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臭氧与气候对美国阿巴拉契亚山脉南部森林的水分利用、土壤湿度和溪流流量的交互作用。

Interactive effects of ozone and climate on water use, soil moisture content and streamflow in a southern Appalachian forest in the USA.

作者信息

McLaughlin S B, Wullschleger S D, Sun G, Nosal M

机构信息

Department of Ecology and Evolutionary Biology, University of Tennessee, Knoxville, TN, USA.

Oak Ridge National Laboratory, Environmental Sciences Division, Oak Ridge, TN, USA.

出版信息

New Phytol. 2007;174(1):125-136. doi: 10.1111/j.1469-8137.2007.01970.x.

Abstract
  • Documentation of the degree and direction of effects of ozone on transpiration of canopies of mature forest trees is critically needed to model ozone effects on forest water use and growth in a warmer future climate. * Patterns of sap flow in stems and soil moisture in the rooting zones of mature trees, coupled with late-season streamflow in three forested watersheds in east Tennessee, USA, were analyzed to determine relative influences of ozone and other climatic variables on canopy physiology and streamflow patterns. * Statistically significant increases in whole-tree canopy conductance, depletion of soil moisture in the rooting zone, and reduced late-season streamflow in forested watersheds were detected in response to increasing ambient ozone levels. * Short-term changes in canopy water use and empirically modeled streamflow patterns over a 23-yr observation period suggest that current ambient ozone exposures may exacerbate the frequency and level of negative effects of drought on forest growth and stream health.
摘要

为了模拟在未来气候变暖情况下臭氧对森林水分利用和生长的影响,迫切需要记录臭氧对成熟森林树木冠层蒸腾作用的影响程度和方向。分析了美国田纳西州东部三个森林流域成熟树木茎干中的液流模式和根系区的土壤湿度,并结合季末径流,以确定臭氧和其他气候变量对冠层生理和径流模式的相对影响。研究发现,随着环境臭氧水平的升高,整树冠层导度在统计学上显著增加,根系区土壤水分消耗,森林流域季末径流减少。在23年的观测期内,冠层水分利用的短期变化和根据经验模拟的径流模式表明,当前的环境臭氧暴露可能会加剧干旱对森林生长和溪流健康的负面影响的频率和程度。

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