Wetland water quality assessment of eco-engineered landscaping practices: a case study of constructed wetland parks in Hangzhou

IF 1.6 Q3 WATER RESOURCES Water Practice and Technology Pub Date : 2023-11-03 DOI:10.2166/wpt.2023.184
Yan Huang, Tianjie Li, Yang Jin
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Abstract

Abstract Urban constructed water quality treatment (WQT) wetlands are often applied to be integrated with ecological engineered landscaping (EEL) measures for wastewater treatments. This study aims to identify the interrelationships between the hydrological factors and pollutant removal contributions of typical WQT wetlands at each WQT stage, i.e., subsurface flow wetlands (SSF), vertical flow wetlands (VF), free surface flow wetland (FSF), floating wetland island (FWI), aeration ponds (APs), and ornamental ponds (OPs) in four typical wetland parks in Hangzhou, China. Water quality indices (WQIs) of wetland parks have been monitored. Interactive comparisons and correlations between hydrological indicators and WQIs (i.e., pH, DO, NH3-N, CODCr, and TP) are developed, while the removal contribution of each WQI was explained. It is found that each stage had heterogeneous effects on wastewater treatment due to various geo-ecological factors, including hydraulic conditions, plant type, and microbial microenvironment, whereas the temperature of waterbodies affected WQT performances at full sites in all seasons. Three corresponding EEL guiding principles were derived, i.e., optimising the EEL measures, adapting planting methods, and incorporating multifunctional design and adaptive management. The findings will be helpful for improving the efficacy of WQT stages as one of the potential ecosystem services provided by wetland parks.
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生态工程景观实践中的湿地水质评价——以杭州市人工湿地公园为例
城市人工水质处理湿地(WQT)常与生态工程美化(EEL)措施相结合,用于污水处理。以杭州4个典型湿地公园为研究对象,研究了典型湿地各阶段(潜流湿地(subsurface flow wetlands, SSF)、垂直流湿地(vertical flow wetlands, VF)、自由地表流湿地(free surface flow wetlands, FSF)、漂浮湿地岛(floating wetland island, FWI)、通气池(ventilation pond, APs)和观赏池(观赏池))的水文因子与污染物去除贡献之间的相互关系。对湿地公园的水质指标进行了监测。建立了水文指标与WQI(即pH、DO、NH3-N、CODCr和TP)之间的交互比较和相关性,并解释了每种WQI的去除贡献。研究发现,由于水力条件、植物类型和微生物微环境等不同的地质生态因素,每个阶段对废水处理的影响都是不均匀的,而水体温度在所有季节都影响着全站点的WQT性能。提出了优化生态环境效益措施、适应种植方式、结合多功能设计和适应性管理的生态环境效益指导原则。研究结果将有助于提高WQT阶段作为湿地公园潜在生态系统服务之一的效能。
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来源期刊
CiteScore
2.30
自引率
6.20%
发文量
136
审稿时长
14 weeks
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