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首页> 外文期刊>Tropical Ecology >Soil organic carbon dynamics and crop yields of maize (Zea mays)-black gram (Vigna mungo) rotation-based long term manurial experimental system in semi-arid Vertisols of western India
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Soil organic carbon dynamics and crop yields of maize (Zea mays)-black gram (Vigna mungo) rotation-based long term manurial experimental system in semi-arid Vertisols of western India

机译:土壤有机碳动力学和玉米(ZEA MUSS)的作物产量 - 以西印度半干旱醇旋转基于旋转的长期血浆实验系统

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摘要

Achieving sustainable crop productivity and maintenance of concurrent soil organic carbon (SOC) at desired levels in cereal-based cropping systems in relatively, poorly fertile Vertisols in semi-arid rainfed ecosystem is challenging task for dryland researchers. Different soil fertilization practices can contribute to carbon (C) sequestration, which requires a detailed knowledge of SOC dynamics in soil profile (0-1.0 m). We conducted a field experiment for 6 years to study the effect of applying mineral fertilizers and organic amendments (FYM, compost, green leaf and crop residue) on profile SOC stocks, C sequestration, SOC sequestration rate, C buildup rate and sustainable yield index (SYI) of maize and blackgram crops in dry semi-arid Vertisols of western India. The study encompasses different nutrient management viz., 100% recommended dose of fertilizer (RDF) of NP, 25 kg ha(-1) N (FYM) + 25 kg N (Urea) + 30 kg P ha(-1), 25 kg ha(-1) N (Compost) + 25 kg N (Urea) + 30 kg P ha(-1), 25 kg ha(-1) N (Crop residue) + 25 kg N (Urea) + 30 kg P ha(-1), 15 kg ha(-1) N (FYM) + 10 kg N (Crop Residue) + 25 kg N (Urea) + 30 kg P ha(-1), 15 kg ha(-1) N (FYM) + 10 kg N (Compost) + 25 kg N (Urea) + 30 kg P ha(-1), 15 kg ha(-1) N (FYM) + 10 kg N (Green Leaf) + 25 kg N (Urea) + 30 kg P ha(-1), 100% recommended N (urea) without P and unfertilized control. Randomized Complete Block design was used wherein all the treatments were replicated thrice. Application of 15 kg ha(-1) N (FYM) + 10 kg N (Crop Residue) + 25 kg N (Urea) + 30 kg P ha(-1) significantly improved the SOC concentration of the soil profile (0-1.0 m) than unfertilized control and treatments receiving solely mineral fertilizers. Highest SOC profile stock, C sequestration with concomitant C buildup was obtained with 15 kg ha(-1) N (FYM) + 10 kg N (Crop Residue) + 25 kg N (Urea) + 30 kg P ha(-1). A positive correlation is observed between total C input and profile mean SOC content (R-2 = 0.74), profile C stock (R-2 = 0.76), C sequestration (R-2 = 0.76), C sequestration rate (R-2 = 0.76) at P values < 0.01. The conjunctive use of 15 kg ha(-1) N (FYM) + 10 kg N (Green Leaf) + 25 kg N (Urea) + 30 kg P ha(-1) and 25 kg ha(-1) N (FYM) + 25 kg N (Urea) + 30 kg P ha(-1) resulted in highest mean grain yield of maize and blackgram, respectively, which were significantly superior to treatments receiving mineral fertilization alone. Application of organic amendments in combination with mineral fertilizers was found superior in improving the SYI. Critical C input of 1.14 Mg C ha(-1) year(-1) is suggested to be added in the soils externally to offset depletion of C and maintaining SOC at equilibrium in the semi-arid Vertisols of western India.
机译:在相对较差的粮食雨量生态系统中谷物种类的种植体系中获得所需水平的可持续作物生产力和维持并发土壤有机碳(SOC)的维持性质,是旱地研究人员的挑战性任务。不同的土壤施肥实践可以促进碳(C)封存,这需要详细了解土壤剖面中的SOC动力学(0-1.0米)。我们进行了6年的田间实验,研究了应用矿物肥料和有机修正(FYM,COMPOST,GEED LEAD)对概况SOC股,C封存,SOC封存率,C堆积率和可持续收益率指数(玉米和黑色庄稼在印度西部干旱半干旱醇的玉米和黑色作物。该研究包括不同的营养管理Ziz,100%推荐剂量的肥料(RDF)的NP,25kg ha(-1)n(fym)+ 25kg n(尿素)+ 30kg p ha(-1),25 kg ha(-1)n(堆肥)+ 25kg n(尿素)+ 30kg p ha(-1),25kg ha(-1)n(植物残留物)+ 25kg n(尿素)+ 30kg p HA(-1),15 kg ha(-1)n(fym)+ 10kg n(作物残余物)+ 25kg n(尿素)+ 30kg p ha(-1),15kg ha(-1)n (Fym)+ 10 kg n(堆肥)+ 25kg n(尿素)+ 30kg p ha(-1),15kg ha(-1)n(fym)+ 10kg n(绿叶)+ 25kg n (尿素)+ 30 kg p ha(-1),100%推荐的n(尿素)没有p和未受精控制。使用随机的完整块设计,其中所有处理被复制三次。施用15kg ha(-1)n(fym)+ 10kg n(裁剪残余物)+ 25kg n(尿素)+ 30kg p ha(-1)显着改善了土壤剖面的SOC浓度(0-1.0 m)比未受精的对照和治疗完全接受矿物肥料。最高的SOC型材库存,用伴随C堆积的C螯合用15kg ha(-1)n(fym)+ 10kg n(作物残余物)+ 25kg n(尿素)+ 30kg p ha(-1)。在总C输入和轮廓之间观察到阳性相关性(R-2 = 0.74),概况C库存(R-2 = 0.76),C螯合(R-2 = 0.76),C螯合率(R-2 P值<0.01)= 0.76)。联合用途15公斤HA(-1)N(FYM)+ 10kg N(绿叶)+ 25kg N(尿素)+ 30kg p ha(-1)和25kg ha(-1)n(fym )+ 25kg n(尿素)+ 30kg p ha(-1)导致玉米和黑色的最高扁平籽粒产率,其显着优于单独接受矿物施肥的治疗。有机修正与矿物肥料组合的应用在改善SYI方面具有优异的。建议在外部的土壤中添加1.14 mg C ha(-1)年(-1)的临界C输入以在印度西部半干旱转甾醇的均衡下耗尽C和维持SOC。

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