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首页> 外文期刊>Journal of plant nutrition and soil science >Cation binding in a soil with low exchange capacity: Implication for the structural rigidity of soil organic matter
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Cation binding in a soil with low exchange capacity: Implication for the structural rigidity of soil organic matter

机译:交换能力低的土壤中的阳离子结合:土壤有机质结构刚性的含义

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摘要

Two previous studies suggested that part of the cation sorption sites in soil organic matter with low exchange capacity have to be considered as lonely, i.e., too far from each other to allow direct cross-linking by bivalent cations. The objective of this contribution was to understand the mechanisms controlling structural rigidity and physicochemical aging of the SOM (soil organic matter) and the role of water molecule bridges (WaMB) therein. For this, we evaluated the matrix rigidity of an organic surface layer of a Haplic Podzol on a quantitative basis, by assessing WaMB transition temperature (T*) directly after treatment with bivalent cations (Mg2+, Ca2+, or Ba2+) and after eight weeks of aging. Cation loading as well as cation type influenced matrix rigidity. Ba2+ induced the most rigid matrix and Mg2+ the weakest, which is in line with their binding strength in terms of Langmuir coefficient. The matrix rigidity increased with the cross-linking activity, which is the product of loading and Langmuir constant of the respective cation. The aging process, however, was slowed down by the initial matrix rigidity, and the rigidity of the aged matrix decreased with increasing Langmuir constant. The degree of aging increased with increasing hydration enthalpy of the cation and decreased with increasing cation loading. Thus, directly after cation treatment, direct cross-links by multivalent cations were most relevant, but WaMB increasingly gained influence on the matrix rigidity during aging. The untreated sample revealed a considerable number of WaMB, resulting in a fairly rigid and strongly cross-linked matrix which, however, flexibly reacts on external influences like change in cation concentration or relative humidity. With these findings, the ideas on the relevance of indirect CaB-WaMB associations between distant sorption sites for the rigidity and flexibility of the OM matrix as proposed in previous studies were confirmed on a mechanistic basis in this study.
机译:前两项研究表明,具有低交换能力的土壤有机质中的部分阳离子吸附位点必须被视为孤独,即,彼此太远,以便通过二价阳离子直接交联。本贡献的目的是了解控制SOM(土壤有机物)的结构刚性和物理化学老化的机制以及其中的水分子桥(WAMB)的作用。为此,通过在用二价阳离子(Mg2 +,Ca2 +或Ba2 +)处理后直接评估WAMP转变温度(T *)和8周后,通过评估WAMP转变温度(T *)和在8周后进行定量基础,评估了单级泊唑的有机表面层的基质刚度。老化。阳离子负荷以及阳离子型影响基质刚性。 Ba2 +诱导最刚性的基质和Mg2 +最弱的基质,这在Langmuir系数方面符合它们的结合强度。基质刚性随着交联活性的增加,这是各阳离子的负载和朗美常数的产物。然而,通过初始基质刚性减慢了衰老过程,随着朗美常数的增加,老化基质的刚性降低。随着阳离子的水合焓增加,随着阳离子负荷增加而降低,衰老程度增加。因此,直接在阳离处理后,多价阳离子的直接交联是最相关的,但常年越来越多地对老化的基质刚性影响。未处理的样品揭示了相当数量的鲍曼,导致相当刚性和强烈交联的基质,然而,在阳离子浓度或相对湿度的变化等外部影响的外部影响方面灵活地反应。通过这些发现,根据本研究的机制基础确认了关于在先前研究中提出的遥远吸附位点之间的间接吸附位点与om矩阵的刚性和灵活性之间的关联的思路。

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