globalchange  > 气候变化与战略
CSCD记录号: CSCD:5490887
论文题名:
模拟人工湿地植物丰富度对硝氮去除及净温室效应的影响
其他题名: Effects of plant species richness on nitrate removal and net greenhouse effect in simulated constructed wetlands
作者: 刘阳; 李丹; 孙红英; 杨国福; 陈正新; 范星; 葛滢; 常杰
刊名: 生态学杂志
ISSN: 1000-4890
出版年: 2015
卷: 34, 期:8, 页码:1632-1638
语种: 中文
中文关键词: 生物多样性 ; 温室气体 ; 净化效果 ; 生物能源
英文关键词: biodiversity ; greenhouse gas ; purification efficiency ; biofuel
WOS学科分类: ENVIRONMENTAL SCIENCES
WOS研究方向: Environmental Sciences & Ecology
中文摘要: 用水培微宇宙模拟人工湿地,研究植物丰富度对系统氮去除的影响,并整合多项功能评估系统净温室效应。选择水芹(Oenanthe javanica) 、羊蹄(Rumex japonicus) 、虉草(Phalaris arundinacea)和吉祥草(Reineckia carnea) 4个物种,进行单种及混种2个处理,供给以硝氮(NO_3~- -N)为唯一氮形态的模拟污水。结果表明:混种系统出水氮浓度显著低于单种系统,即高丰富度具有更高氮去除效率;混种系统的地上和总生物量显著高于单种系统;在单种系统中反硝化是最主要的氮去除途径,而混种系统主要通过增强植物吸收提高净化效率;混种系统比单种系统排放更多的CH_4和N_2O;混种提高了生物量,如果这些植物用于生物燃料则相当于强化了CO_2减排潜力;综合CO_2、CH_4和N_2O,提高植物丰富度会显著降低系统净增温潜力(GWP) 。
英文摘要: Hydroponic microcosms of constructed wetlands were used to study the effects of plant species richness on nitrogen removal and some other ecosystem functions. Multiple functions were integrated to assess the net greenhouse effect in response to plant diversity. Microcosms with mono-and mixed culture of four plant species(Oenanthe javanica,Rumex japonicus,Phalaris arundinacea,Reineckia carnea) were established and supplied regularly with simulated wastewater in which nitrate(NO_3~- -N) was the sole nitrogen form. Results showed that the effluent inorganic nitrogen concentration was significantly lower in the mixed microcosms than in the monocultures,indicating that high plant species richness enhanced the nitrogen removal efficiency. The aboveground and total biomass in the mixed microcosms were higher than those in the monocultures. Denitrification was the major contributor to nitrogen removal in the monocultures, while plant nitrogen uptake was the major contributor in the mixed microcosms. Microcosms with mixed planting of four species had higher CH_4 and N_2O emissions. However,high species richness could enhance the reduction in CO_2 emission through enhancing plant biomass,which could be used as biofuel to replace the fossil fuels. After synthesizing CO_2,CH_4 and N_2O emissions, we found that high plant species richness reduced the net global warming potential(GWP) of the systems.
资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/149902
Appears in Collections:气候变化与战略

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作者单位: 浙江大学生命科学学院, 杭州, 浙江 310058, 中国

Recommended Citation:
刘阳,李丹,孙红英,等. 模拟人工湿地植物丰富度对硝氮去除及净温室效应的影响[J]. 生态学杂志,2015-01-01,34(8):1632-1638
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