Interactive effects of rice-residue biochar and N-fertilizer on soil functions and crop biomass in contrasting soils

生物炭 壤土 农学 斜线和字符 土壤水分 作物残渣 肥料 土壤碳 化学 固碳 环境科学 土壤肥力 氮气 土壤科学 热解 农业 生物 生态学 有机化学
作者
Manpreet Singh Mavi,Gurwinder Singh,Bhupinder Pal Singh,Bharpoor Singh Sekhon,Om Prakash Choudhary,Sudhakar Sagi,Robert F. Berry
出处
期刊:Journal of Soil Science and Plant Nutrition [Springer Science+Business Media]
卷期号: (ahead) 被引量:73
标识
DOI:10.4067/s0718-95162018005000201
摘要

There is limited understanding of the effects of rice residue biochar, particularly when applied in combination with nitrogen (N) fertilizer on soil fertility, soil C sequestration and crop productivity.A one-year pot experiment was established to examine effects of rice residue biochar (0, 10, 20 and 40 t ha -1 ) and N (0, 60, 90, 120 and 150 kg N ha -1 ) in soils with contrasting texture (loamy sand and sandy clay loam) in a wheat-maize cropping sequence.Biochar was only applied once before sowing wheat.Biochar alone or in combination with N did not significantly increase wheat biomass in both soils, whereas biomass of maize (next crop) was significantly increased from the residual effect of biochar, alone or in combination with N fertilizer.In both soils, electrical conductivity (EC) and pH, oxidisable organic carbon (OC), microbial biomass carbon (MBC), dissolved organic carbon (DOC) and available nutrients (NPK) increased with increasing rates of biochar addition.However, addition of N with biochar (cf.biochar alone) did not change pH and oxidisable OC values but increased EC significantly.After one year, the soil organic carbon (SOC) stocks increased beyond the input of biochar-C, that is, by 0.1-2.1 t ha -1 and 1.8-4.8t ha -1 in loamy sand and sandy clay loam, respectively, across all treatments.It may be concluded that the potential benefits of rice residue biochar to soil functions and crop production may encourage growers to minimise open field burning of straw, which is a common practice in the region.
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