首页> 外文期刊>Journal of plant nutrition and soil science >Soil organic-carbon and total nitrogen stocks as affected by different land uses in Baden-Württemberg (southwest Germany)
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Soil organic-carbon and total nitrogen stocks as affected by different land uses in Baden-Württemberg (southwest Germany)

机译:巴登符腾堡州(德国西南部)不同土地利用方式对土壤有机碳和总氮储量的影响

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Regional direct field measurements of potential response of soil organic-carbon (SOC) and total nitrogen (TN) stocks to different land uses is of great importance for the development of best-management practices with respect to SOC and TN accumulation in soils of Baden-Württemberg, SW Germany. This study was conducted to evaluate the effects of plow tillage (PT), reduced tillage (RT), and grassland (GL) on soil organic-C and TN stocks in surface soils. Soils samples from 13 sites of adjacent paired PT, RT, and GL were taken at depths of 0-5, 5-10, and 10-20 cm throughout Baden-Württemberg. Averaged over the 13 sites, GL had significantly higher SOC concentrations in the 0-5 cm layer and significantly higher TN concentrations in the 0-5 and 5-10 cm layers, compared with soils under PT. Soils under RT tended to have higher SOC concentrations in the 0-5 and 5-10 cm layers and higher TN concentrations at all the three depths, compared with soils under PT. Grassland contained significantly higher SOC and TN stocks than soils under PT in the 0-5 and 5-10 cm layers. Soils under RT tended to have higher SOC and TN stocks than soils under PT in all the three layers. Grassland contained 44.5% (14.75 Mg C ha-1) more SOC and 43.5% (1.58 Mg N ha-1) more TN stocks than soils under PT, and soils under RT contained 7.3% (2.7 Mg C ha-1) more SOC and 7.9% (0.29 Mg N ha-1) more TN stocks than soils under PT in the 0-20 cm depth interval, respectively. We estimated that GL accumulated an average 1.27 Mg C ha-1 y-1 and 0.129 Mg N ha-1 y-1 more than soils under PT over an average period of 11 y, whereas soils under RT accumulated 0.32 Mg C ha-1 y-1 and 0.033 Mg N ha-1 y-1 relative to soils under PT in the top 20 cm, respectively. The outcomes of this study are significant for the assessment of C and N sequestration forecasting of land-use management associated with grassland and reduced tillage in SW Germany.
机译:区域直接测量土壤有机碳(SOC)和总氮(TN)储量对不同土地利用的潜在响应,对于发展最佳管理实践,对巴登州土壤中的SOC和TN积累具有重要意义。德国西南部符腾堡州。进行这项研究以评估耕作(PT),减耕(RT)和草地(GL)对表层土壤中有机碳和TN储量的影响。在巴登-符腾堡州的0-5、5-10和10-20 cm深度处,从相邻的成对的PT,RT和GL的13个站点取样。与PT下的土壤相比,GL在13个站点上的平均值平均在0-5 cm层中的SOC浓度显着较高,在0-5和5-10 cm层中的TN浓度显着较高。与PT下的土壤相比,RT下的土壤在0-5和5-10 cm层倾向于具有较高的SOC浓度,并且在所有三个深度上都具有较高的TN浓度。在PT和0-5和5-10 cm的土壤中,草原的SOC和TN储量明显高于PT下的土壤。在三层中,RT下的土壤的SOC和TN储量往往都比PT下的土壤高。草原上的土壤有机碳含量比PT下土壤高44.5%(14.75 Mg C ha-1),总氮含量高43.5%(1.58 Mg N ha-1),而在RT下土壤的SOC高7.3%(2.7 Mg C ha-1)。在0-20 cm深度区间内,TN储量分别比PT下的土壤多7.9%(0.29 Mg N ha-1)。我们估计,在平均11年的时间里,GL比PT下的土壤平均多积累1.27 Mg C ha-1 y-1和0.129 Mg N ha-1 y-1,而RT下的土壤平均积累0.32 Mg C ha-1 y-1和0.033 Mg N ha-1 y-1相对于PT下顶部20 cm的土壤。这项研究的结果对于评估德国西南部与草地和减少耕种相关的土地利用管理的碳和氮固存预测具有重要意义。

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