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热带人工橡胶林异戊二烯排放通量的模式研究
引用本文:白建辉,Bradly Baker.热带人工橡胶林异戊二烯排放通量的模式研究[J].环境科学学报,2004,24(2):197-203.
作者姓名:白建辉  Bradly Baker
作者单位:1. 中国科学院大气物理研究所中层大气与全球环境探测开放实验室,北京,100029
2. South Dakota School of Mines and Technology,Rapid City,USA 57701
基金项目:国家自然科学基金项目 (40 175 0 31和 4 0 2 1112 0 378),美国国家自然科学基金项目 (0 131785 )
摘    要:2 0 0 2年 7月中旬 (湿季 ) ,我们利用快速异戊二烯系统对云南热带森林异戊二烯的排放通量进行了连续测量 ,同时对其影响因子光合有效辐射、气温、湿度、风等参数进行了观测 .研究表明 ,该地区人工橡胶林异戊二烯的排放有明显的日变化 ,云和降水可以明显减小异戊二烯的排放 .利用光合有效辐射守恒的观点处理与植物异戊二烯排放有关的过程 ,建立了一个计算异戊二烯排放的经验模式 ,计算值与观测值比较接近 .因此 ,以一定的物理原理和对实际大气状况观测资料的分析为基础 ,建立异戊二烯排放模式的方法是可行的 .

关 键 词:异戊二烯  排放通量  光合有效辐射  能量守恒
文章编号:0253-2468(2004)02-0197-07
收稿时间:2003/4/30 0:00:00
修稿时间:2003年4月30日

Model simulation of isoprene emission flux in a tropical forest plantation of rubber trees
BAI Jianhui and Bradly Baker.Model simulation of isoprene emission flux in a tropical forest plantation of rubber trees[J].Acta Scientiae Circumstantiae,2004,24(2):197-203.
Authors:BAI Jianhui and Bradly Baker
Institution:LAGEO, Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing 100029 and South Dakota School of Mines and Technology, Rapid City, USA 57701
Abstract:Continuous measurements on emission flux of isoprene were made by a fast isoprene system in a tropical forest in the middle of July 2002. Other parameters such as photosynthetically active radiation (PAR), air temperature, humidity, wind speed were also measured. The emission flux of isoprene in the rubber trees in wet season showed an obvious diurnal variation, and the clouds and precipitation could evidently decrease the emission flux of isoprene. The main energy processes related to biogenic isoprene emission were considered, according to the point of view of PAR energy transmission and conservation, and an empirical model for isoprene emission flux was established. The results show that the calculated values were close to the observed ones. Therefore, it is practical to build up a model for isoprene emission flux, based on physical principles and analysis of observational data measured under field conditions.
Keywords:isoprene  emission flux  photosynthetically active radiation  energy conservation
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