Dissolved Organic Matter of Chernozems of Different Use: the Relationship of Structural Features and Mineral Composition

N. A. Kulikova, V. A. Kholodov, Y. R. Farkhadov, A. R. Ziganshina, A. G. Zavarzina, M. M. Karpukhin
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Abstract

Structural peculiarities of the organic component of dissolved organic matter (DOM) of typical chernozems (Protocalcic Chernozem), differing in the principal direction of soil organic matter transformation (accumulation or mineralization), were analyzed in relation to the mineral composition of DOM. Spectrometry in the ultraviolet and visible range and fluorescence spectroscopy were applied to characterize the structural features of the organic component. These approaches are most often used for these purposes due to the rapidity and accessibility of instruments. The content of mineral elements (Al, B, Ba, Ca, Fe, K, Li, Mg, Mn, Na, P, S, Si, and Zn) was determined by optical emission spectrometry with inductively coupled plasma. It has been revealed that DOM of plowed chernozems, where mineralization is the leading process of organic matter transformation, is characterized by increased indices E2/E3, BIX, and SUVA254, which indicates a smaller molecular mass (MM) and a greater contribution of organic matter of microbial origin and of aromatic structures to the composition of DOM as compared to soils not involved in agricultural use. The analysis of the mineral component has shown that Si and Ca are the main elements in DOM. The involvement of chernozems in agricultural use results in a decrease in Ca content and in an increase in Si, Fe, and Al content, which reflects greater weathering of the mineral matrix of chernozems. The rank correlation analysis has revealed significant relationships between the structural characteristics of DOM (E2/E3, SUVA254, MM, BIX, and T) and the content of mineral elements (Ca, Al, Fe, and Si), which testifies to the influence of weathering processes on the formation of soil DOM.

Abstract Image

不同用途的切尔诺泽姆的溶解有机物:结构特征与矿物组成的关系
摘要 结合溶解有机物(DOM)的矿物成分,分析了典型切尔诺泽姆(Protocalcic Chernozem)溶解有机物(DOM)中有机成分的结构特征,这些有机成分在土壤有机物转化(积累或矿化)的主要方向上有所不同。应用紫外线和可见光谱以及荧光光谱分析了有机成分的结构特征。由于仪器的快速性和易用性,这些方法最常用于上述目的。矿物元素(Al、B、Ba、Ca、Fe、K、Li、Mg、Mn、Na、P、S、Si 和 Zn)的含量是通过电感耦合等离子体光学发射光谱法测定的。结果表明,耕地中的 DOM(矿化是有机物转化的主要过程)的特征是 E2/E3、BIX 和 SUVA254 指数增加,这表明与未参与农业用途的土壤相比,DOM 的分子质量(MM)较小,微生物来源的有机物和芳香结构的有机物对 DOM 的组成贡献较大。矿物成分分析表明,硅和钙是 DOM 的主要元素。钙含量降低,而硅、铁和铝含量增加,这反映了钙矿物质基质的风化程度加剧。秩相关分析表明,DOM 的结构特征(E2/E3、SUVA254、MM、BIX 和 T)与矿物元素(钙、铝、铁和硅)含量之间存在显著关系,这证明了风化过程对土壤 DOM 形成的影响。
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