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Biogeochemistry characteristics of nitrogen in unsaturated soils of Jinghuiqu irrigation district

机译:井回渠灌区非饱和土壤中氮的生物地球化学特征

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Biogeochemistry characteristics of an unsaturated zone in Jinghuiqu irrigation district of China was studied to analyze the predominant interacting factors of nitrogen concentration and transformation in the vadose zone under long term flood irrigation using river water and groundwater sources alternatively. The site was instrumented for soil sampling at various depths above the groundwater table at 4 meters below the soil surface. The measured concentrations of the biogeochemicals (TN, N-NO3−, N-NH4+, and several microorganisms) showed that there exist “active” and “inactive” layers in the profile, which were distinguished by the combined amount of clay and silt particles in the soil. Most parameter values increase sharply in the “active” layers and decrease sharply in the “inactive” layers. In the active zone, the N-NO3− was concentrated and more transformed by microorganisms. All the N concentrations, in NNO3−, N-NH4+ and TN, were mainly affected by the amounts of organic matter and microorganisms.
机译:研究了京水渠灌区非饱和带的生物地球化学特征,分析了长期洪水灌溉下河水和地下水源交替作用下渗流区氮浓度和氮素转化的主要相互作用因素。在土壤表面以下4米的地下水位以上不同深度处,对现场进行了仪器采样。生物地球化学物质(TN,N-NO 3 -,N-NH 4 + 和几种微生物)表明剖面中存在“活动”和“非活动”层,其特征是土壤中粘土和淤泥颗粒的总量不同。大多数参数值在“活动”层中急剧增加,而在“非活动”层中急剧减少。在活性区中,N-NO 3 -被浓缩并被微生物进一步转化。 NNO 3 -,N-NH 4 + 和TN中的所有N浓度主要受以下因素影响有机物和微生物的数量。

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