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Extractable pool of biochar controls on crop productivity rather than greenhouse gas emission from a rice paddy under rice-wheat rotation

机译:提取的BioChar池对作物生产力的控制,而不是在米饭旋转下从稻米稻米的温室气体排放

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The role of extractable pool of biochar in crop productivity and soil greenhouse gas (GHGs) emission is not yet clear. In this study, two biochars with and without extraction was added to a paddy before rice transplantation at 20 t·ha?1. Crop yield, plant traits and greenhouse gas emission monitored throughout a rice-wheat rotation. Between the biochar treatments, changes in bulk density and microbial biomass carbon were insignificant. However, the increase in organic carbon was similar between maize and wheat biochars while higher under bulk wheat biochar than extracted one. The increase in available P and K was higher under wheat than maize biochar regardless of extraction. Moreover, the increase in plant traits and grain yield, in rice season only, was higher under bulk than extracted biochars. Yet, there was no difference in changes in GHGs emission between bulk and extracted biochars regardless of feedstock. Nevertheless, increased methane emission for rice season was lower under extracted biochars than bulk ones. Overall, crop productivity rather than GHGs emission was affected by treatment of extraction of biochars. Thus, use of unextracted biochar is recommended for improving soil crop productivity in the paddy soils.
机译:可以提取的Biochar池在作物生产力和土壤温室气体(GHG)排放中的作用尚不清楚。在该研究中,在20t·Haβ1的水稻移植前将两个具有和不萃取的生物脉冲添加到稻田中。作物产量,植物性状和温室气体排放在整个米饭旋转中监测。在生物炭处理之间,散装密度和微生物生物量碳的变化是微不足道的。然而,玉米和小麦生物谱之间的有机碳的增加相似,而散装小麦生物炭比提取的含量高。无论提取如何,小麦的可用P和K的增加比玉米生物炭更高。此外,植物性状和谷物产量的增加仅在大米季节的批量较高,而不是提取的生物脉。然而,无论原料如何,散装和提取的生物脉内的温室气体排放的变化没有差异。尽管如此,在提取的生物脉中的米季季节的甲烷排放量比散装物越低。总体而言,作物生产率而不是温室气体发射受到生物脉冲提取的影响。因此,建议使用未提取的生物炭来改善水稻土壤中的土壤作物生产力。

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