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Dielectric and conductivity studies of the hydration mechanisms in plant seeds.

机译:植物种子水合机理的介电和电导率研究。

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摘要

The hydration mechanism of various plant seeds has been investigated by a) sorption-desorption isotherms, b) ac-dielectric spectroscopy in the 10 Hz to 1 GHz frequency range and the -80 to + 40 degrees C temperature range, and c) thermally stimulated depolarization current techniques in the -170 to + 23 degrees C temperature range. Seeds of different chemical composition were studied at water contents varying between 0 and 40% w/w (dry weight basis). Our experimental results permitted us to determine i) the diffusion constant of water in the samples, found to be between 1.4 x 10(-11) and 3.7 x 10(-11) m2/s; ii) a critical water content corresponding to the completion of the primary hydration layer, which is in the range 0.11-0.17 w/w, depending on the seed nature; and iii) the activation energy of the main relaxation mechanism, found to be equal to 0.54 +/- 0.05 eV. Moreover, they make it possible to investigate the dependence of various parameters (conductivity, molecular mobility, plasticizing effect of water) on the water content of the sample, to follow the crystallization of water in the seeds as a function of temperature and confirm that it is not a reversible process, to study the dehydration process as a function of temperature and time, and to propose an alternative technique for the determination of the moisture content in seeds.
机译:通过以下方法研究了各种植物种子的水合机理:a)吸附-解吸等温线,b)在10 Hz至1 GHz频率范围和-80至+ 40℃温度范围内的交流介电谱,以及c)热刺激-170至+ 23摄氏度温度范围内的去极化电流技术。研究了不同化学组成的种子,其含水量为0至40%w / w(以干重计)。我们的实验结果使我们能够确定:i)水在样品中的扩散常数,发现在1.4 x 10(-11)和3.7 x 10(-11)m2 / s之间; ii)取决于初级水化层完成的临界水含量,其范围在0.11-0.17 w / w之间,具体取决于种子的性质; iii)主要弛豫机制的活化能,等于0.54 +/- 0.05 eV。此外,他们还可以研究各种参数(电导率,分子迁移率,水的增塑效果)对样品中水分的依赖性,从而跟踪种子中水的结晶随温度的变化并确认不可逆过程,研究脱水过程随温度和时间的变化,并提出另一种测定种子中水分的技术。

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