State Key Laboratory of Urban and Regional Ecology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, PR China.
Environ Pollut. 2011 Aug-Sep;159(8-9):2127-37. doi: 10.1016/j.envpol.2011.02.031. Epub 2011 Mar 15.
Transpiration rates of six urban tree species in Beijing evaluated by thermal dissipation method for one year were correlated to environmental variables in heat, water, and pollutant groups. To sort out colinearity of the explanatory variables, their individual and joint contributions to variance of tree transpiration were determined by the variation and hierarchical partitioning methods. Majority of the variance in transpiration rates was associated with joint effects of variables in heat and water groups and variance due to individual effects of explanatory group were in comparison small. Atmospheric pollutants exerted only minor effects on tree transpiration. Daily transpiration rate was most affected by air temperature, soil temperature, total radiation, vapor pressure deficit, and ozone. Relative humidity would replace soil temperature when factors influencing hourly transpiration rate was considered.
采用热消散法测定了北京六种城市树种一年的蒸腾速率,将其与热、水和污染物组中的环境变量相关联。为了理清解释变量的共线性,采用变异和层次划分方法确定了它们对树木蒸腾作用的单独和联合贡献。蒸腾速率的大部分方差与热和水组变量的联合效应有关,而解释组的个别变量的方差则相对较小。大气污染物对树木蒸腾作用的影响较小。日蒸腾速率受空气温度、土壤温度、总辐射、水汽压亏缺和臭氧的影响最大。考虑到影响小时蒸腾速率的因素时,相对湿度将取代土壤温度。