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首页> 外文期刊>Journal of plant nutrition and soil science >Explaining soil organic matter composition based on associations between OM and polyvalent cations
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Explaining soil organic matter composition based on associations between OM and polyvalent cations

机译:基于OM和多价阳离子的关联解释土壤有机质组合物

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摘要

Site conditions and soil management determine the content and the composition of soil organic matter (SOM). Organic matter (OM) is characterized by functional groups, which preferentially interact with polyvalent cations and soil minerals. These interactions could perhaps explain the site-specific composition of bulk SOM and a pyrophosphate-soluble OM fraction (OM-PY) using basic soil properties. The objective of this study was to test a simplified model for the interactions between OM and polyvalent cations (i.e., Ca, Mg, Al, Fe, and Mn) by using data from soils from long-term field experiments. The model considered (1) OM-cation, (2) OM-cation-mineral, and (3) OM-mineral associations and assumed that the availability of the cation's coordination sites for the interaction with OM depends on these three types of associations. The test was carried out using data (topsoil) from differently fertilized plots from three long-term field experiments (Halle, Bad Lauchstadt, Rotthalmunster). The composition of SOM and OM-PY was characterized by the relationship of the ratio of the C=O (i.e., here indicating both carbonylic and carboxylic groups) versus C-O-C absorption band intensities obtained from the Fourier transform infrared (FTIR) spectra with the content of exchangeable, oxalate-, and dithionite-extractable polyvalent cations. The assumed associations between the OM and cations and the availability of the coordination sites explained most of the variations in the C=O/C-O-C ratios of the SOM, and fewer variations in the OM-PY, when using the site-specific exchangeable and oxalate-extractable cation contents. The C=O/C-O-C ratios of the OM-PY were site-independent for samples from plots that regularly received farmyard manure. The results suggested that a simplified model that considers the polyvalent cation content weighted by the number of coordination sites per cation according to the type of association could be used to improve the explanation of site-specific differences in the OM composition of arable soils.
机译:现场条件和土壤管理决定了土壤有机物的含量和组成(SOM)。有机物(OM)的特征在于官能团,其优先与多元阳离子和土壤矿物相互作用。这些相互作用可能可能使用基本土壤性质解释散装SOM的特异性特异性组成和焦磷酸盐 - 可溶性OM分数(OM-PY)。本研究的目的是通过使用来自长期现场实验的土壤的数据来测试OM和多价阳离子(即,Ca,Mg,Al,Fe和Mn)之间的相互作用的简化模型。所考虑的模型(1)Om-Cation,(2)oM-阳离子 - 矿物质,和(3)om-矿物协会,并假设阳离子与OM互动的协调场所的可用性取决于这三种类型的协会。使用来自三个长期场实验(Halle,Bad Lauchstadt,Tolthalmster)的不同受精地块的数据(表土)进行测试。 SOM和OM-PY的组成特征在于C = O的比率(即,这里表明羰基和羧基的比率)与从傅里叶变换红外(FTIR)谱获得的COC吸收带强度与内容的关系可交换,草酸盐和二硫代钛矿可提取的多价阳离子。 OM和阳离子之间的假定关联以及协调站点的可用性解释了SOM的C = O / COC比率的大部分变化,并且在使用基本特定的可互换和草原时,OM-PY的变化较少 - 伸展剂阳离子内容物。 OM-PY的C = O / C-O-C比对于来自地图的样本是无关的,该样本是定期接受农家粪便的地图。结果表明,根据关联类型的协调类型的协调位点数重量的重量阳离子含量的简化模型可用于改善植物土壤的OM组成的特异性差异的解释。

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