A Rapid Laser Probing Method Facilitates the Non-invasive and Contact-free Determination of Leaf Thermal Properties.

Johannes F Buyel, Hannah M Gruchow, Martin Wehner
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Abstract

Plants can produce valuable substances such as secondary metabolites and recombinant proteins. The purification of the latter from plant biomass can be streamlined by heat treatment (blanching). A blanching apparatus can be designed more precisely if the thermal properties of the leaves are known in detail, i.e., the specific heat capacity and thermal conductivity. The measurement of these properties is time consuming and labor intensive, and usually requires invasive methods that contact the sample directly. This can reduce the product yield and may be incompatible with containment requirements, e.g., in the context of good manufacturing practice. To address these issues, a non-invasive, contact-free method was developed that determines the specific heat capacity and thermal conductivity of an intact plant leaf in about one minute. The method involves the application of a short laser pulse of defined length and intensity to a small area of the leaf sample, causing a temperature increase that is measured using a near infrared sensor. The temperature increase is combined with known leaf properties (thickness and density) to determine the specific heat capacity. The thermal conductivity is then calculated based on the profile of the subsequent temperature decline, taking thermal radiation and convective heat transfer into account. The associated calculations and critical aspects of sample handling are discussed.

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快速激光探测法有助于非侵入式和非接触式测定叶片热特性。
植物可以产生有价值的物质,如次级代谢产物和重组蛋白质。通过热处理(焯水)可以简化从植物生物质中提纯后者的过程。如果能详细了解叶片的热特性,即比热容和热传导率,就能更精确地设计焯水设备。这些特性的测量耗时耗力,通常需要采用直接接触样品的侵入式方法。这可能会降低产品产量,而且可能不符合封闭性要求,例如在良好生产规范的背景下。为解决这些问题,我们开发了一种非侵入性、非接触式方法,可在一分钟内测定完整植物叶片的比热容和导热率。该方法是在叶片样本的一小块区域上施加一个规定长度和强度的短激光脉冲,导致温度上升,然后使用近红外传感器测量温度。温度升高与已知的叶片特性(厚度和密度)相结合,确定比热容。然后根据随后的温度下降曲线计算热导率,同时考虑热辐射和对流传热。讨论了相关计算和样品处理的关键问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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A Rapid Laser Probing Method Facilitates the Non-invasive and Contact-free Determination of Leaf Thermal Properties. Point-light facial displays enhance comprehension of speech in noise. Establishing the validity of recovery from stuttering without formal treatment. Role of F0 and amplitude in the perception of intervocalic glottal stops. Tactile perception of spatial stimuli on the lip surface by young and older adults.
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