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雨水生物滤池的磷和氮去除的协同优化:滤料、植被和饱和带的作用。

Co-optimisation of phosphorus and nitrogen removal in stormwater biofilters: the role of filter media, vegetation and saturated zone.

机构信息

CRC for Water Sensitive Cities, Water for Liveability Centre, Department of Civil Engineering, Monash University, Victoria 3800, Australia E-mail:

Waterway Ecosystem Research Group, Department of Resource Management and Geography, Melbourne School of Land and Environment, the University of Melbourne, Victoria 3121, Australia.

出版信息

Water Sci Technol. 2014;69(9):1961-9. doi: 10.2166/wst.2014.117.

Abstract

Biofilters have been shown to effectively treat stormwater and achieve nutrient load reduction targets. However, effluent concentrations of nitrogen and phosphorus typically exceed environmental targets for receiving water protection. This study investigates the role of filter media, vegetation and a saturated zone (SZ) in achieving co-optimised nitrogen and phosphorus removal in biofilters. Twenty biofilter columns were monitored over a 12-month period of dosing with semi-synthetic stormwater. The frequency of dosing was altered seasonally to examine the impact of hydrologic variability. Very good nutrient removal (90% total phosphorus, 89% total nitrogen) could be achieved by incorporating vegetation, an SZ and Skye sand, a naturally occurring iron-rich filter medium. This design maintained nutrient removal at or below water quality guideline concentrations throughout the experiment, demonstrating resilience to wetting-drying fluctuations. The results also highlighted the benefit of including an SZ to maintain treatment performance over extended dry periods. These findings represent progress towards designing biofilters which co-optimise nitrogen and phosphorus removal and comply with water quality guidelines.

摘要

生物滤池已被证明可有效处理雨水并实现减少营养负荷的目标。然而,氮和磷的出水浓度通常超过受纳水体保护的环境目标。本研究探讨了过滤介质、植被和饱和区(SZ)在实现生物滤池中氮和磷的协同去除中的作用。在为期 12 个月的半合成雨水投加过程中,监测了 20 个生物滤池柱。投加频率根据季节性进行了调整,以考察水文变化的影响。通过结合植被、SZ 和天然富铁过滤介质 Skye 砂,可实现非常好的养分去除(总磷 90%,总氮 89%)。这种设计在整个实验过程中使养分去除保持在水质指南浓度以下或以下,表现出对干湿波动的恢复能力。研究结果还强调了包括 SZ 的好处,可在延长的干燥期内保持处理性能。这些发现代表着在设计可协同去除氮和磷并符合水质指南的生物滤池方面取得了进展。

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