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The aim of this study was to evaluate the effect of biochar and organic soil amendments on soil physicochemical and microbial load, carbon sequestration potential, nutrient uptake and yield of groundnut in acidic red soil under rainfed condition. Biochar was prepared from red gram, cotton, maize stalk and mesquite wood using pilot scale slow pyrolysis biochar unit. The above sources of biochar at the rate of 2.5 and 5 t ha?1 and enriched farmyard manure 0.75 t ha?1, composted coir pith 10 t ha?1 and arbuscular mycorrhizae 100 kg ha?1 were applied as basal with required nitrogen, phosphorous and potassium fertilizer. Biochar amendment at the rate of 5 t ha?1 reduced the bulk density from 1.41 to 1.36 g cm?3 and increased the soil moisture 2.5%. With respect to soil chemical changes, it raised soil pH from 5.7 to 6.3; increased the cation exchange capacity 1.4 cmolkg?1 and enhanced the carbon buildup 4.4 t ha?1. The significant differences in bacteria, fungi and actinomycetes population were observed between biochar and control. The nitrogen, phosphorous and potassium were better utilized under biochar and composted coir pith, which was 21, 5 and 20 kg ha?1 higher than control. The experimental results suggested that application of biochar to acidic red soil favoured good soil physical, chemical and biological environment, and these positive changes influenced growth and yield attributes and enhanced pod yield 29% over control.  相似文献   
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The field experiments were conducted for three consecutive years from 2011 to 2014 to evaluate the influence of graded levels of gypsum as a source of sulfur and different times of application on soil fertility and yield parameters and yield of groundnut (TMV 7) under rainfed condition at Dryland Agricultural Research Station, Chettinad, Tamil Nadu, India. It is observed that sulfur nutrition significantly influenced growth, yield attributing characters and yield over control. Sulfur nutrition through gypsum as a source 400 kg ha?1 in split mode viz., 200 kg as basal and 200 kg as top dressing during receipt of rains recorded highest plant height, more number of filled pods per plant, higher values for 100 pod weight, 100 kernel weight, pod yield and haulm yield. Split application of gypsum 400 kg ha?1 has increased pod yield to the tune of 31, 21 and 36 percent during 2011, 2012 and 2013 respectively.  相似文献   
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