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首页> 外文期刊>Environmental Science and Pollution Research >Microbial removal and plant uptake of nitrogen in constructed wetlands: mesocosm tests on influencing factors
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Microbial removal and plant uptake of nitrogen in constructed wetlands: mesocosm tests on influencing factors

机译:构造湿地中氮的微生物去除和植物摄取:Mesocosm对影响因素的测试

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摘要

Macrophytes and bacteria are key drivers of nitrogen removal in constructed wetlands. Through mesocosm experiments with vegetated submerged beds and free water surface wetlands in various operational modes, wetland configurations, and system layouts, this study developed empirical models for non-destructive estimation of plant biomass growth and associated nitrogen assimilation and explored the combined effects of multiple factors that influence microbial nitrogen removal. The above-ground biomass of individual plants was a power function of plant height for both Cyperus alternifolius and Typha angustifolia . Below- to above-ground biomass ratio was 0.38 for C. alternifolius and 2.73 for T. angustifolia . Because of greater tolerance to ammonia stress, C. alternifolius and C. papyrus grew faster than T. angustifolia . There were no significant effects of wetland type, vegetation, and plant species on microbial nitrogen removal. Microbial nitrogen removal was inhibited by free ammonia at 13.3–16.2?mg?N/L. Denitrification and anammox were suppressed at dissolved oxygen greater than 1.9?mg/L. Microbial removal of ammonia in vegetated submerged beds was sensitive mainly to dissolved oxygen, pH, and influent ammonia concentration, while in free water surface wetlands, it was sensitive to influent ammonia concentration, pH, and temperature.
机译:Macrophytes和细菌是构造湿地氮去除的关键驱动因素。通过Mesocosm实验与各种操作模式,湿地配置和系统布局的植被浸没式床和自由水面湿地,这项研究开发了植物生物质生长和相关氮同化的非破坏性估计的实证模型,并探讨了多种因素的综合影响影响微生物氮气去除。个体植物的上述生物量是植物高度的功率函数,用于伴有豆荚和Typha angustifolia。下面至于地上的地上生物质比为C. anderifolius和2.73的T.Angustifolia的0.38。由于对氨胁迫的耐受性更大,C.横虫和C.纸莎草的增长速度超过了令人痛苦的毒性。湿地类型,植被和植物物种对微生物氮除去没有显着影响。通过13.3-16.2×1℃的游离氨抑制微生物氮去除。在溶解的氧中抑制脱氮和厌氧毒素大于1.9μmg/ l。微生物去除植被浸没床中的氨是敏感的,主要是溶解氧,pH和流入的氨浓度,而在自由水表面湿地中,它对流入的氨浓度,pH和温度敏感。

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