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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Influence of the sample history and the moisture status on the thermal behavior of soil organic matter
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Influence of the sample history and the moisture status on the thermal behavior of soil organic matter

机译:采样历史和水分状况对土壤有机质热行为的影响

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Recent studies indicate that glassiness represents a characteristic feature of soil organic matter (SOM). It is however unknown, to which extent the transitions detected in humic substances and whole soil samples correspond to common models of synthetic polymers providing the theoretical basis for explaining their glass transition characteristics. Physical aging associated with structural relaxation of amorphous substances below their glass temperature is one fundamental basis for the glass transition behavior of synthetic polymers. According to the results of this study, aging processes also occur in SOM. In whole soil samples, this process can be observed by the shift of glass transition-like step transitions to higher temperatures within the time scale of years. Not only the structural relaxation of the macromolecular organic substances, but also interactions with water molecules, which may exhibit both plasticizing and antiplasticizing properties, influence the aging process of SOM. Especially under moistening or drying conditions, a differentiation between the effects of water and of alterations of the SOM structure in the course of time on the rigidity of the macromolecular network is difficult. (c) 2006 Elsevier Inc. All rights reserved.
机译:最近的研究表明,玻璃度代表了土壤有机质(SOM)的特征。但是,在腐殖质和整个土壤样品中检测到的转变在多大程度上与合成聚合物的通用模型相对应,这为解释其玻璃化转变特性提供了理论基础是未知的。与非晶态物质在其玻璃温度以下的结构松弛相关的物理老化是合成聚合物的玻璃化转变行为的基本基础之一。根据这项研究的结果,SOM中也会发生老化过程。在整个土壤样品中,可以通过在几年的时间范围内将类似玻璃化转变的阶跃转变转变为更高的温度来观察此过程。不仅大分子有机物质的结构松弛,而且与水分子的相互作用(可能同时具有增塑和抗增塑性能)都会影响SOM的老化过程。尤其是在潮湿或干燥条件下,很难区分水的影响和随时间变化的SOM结构对高分子网络刚度的影响。 (c)2006 Elsevier Inc.保留所有权利。

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