Department of Environmental Science and Engineering, Beijing University of Chemical Technology, Beijing, 100029, China.
Environ Sci Pollut Res Int. 2024 Oct;31(50):59712-59726. doi: 10.1007/s11356-024-35241-2. Epub 2024 Oct 5.
Ecological floating bed (EFB) has been widely used to remove nitrogen and phosphorus from eutrophic water. However, its effects on nitrogen and phosphorus removal are different in various studies. Presently it has not been systematically clear what factors produce effects on EFB removing nitrogen and phosphorus from eutrophic water. In this study, we performed a meta-analysis of 169 articles to discuss the effects of EFB characteristics and experimental conditions on EFB removing nitrogen and phosphorus. Results showed that EFB generally decreased nitrogen and phosphorus concentrations in eutrophic water regardless of EFB characteristics and experimental conditions. EFB showed better effects on simultaneously removing TN, NH-N, and TP when it had one of the characteristics: constructed by monocots, 2-3 plant species, an area of 1.1-3.0 m, and the coverage of 21%-40%. However, NO-N removal by EFB was complicated due to the effects of nitrification and denitrification. Moreover, EFB plant density also showed different effects on nitrogen and phosphorus removal. Experimental conditions produced evident effects on EFB removing nitrogen and phosphorus, and it showed better effects under one of the conditions: water temperature of 16-25℃, experimental duration of 31-60 days, long hydraulic retention time, and aeration. This study indicates that EFB can significantly remove nitrogen and phosphorus from eutrophic water, and it is an effective technology to control water eutrophication, but the effects of EFB characteristics and environmental conditions on EFB function should be considered in application.
生态浮床(EFB)已广泛用于去除富营养水中的氮和磷。然而,在不同的研究中,其去除氮和磷的效果不同。目前,尚不清楚哪些因素会对 EFB 去除富营养水中的氮和磷产生影响。本研究通过荟萃分析了 169 篇文献,讨论了 EFB 特性和实验条件对 EFB 去除富营养水中氮和磷的影响。结果表明,无论 EFB 特性和实验条件如何,EFB 通常都会降低富营养水中的氮和磷浓度。EFB 具有由单子叶植物构建、2-3 种植物物种、面积为 1.1-3.0 m² 和覆盖度为 21%-40%等特征时,对同时去除 TN、NH-N 和 TP 的效果更好。然而,由于硝化和反硝化的影响,EFB 对 NO-N 的去除效果较为复杂。此外,EFB 植物密度对氮和磷的去除也表现出不同的效果。实验条件对 EFB 去除氮和磷的效果有明显影响,在水温为 16-25℃、实验持续时间为 31-60 天、较长水力停留时间和曝气等条件下,效果更好。本研究表明,EFB 可显著去除富营养水中的氮和磷,是控制水体富营养化的有效技术,但在应用中应考虑 EFB 特性和环境条件对 EFB 功能的影响。