| Literature DB >> 31323511 |
Dan Li1, Zhaosheng Chu2, Minsheng Huang3, Binghui Zheng4.
Abstract
As an important technology for purifying and recycling agricultural wastewater, storing multiple-pond constructed wetlands (SMCWs) are widely used in the treatment of non-point source pollution. However, the influences of design configuration (surface area, volume, flow path, aspect ratio, water depth, percent vegetation cover and planting pattern) on pollution mitigation in SMCWs are still underexplored. To improve the sustainability of constructed wetlands, the removal performances of four groups of SMCWs were assessed through multiphasic analyses. The maximum removal efficiencies of nitrogen and phosphorus were 63.7% and 64.0%, respectively. Higher mass removal rates per square meter (MRR) and mass removal rates per cubic meter (MRRV) were observed in ecological floating treatment wetlands (EFTWs). Compared with RE, the interception performances of deep-water SMCWs were more clearly described by using MRR and MRRV. EFTWs with good plant configurations (mixed planting, 60-80% plant cover) were recommended in deep-water SMCWs (water depth > 1.5 m).Entities:
Keywords: Design configuration; Multiphasic analyses; Nutrients removal; Storing multiple-pond constructed wetlands; Sustainable water resources recycling
Mesh:
Substances:
Year: 2019 PMID: 31323511 DOI: 10.1016/j.biortech.2019.121748
Source DB: PubMed Journal: Bioresour Technol ISSN: 0960-8524 Impact factor: 9.642