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首页> 外文期刊>Environmental Pollution >Influence of activated biochar pellet fertilizer application on greenhouse gas emissions and carbon sequestration in rice (Oryza sativa L.) production
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Influence of activated biochar pellet fertilizer application on greenhouse gas emissions and carbon sequestration in rice (Oryza sativa L.) production

机译:活化生物炭颗粒肥料应用对水稻温室气体排放和碳封存的影响(Oryza Sativa L.)生产

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摘要

Supplemental activated biochar pellet fertilizers (ABPFs) were evaluated as a method to sequester carbon and reduce greenhouse gas (GHG) emissions, and improve rice production. The evaluated treatments were a control (standard cultivation method, no additives applied), activated rice hull biochar pellets with 40% of N (ARHBP40%), and activated palm biochar pellets with 40% of N (APBP-40%). The N supplied by the ARHBP-40% and APBP-40% treatments reduced the need for supplemental inorganic nitrogen (N) fertilizer by 60 percent. The ARHBP-40% treatment sequestered as much as 1.23 tonne ha-1 compared to 0.89 tonne ha-1 in the control during the rice-growing season. In terms of greenhouse gas (GHG) emissions, CH4 emissions were not significantly different (p 0.05) between the control and the ARHBP-40%, while the lowest N2O emissions (0.002 kg ha-1) were observed in the ARHBP-40% during the crop season. Additionally, GHG (CO2-equiv.) emissions from the ARHBP-40% application were reduced by 10 kg ha-1 compared to the control. Plant height in the control was relatively high compared to others, but grain yield was not significantly different among the treatments. The application of the ARHBP-40% can mitigate greenhouse gas emissions and enhance carbon sequestration in crop fields, and ABPFs can increase N use efficiency and contribute to sustainable agriculture.
机译:补充活化的生物炭粒料肥料(ABPF)被评价为螯合碳的方法,减少温室气体(温室气体)排放,提高水稻生产。评估的治疗是一种对照(标准培养方法,不适用添加剂),活化的稻米Biochar粒料,40%N(arhbpppp40%),并活化棕榈biochar粒料,40%N(APBP-40%)。 ARHBP-40%和APBP-40%治疗提供的N.需要将补充无机氮(N)肥的需求减少60%。在水稻生长季节期间,ARHBP-40%治疗与0.89吨HA-1相比,与0.89吨HA-1一起隔离。在温室气体(GHG)排放方面,对照和arhbp-40%之间的CH4排放并没有显着不同(P> 0.05),而在arhbp-中观察到最低的N2O排放(0.002kg HA-1)作物季节期间40%。此外,与对照相比,氧化钇-40%施用的GHG(CO2-EQUIF。)排放量减少了10kg HA-1。与其他人相比,对照的植物高度相对较高,但治疗中的谷物产量并没有显着差异。 ARHBP-40%的应用可以减轻温室气体排放,增强作物领域的碳封存,ABPF可以增加N使用效率并为可持续农业做出贡献。

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