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Chemodestructive Fractionation of Soil Organic Matter

机译:土壤有机物化学结构分级

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The method of chemodestructive fractionation is suggested to assess the composition of soil organic matter. This method is based on determination of the resilience of soil organic matter components and/or different parts of organic compounds to the impact of oxidizing agents. For this purpose, a series of solutions with similar concentration of the oxidant (K2Cr2O7), but with linearly increasing oxidative capacity was prepared. Chemodestructive fractionation showed that the portion of easily oxidizable (labile) organic matter in humus horizons of different soil types depends on the conditions of soil formation. It was maximal in hydromorphic soils of the taiga zone and minimal in automorphic soils of the dry steppe zone. The portion of easily oxidizable organic matter in arable soils increased with an increase in the rate of organic fertilizers application. The long-lasting agricultural use of soils and burying of the humus horizons within the upper one-meter layer resulted in the decreasing content of easily oxidizable organic matter. It was found that the portion of easily oxidizable organic matter decreases by the mid-summer or fall in comparison with the spring or early summer period.
机译:建议采用化学结构分级法评估土壤有机质的组成。该方法基于确定土壤有机物组分和/或有机化合物的不同部分对氧化剂的影响的复原力。为此,制备了一系列具有相似浓度的氧化剂(K2Cr2O7),但氧化能力呈线性增加的溶液。化学结构分级显示,在不同土壤类型的腐殖质层中易氧化(不稳定)有机物的比例取决于土壤形成的条件。在针叶林地带的水形土壤中最大,而在干草原地带的自形土壤中最小。耕作土壤中易氧化有机物的比例随着有机肥施用量的增加而增加。农业对土壤的长期使用以及腐殖质层在一米以上的层中的掩埋导致易氧化有机物的含量降低。已发现,与春季或夏季初相比,易氧化的有机物的比例到仲夏或秋季减少。

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