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比较植物多样性对铵态氮/硝态氮比干扰下浮床和砂基人工湿地氮去除和稳定性的影响。

Comparing the effects of plant diversity on the nitrogen removal and stability in floating and sand-based constructed wetlands under ammonium/nitrate ratio disturbance.

机构信息

College of Life Sciences, Zhejiang University, 866 Yuhangtang Road, Hangzhou, 310058, China.

College of Life and Environmental Science, Wenzhou University, Wenzhou, 325035, China.

出版信息

Environ Sci Pollut Res Int. 2021 Dec;28(48):69354-69366. doi: 10.1007/s11356-021-14829-y. Epub 2021 Jul 23.

Abstract

Maintaining efficient and stable nitrogen (N) removal in constructed wetlands (CWs) that experience disturbance from their influent pollutant variations is crucial. The ammonium/nitrate (NH/NO) ratio of influent in CWs often varies widely. The N removal and stability in floating CWs have been found to be enhanced by manipulating plant species diversity. However, whether the positive effects occur in sand-based CWs remains unknown. Here, we established sand-based and hydroponic microcosms to investigate the differences in the responses of N removal and stability to plant species diversity under the disturbance of increasing influent NH/NO ratio in late period of plant growth. Results indicated that, (1) increasing plant species richness enhanced N removal but did not affect N removal stability in sand-based CWs under disturbance; (2) sand-based CWs had 46% higher average N removal stability than floating CWs, but the stability in floating CWs reached that in sand-based CWs at higher species richness levels; (3) under disturbed conditions, floating CWs with Phragmites australis or Typha latifolia achieved N removal and stability equivalent to those in sand-based CWs. This study indicates that, when treating wastewater with a variable NH/NO ratio, floating CWs with high plant species richness and specific species can achieve a win-win situation for high and stable N removal and bioenergy production.

摘要

在受进水污染物变化干扰的人工湿地(CWs)中保持高效稳定的氮(N)去除至关重要。CWs 进水的氨氮/硝氮(NH/NO)比经常变化很大。已经发现通过操纵植物物种多样性可以增强浮床 CWs 的脱氮和稳定性。然而,这种积极影响是否发生在基于砂的 CWs 中尚不清楚。在这里,我们建立了基于砂的和水培微宇宙,以研究在植物生长后期进水 NH/NO 比增加干扰下,植物物种多样性对 N 去除和稳定性的响应差异。结果表明,(1)增加植物物种丰富度可以提高砂基 CWs 中的 N 去除,但不会影响 N 去除稳定性;(2)砂基 CWs 的平均 N 去除稳定性比浮床 CWs 高 46%,但在更高的物种丰富度水平下,浮床 CWs 的稳定性达到了砂基 CWs 的水平;(3)在受干扰的条件下,含有芦苇或香蒲的浮床 CWs 可以实现与砂基 CWs 相当的 N 去除和稳定性。本研究表明,在处理 NH/NO 比变化的废水时,具有高植物物种丰富度和特定物种的浮床 CWs 可以实现高且稳定的 N 去除和生物能源生产的双赢局面。

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