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自然状态下树木排放N2O的研究
摘要点击 1131  全文点击 1178  投稿时间:2000-12-04  
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中文关键词  N2O  阔叶红松林  林冠  大气环境
英文关键词  N2O  coniferousdeciduous mixed forest  canopy  atmosphere
作者单位
徐慧 中国科学院沈阳应用生态研究所陆地生态系统痕量物质生态过程开放实验室,沈阳110015 
张秀君 中国科学院沈阳应用生态研究所陆地生态系统痕量物质生态过程开放实验室,沈阳110015 
韩士杰 中国科学院沈阳应用生态研究所陆地生态系统痕量物质生态过程开放实验室,沈阳110015 
王营 中国科学院沈阳应用生态研究所陆地生态系统痕量物质生态过程开放实验室,沈阳110015 
陈冠雄 中国科学院沈阳应用生态研究所陆地生态系统痕量物质生态过程开放实验室,沈阳110015 
中文摘要
      大气中主要温室气体之一N2O的部分来源尚不清楚,以前认为只有土壤微生物过程是N2O的生物源,本文则旨在证明自然状态下植物也是N2O的排放源.采用同步空气样品采集装置和气相色谱仪观测了长白山阔叶红松林内空气N2O的垂直分布特征,发现林冠或其附近处出现高N2O浓度,高N2O浓度比同一时刻其他高度处的正常N2O浓度高3.03%~64.9%,差异显著或极显著.在林冠高度处的高N2O浓度和树干高度处的正常N2O浓度同时存在的现象证明了植物向外排放N2O,即植物自身在自然状态下是N2O的一个排放源.
英文摘要
      The sources of N2O, one of the major greenhouse gases in the atmosphere, are still unclear till now. It was previously thought that only soil microbial process produced N2O. The aim of this study was to provide evidences that plant can emit N2O under the natural condition. The measurement of aboveground vertical profiles of N2O concentrations were conducted within coniferous deciduous mixed forests in Changbai Mountain, China. Significant high N2O concentrations were found at or near the height of canopy. High concentrations in profiles were 3.03% to 649% higher than the “normal concentrations". Differences between the high concentrations and the “normal concentrations" were statistically significant. The simultaneous occurrence of high concentrations at/nearby the canopy height and normal concentrations at the trunk space height indicated an efflux of N2O from foliage to atmosphere. This study afforded evidences supporting that plant per se, besides forest soil, was an important source of atmospheric N2O in a forest ecosystem.

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