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首页> 外文期刊>Agricultural and Forest Meteorology >The quantitative impact of different leaf temperature determination on computed values of stomatal conductance and internal CO2 concentrations
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The quantitative impact of different leaf temperature determination on computed values of stomatal conductance and internal CO2 concentrations

机译:不同叶温测定对气孔电导和内部二氧化碳浓度计算值的定量影响

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摘要

The LI-COR 6400 portable photosynthesis system is the most widely used and cited instrument for measuring leaf gas exchange in plant physiology. The focus of this paper is to evaluate three ways of computing/measuring leaf temperature: the LI-COR energy budget computation, the LI-COR leaf thermocouple (T/C), and an infra-red (IR) sensor chip (MLX90615) incorporated into the LI-6400 leaf chamber. The IR-sensor was calibrated against known targets, and then used to cross check the other two methods. The results showed that the IR-sensor was superior to the LI-COR thermocouple and agreed closer with the energy budget values of leaf temperature. The magnitudes of the errors were quantified in terms of degrees C difference in leaf temperature measured by T/C (as control) and IR sensor versus percentage difference in stomatal conductance (g(s)) and intercellular CO2 concentration (C-i) computed from leaf temperature. The temperature difference (IR versus other methods) in the range of -1.89 to 1.58 degrees C resulted in relative errors in g(s) from 14.7% to -18.0% and C-i from 16.5% to -7.8% of the values reported by the standard LI-6400 calculations depending on species and temperature. Reasons are given for trusting the IR-sensor over the other methods and it is suggested that the next generation LI-COR photosynthesis system include an IR-sensor.
机译:Li-Cor 6400便携式光合系统是最广泛使用和引用的植物生理学中的叶片气体交换仪器。本文的重点是评估三种计算/测量叶片温度:Li-Cor能量预算计算,Li-Cor叶热电偶(T / C)和红外线(IR)传感器芯片(MLX90615)纳入Li-6400叶室。 IR-传感器针对已知靶标校准,然后用于交叉检查其他两种方法。结果表明,IR-Sensor优于Li-Cor热电偶,并与叶温的能量预算值相同。误差的幅度在通过T / C(作为对照)测量的叶温差异(作为对照)和IR传感器与从叶片计算的气孔导率(g(s))和细胞间CO 2浓度(CI)的百分比差异进行量化温度。 -1.89至1.58℃范围内的温差(IR与其他方法)导致G(s)中的相对误差为14.7%至-18.0%,CI为16.5%至-7.8%的值。标准LI-6400计算根据物种和温度。给出了对其他方法信任IR-Sensor的原因,并且建议下一代Li-COR光合作用系统包括IR传感器。

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