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首页> 外文期刊>Journal of Environmental Engineering >Effect of Biochar Application on Rice Yield and Greenhouse Gas Emission under Different Nutrient Conditions from Paddy Soil
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Effect of Biochar Application on Rice Yield and Greenhouse Gas Emission under Different Nutrient Conditions from Paddy Soil

机译:不同养分条件下生物炭施用对水稻产量和温室气体排放的影响

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This study was conducted to investigate the effect of biochar application on rice yield and greenhouse gases in nutrient-poor soil (NPS) and nutrient-rich soil (NRS). The treatment conditions for NPS and NRS plots were control (C), Ffertilizer (F), and sesame straw biochar + F (BC) treatments. The rice yields were higher in the order of BC(421.8gm-2)>F>C for the NPS plot and BC(802.4gm-2)>C>F for the NRS plot. CH4 flux with the NPS plot was similar to that of the NRS plot, whereas N2O flux in the NRS plot was greater than in the NPS plot in all tested treatments. The global warming potential in biochar application treatments was lower, with the global CH4+N2O fluxes decreased by 25.0-36.8% for the NPS plot and 16.7-39.4% for the NRS plot, compared with the corresponding other treatments. These results suggest that biochar application in NPS and NRS will enhance rice productivity and reduce CH4 and N2O fluxes. (C) 2016 American Society of Civil Engineers.
机译:进行了这项研究,以研究生物炭施用对营养不良土壤(NPS)和营养丰富土壤(NRS)中水稻产量和温室气体的影响。 NPS和NRS地块的处理条件为对照(C),肥料(F)和芝麻秸秆生物炭+ F(BC)处理。对于NPS图,水稻产量以BC(421.8gm-2)> F> C的顺序排列,对于NRS图,水稻产量以BC(802.4gm-2)> C> F的顺序排列。 NPS图的CH4通量与NRS图的相似,而NRS图中的N2O通量在所有测试处理中均大于NPS图。与相应的其他处理相比,生物炭施用处理中的全球变暖潜能值较低,NPS图中的全球CH4 + N2O通量下降了25.0-36.8%,NRS图中的全球CH4 + N2O通量下降了16.7-39.4%。这些结果表明,生物炭在NPS和NRS中的应用将提高稻米的生产率并减少CH4和N2O的通量。 (C)2016年美国土木工程师学会。

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