Stormwater Research Group, University of the Sunshine Coast, QLD 4558, Australia.
Covey Associates Pty Ltd., 124 Duporth Ave, Maroochydore, QLD 4558, Australia.
Sci Total Environ. 2019 Apr 10;660:199-208. doi: 10.1016/j.scitotenv.2019.01.018. Epub 2019 Jan 4.
A Constructed Floating Wetland (CFW) is a relatively recent innovation in stormwater treatment and is a hydroponic device that is designed to move up and down with changing water levels as urban runoff enters a stormwater retention pond. This floating capability is designed to improve the pollutant removal efficiency of the CFW. The CFW studies undertaken so far have produced encouraging results under a range of conditions such as system size, inflow pollutant concentrations, climatic conditions, and coverage ratio. However, these results have not yet been drawn together to better understand how the various design features of a CFW influence its performance. This paper reviews the available field investigations with the aim of helping guide and improve the experimental designs and installations of future CFW installations. This in turn will improve the knowledge and acceptance of these recently developed stormwater treatment systems. One of the findings of this review was that using a percentage coverage design approach may not be as effective as improving the design efficiency. Understanding the hydraulics of the entire pond and CFW system is also critical to effective design. The review also found that the performance evaluation of future CFW installations would be improved if consideration is given to including both baseline monitoring and experimental controls.
人工浮岛是一种相对较新的雨水处理创新,是一种水培装置,旨在随着城市径流进入雨水滞留池的水位变化而上下移动。这种浮动能力旨在提高人工浮岛的污染物去除效率。迄今为止,在一系列条件下,如系统规模、进水污染物浓度、气候条件和覆盖比,人工浮岛的研究已经取得了令人鼓舞的结果。然而,这些结果尚未综合起来,以更好地了解人工浮岛的各种设计特征如何影响其性能。本文回顾了现有的实地调查,旨在帮助指导和改进未来人工浮岛的设计和安装。这反过来又将提高对这些最近开发的雨水处理系统的认识和接受程度。该综述的一个发现是,使用百分比覆盖设计方法可能不如提高设计效率有效。了解整个池塘和人工浮岛系统的水力学也是有效设计的关键。该综述还发现,如果考虑包括基线监测和实验控制,未来人工浮岛的安装的性能评估将得到改善。