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处理生活污水的复合人工湿地中的氮转化与质量平衡

Nitrogen transformations and mass balance in an integrated constructed wetland treating domestic wastewater.

作者信息

Dzakpasu Mawuli, Scholz Miklas, McCarthy Valerie, Jordan Siobhán

机构信息

Centre for Water Resources Research, School of Civil, Structural and Environmental Engineering, Newstead Building, University College Dublin, Belfield, Dublin 4, Ireland E-mail:

Civil Engineering Research Group, School of Computing, Science and Engineering, Newton Building, The University of Salford, Salford M5 4WT, UK.

出版信息

Water Sci Technol. 2014;70(9):1496-502. doi: 10.2166/wst.2014.402.

Abstract

Nitrogen (N) transformations and removal in integrated constructed wetlands (ICWs) are often high, but the contributions of various pathways, including nitrification/denitrification, assimilation by plants and sediment storage, remain unclear. This study quantified the contributions of different N removal pathways in a typical multi-celled ICW system treating domestic wastewater. Findings showed near complete average total N retention of circa 95% at 102.3 g m⁻² yr⁻¹ during the 4-year period of operation. Variations in total N and NH4-N removal rates were associated with effluent flow volume rates and seasons. According to the mass balance estimation, assimilation by plants and sediment/soil storage accounted for approximately 23% and 20%, respectively, of the total N load removal. These were the major N removal route besides microbial transformations. Thus, the combination of plants with high biomass production offer valuable opportunities for improving ICW performance. The retrieval and use of sequestered N in the ICW sediment/soils require coherent management and provide innovative and valuable opportunities.

摘要

在综合人工湿地(ICW)中,氮(N)的转化和去除效率通常较高,但包括硝化/反硝化、植物吸收和沉积物储存在内的各种途径的贡献仍不明确。本研究量化了典型的多单元ICW系统处理生活污水时不同氮去除途径的贡献。研究结果表明,在4年的运行期内,平均总氮保留率接近95%,约为102.3 g m⁻² yr⁻¹。总氮和氨氮去除率的变化与出水流量速率和季节有关。根据质量平衡估算,植物吸收和沉积物/土壤储存分别占总氮负荷去除量的约23%和20%。这是除微生物转化之外的主要氮去除途径。因此,具有高生物量产量的植物组合为提高ICW性能提供了宝贵机会。在ICW沉积物/土壤中回收和利用固存的氮需要协调管理,并提供创新和宝贵的机会。

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