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首页> 外文期刊>Soil & Tillage Research >Carbon input, loss and storage in sub-tropical Indian Inceptisol under multi-ratooning sugarcane
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Carbon input, loss and storage in sub-tropical Indian Inceptisol under multi-ratooning sugarcane

机译:多云杉甘蔗下亚热带印度Inceptisol的碳输入,损失和存储

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摘要

Changes in residue management and incorporation of organic manures may help in carbon sequestration, restoring soil organic carbon (SOC) and sustaining the productivity of land under a cropping system. An experiment of multi-ratooning sugarcane (Saccharum officinarum L.) was initiated in 2003 in Inceptisols of Indian subtropics, to assess the effect of different organic manures and chemical fertilizer, on the crop productivity and soil quality. The annual sugarcane shoot biomass production in organic manure treatments was at par with the chemically fertilized treatment. Gross input of carbon (GIC) by the sugarcane crop was estimated to be 11.7-12.4thap# yp# in different organic manure treatments compared to 8.4 and 5.0thap# yp# in NPK and control treatments, respectively. The respiratory loss of C (RLC) increased linearly with increasing input of C in soil and it ranged from 3.3 to 4.1thap# yp# in different treatments with maximum in FYM and minimum in control treatment. The sugarcane biomass added in the soil humified at a rate constant of 0.38 in sub-tropical conditions and an addition of 3.9tChap# yp# is required to maintain SOC in equilibrium. After 5 years of sugarcane cropping (one plant+four ratoons) an increase of 2.3-17.1thap# in SOC over initial content was recorded with different treatments. Results in coming years from this long-term experiment shall add to the present calculated relationships between carbon addition and storage in sugarcane multi-ratooning crop production system under sub-tropical condition of India.
机译:改变残留管理和有机肥料的使用可能有助于固碳,恢复土壤有机碳(SOC)并维持耕作制度下土地的生产力。 2003年,在印度亚热带地区的Inceptisols中启动了多毛甘蔗(Saccharum officinarum L.)的实验,以评估不同有机肥和化肥对作物生产力和土壤质量的影响。有机肥料处理中的年甘蔗苗生物量产量与化学施肥处理相当。在不同的有机肥处理中,甘蔗作物的总碳输入量(GIC)估计为11.7-12.4thap#yp#,相比之下,NPK和对照处理分别为8.4和5.0thap#yp#。碳的呼吸损失(RLC)随着土壤中碳输入的增加而线性增加,在不同处理中,其FYM最高,而对照处理中则最低,为3.3至4.1thap#yp#。在亚热带条件下,添加到土壤中的甘蔗生物质以0.38的速率常数腐殖化,并且需要添加3.9tChap#yp#才能保持SOC平衡。甘蔗种植5年后(一株植物+四个再生草),经过不同的处理后,SOC比初始含量增加了2.3-17.1thap#。在印度亚热带条件下,该长期实验在未来几年中的结果将增加目前计算的碳添加与储量之间的关系。

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