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Reduction of molecular gas diffusion through gaskets in leaf gas exchange cuvettes by leaf‐mediated pores

机译:通过叶介导的孔隙减少通过叶子气体交换比色皿中的垫圈的分子气体扩散

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摘要

There is an ongoing debate on how to correct leaf gas exchange measurements for the unavoidable diffusion leakage that occurs when measurements are done in non‐ambient CO2 concentrations. In this study, we present a theory on how the CO2 diffusion gradient over the gasket is affected by leaf‐mediated pores (LMP) and how LMP reduce diffusive exchange across the gaskets. Recent discussions have so far neglected the processes in the quasi‐laminar boundary layer around the gasket. Counter intuitively, LMP reduce the leakage through gaskets, which can be explained by assuming that the boundary layer at the exterior of the cuvette is enriched with air from the inside of the cuvette. The effect can thus be reduced by reducing the boundary layer thickness. The theory clarifies conflicting results from earlier studies. We developed leaf adaptor frames that eliminate LMP during measurements on delicate plant material such as grass leaves with circular cross section, and the effectiveness is shown with respiration measurements on a harp of Deschampsia flexuosa leaves. We conclude that the best solution for measurements with portable photosynthesis systems is to avoid LMP rather than trying to correct for the effects.
机译:关于如何校正在非环境CO2浓度下不可避免的扩散泄漏所引起的叶片气体交换测量,目前正在进行辩论。在这项研究中,我们提出了一种理论,即如何通过叶片介导的孔(LMP)影响垫圈上的CO2扩散梯度,以及LMP如何减少垫圈之间的扩散交换。到目前为止,最近的讨论都忽略了垫圈周围的准层边界层中的过程。与直觉相反,LMP减少了通过垫片的泄漏,这可以通过假设比色杯外部的边界层富含来自比色杯内部的空气来解释。因此,可以通过减小边界层的厚度来减小效果。该理论澄清了早期研究的矛盾结果。我们开发了叶片适配器框架,该框架适配器可以在测量细小植物材料(例如具有圆形横截面的草叶)时消除LMP,并且通过对柔韧性Deschampsia flexuosa叶片的竖琴进行呼吸测量可以证明其有效性。我们得出结论,使用便携式光合作用系统进行测量的最佳解决方案是避免使用LMP,而不是尝试校正影响。

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