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Combinations of Horizontal and Vertical Flow Constructed Wetlands to Improve Nitrogen Removal

机译:水平和垂直流动的人工湿地相结合以提高氮的去除率

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摘要

Nitrogen removal in wetlands is achieved through two pathways: (a) N cycling and (b) storage. N cycling is a permanent removal pathway. There has been an increasing interest in the development of technologies to alleviate permanent nitrogen removal limitation in constructed wetlands by ensuring prevalence of conditions enhancing N cycling. The purpose of this study is to review an emerging technology of vegetated submerged bed constructed wetland system aimed at improving nitrogen removal in wetlands through rational system design. The design and performance of this system type is evaluated. The oxygen transfer capacity and nitrogen removal mechanisms on system performance are evaluated. Constructed wetland combinations most commonly consist of vertical flow (VF) and horizontal flow (HF) beds where VF and HF are aimed at nitrification and denitrification, respectively. Nitrate nitrogen accumulation is the most limiting factor in typical VF based systems.
机译:湿地中的氮去除是通过两种途径实现的:(a)N循环和(b)储存。 N循环是一个永久的去除途径。通过确保普遍存在的增强氮循环的条件来减轻人工湿地中永久性氮去除限制的技术的开发越来越引起人们的兴趣。这项研究的目的是回顾一种新兴的植被淹没床人工湿地系统技术,旨在通过合理的系统设计来提高湿地中的氮去除率。评估此系统类型的设计和性能。评估了氧气传输能力和脱氮机理对系统性能的影响。人工湿地组合通常由垂直流床(VF)和水平流床(HF)组成,其中VF和HF分别用于硝化和反硝化。在基于VF的典型系统中,硝酸盐氮的积累是最大的限制因素。

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