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Sensitivity of infrared water vapor analyzers to oxygen concentration and errors in stomatal conductance

机译:红外水蒸气分析仪对氧气浓度和气孔电导率误差的敏感性

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Use of infrared analyzers to measure water vapor concentrations in photosynthesis systems is becoming common. It is known that sensitivity of infrared carbon dioxide and water vapor analyzers is affected by the oxygen concentration in the background gas, particularly for absolute analyzers, but the potential for large errors in estimates of stomatal conductance due to effects of oxygen concentration on the sensitivity of infrared water vapor analyzers is not widely recognized. This work tested three types of infrared water vapor analyzers for changes in sensitivity of infrared water vapor analyzers depending on the oxygen content of the background gas. It was found that changing from either 0 or 2% to 21% oxygen in nitrogen decreased the sensitivity to water vapor for all three types of infrared water vapor analyzers by about 4%. The change in sensitivity was linear with oxygen mole fraction. The resulting error in calculated stomatal conductance would depend strongly on the leaf to air vapor pressure difference and leaf temperature, and also on whether leaf temperature was directly measured or calculated from energy balance. Examples of measurements of gas exchange on soybean leaves under glasshouse conditions indicated that changing from 21% to 2% oxygen produced an artifactual apparent increase in stomatal conductance which averaged about 30%. Similar errors occurred for `conductances' of wet filter paper. Such errors could affect inferences about the carbon dioxide dependence of the sensitivity of photosynthesis to oxygen.
机译:使用红外分析仪来测量光合作用系统中的水蒸气浓度变得越来越普遍。众所周知,红外二氧化碳和水蒸气分析仪的灵敏度会受到背景气体中氧气浓度的影响,尤其是对于绝对分析仪而言,但是由于氧气浓度对气孔电导率的影响,在气孔电导率估算中可能存在较大误差。红外水蒸气分析仪尚未得到广泛认可。这项工作测试了三种类型的红外水蒸气分析仪,以根据背景气体中的氧气含量改变红外水蒸气分析仪的灵敏度。已经发现,将氮气中的氧气从0或2%更改为21%会使所有三种类型的红外水蒸气分析仪对水蒸气的灵敏度降低约4%。灵敏度的变化与氧摩尔分数成线性关系。计算出的气孔导度的结果误差在很大程度上取决于叶片与空气的蒸汽压差和叶片温度,以及叶片温度是直接测量还是根据能量平衡计算得出。在温室条件下对大豆叶片上的气体交换进行测量的示例表明,将氧气从21%变为2%会导致气孔电导率的人为表观增加,平均约为30%。湿滤纸的“电导”也发生了类似的错误。这种错误可能会影响有关光合作用对氧气的二氧化碳依赖性的推断。

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