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Non-invasive diagnosis of viability in seeds and lichens by infrared thermography under controlled environmental conditions

机译:在受控环境条件下通过红外热成像技术无创地诊断种子和地衣的活力

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摘要

Design of a purpose-built chamber for IR analysis at controlled conditions of RH and gaseous atmosphere. Schematic representation and RGB image of the chamber. Thermal images were recorded with an IR-camera (FLIR A320) through an IR-transparent ZnS window, which was inclined at an angle of 15° to avoid reflexions. The environmental conditions of the atmosphere inside the chamber were monitored with a temperature and RH probe connected to a data logger, and O concentration was also measured (see " " for specific conditions in each Experiment). Two thermocouples were used to monitor the surface temperature of the rack, and of the liquid water below. An ultrasonic water vaporizer was used to rapidly generate a RH > 98% upon rehydration in the chamber. The water table could be elevated until the filter papers were imbibed from below, directly providing the samples with liquid water. For experiments under anoxia, N gas was flushed through the chamber to replace the air, after humidifying the N by bubbling it through a bottle with deionised water. The dimensions of the chamber were 36 cm length, 30 cm width, 44 cm depth, and 36 × 30 × 30 cm for the bottom part containing the samples. See " " and Additional file for further details
机译:专门设计的反应室,用于在受控的相对湿度和气态条件下进行红外分析。腔室的示意图和RGB图像。用红外照相机(FLIR A320)通过红外透明的ZnS窗口记录热图像,该窗口以15°的角度倾斜以避免反射。用连接到数据记录器的温度和RH探头监测室内的大气环境条件,并测量O浓度(每个实验中的特定条件请参见“”)。使用两个热电偶来监视机架以及下面的液态水的表​​面温度。超声水蒸发器用于在室内再水化后迅速产生RH≥98%。可以升高地下水位,直到从下面吸收滤纸,直接为样品提供液态水。对于缺氧条件下的实验,在通过用去离子水将N2鼓泡加湿N之后,将N 2气体冲洗通过腔室以置换空气。样品室的底部尺寸为36厘米长,30厘米宽,44厘米深,样品底部的尺寸为36××30××30厘米。有关更多详细信息,请参见“和其他文件”

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