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Long-term Conservation Tillage Effect on Soil Organic Carbon and Available Phosphorous Content in Vertisols of Central India

机译:长期保护性耕作对印度中部植被中土壤有机碳和有效磷含量的影响

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Efficient nutrient management in conservation tillage is one of the major concerns in vertisols as residue retention on soil surface and reduction in tillage operation can have a major impact on nutrient dynamics and stratification. The present studyexamined profile distribution of soil organic carbon (SOC) and available phosphorous under long-term (12 years) imposition of four different tillage systems, namely conventional tillage (CT), mouldboard tillage (MB), reduced tillage (RT), no tillage (NT)and three nitrogen levels, viz. N50%, N10u% and N150%. In 0- to 5-cm soil layer, highest and lowest SOC was observed in NT (8.8 g kg-1) and CT (5.9 g kg-1), whereas in 5- to 15-cm soil layer, higher SOC was observed in MB. The stratification ratio of SOC was higher in NT (2.20) followed by RT (1.93), MB (1.68) and CT (1.51). Higher available phosphorous concentration (12.8 g kg-1) was recorded in NT with N50% followed by NT with N10o%-Over the year, no significant effect of tillage on soybean and wheatyield was observed. However, effect of N level on yield was significant. Overall, conservation tillage practice imposed no penalty on yield of soybean-wheat system, while it saved energy and time by reducing the number of tillage operations.
机译:保护性耕作中有效的养分管理是杂粮种植中的主要问题之一,因为残留物残留在土壤表面和耕作减少会严重影响养分动态和分层。本研究研究了长期耕作(12年)施加的四种不同耕作制度下土壤有机碳(SOC)和有效磷的分布特征,即传统耕作(CT),翻板耕作(MB),减少耕作(RT),耕作(NT)和三个氮水平,即N50%,N10u%和N150%。在0至5厘米土壤层中,在NT(8.8 g kg-1)和CT(5.9 g kg-1)中观察到最高和最低SOC,而在5至15 cm土壤层中观察到更高的SOC以MB为单位。 SOC的分层率在NT(2.20)中更高,其次是RT(1.93),MB(1.68)和CT(1.51)。一年中,在N50%,其次为N100%的NT中记录到较高的有效磷浓度(12.8 g kg-1),未观察到耕作对大豆和小麦产量的显着影响。但是,氮水平对产量的影响是显着的。总体而言,保护性耕作实践不会对大豆/小麦系统的产量造成任何不利影响,同时它通过减少耕种操作的次数来节省能源和时间。

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