Comprehensive Performance Evaluation of Green Infrastructure Practices for Urban Watersheds Using an Engineering–Environmental–Economic (3E) Model |
title_short |
Comprehensive Performance Evaluation of Green Infrastructure Practices for Urban Watersheds Using an Engineering–Environmental–Economic (3E) Model |
title_full |
Comprehensive Performance Evaluation of Green Infrastructure Practices for Urban Watersheds Using an Engineering–Environmental–Economic (3E) Model |
title_fullStr |
Comprehensive Performance Evaluation of Green Infrastructure Practices for Urban Watersheds Using an Engineering–Environmental–Economic (3E) Model |
title_full_unstemmed |
Comprehensive Performance Evaluation of Green Infrastructure Practices for Urban Watersheds Using an Engineering–Environmental–Economic (3E) Model |
title_sort |
comprehensive performance evaluation of green infrastructure practices for urban watersheds using an engineering–environmental–economic (3e) model |
publisher |
MDPI AG |
series |
Sustainability |
issn |
2071-1050 |
publishDate |
2021-04-01 |
description |
Green infrastructure practices could provide innovative solutions for on-site stormwater management and runoff pollution control, which could relieve the stress of nonpoint pollution resulting from heavy rainfall events. In this study, the performance and cost-effectiveness of six green infrastructure practices, namely, green roofs, rain gardens, pervious surfaces, swales, detention basins, and constructed wetlands, were investigated. The comprehensive performance evaluation in terms of the engineering performance, environmental impact, and economic cost was determined in the proposed engineering–environmental–economic (3E) triangle model. The results revealed that these green infrastructure practices were effective for stormwater management in terms of runoff attenuation, peak flow reduction and delay, and pollutant attenuation. It was suggested that for pollution control, detention basins can efficiently reduce the total suspended solids, total nitrogen, total phosphorus, and lead. The implementation of detention basins is highly recommended due to their higher engineering performance and lower environmental impact and economic cost. A case study of a preliminary cost–benefit analysis of green infrastructure practice exemplified by the Pearl River Delta in China was addressed. It suggested that green infrastructure was cost-effective in stormwater management in this area, which would be helpful for sustaining healthy urban watersheds. |
topic |
urban watersheds stormwater management green infrastructure practices multi-function 3E triangle strategies |
url |
https://www.mdpi.com/2071-1050/13/9/4678 |
work_keys_str_mv |
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