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Biochar amendment reduces paddy soil nitrogen leaching but increases net global warming potential in Ningxia irrigation China

机译:生物炭改良剂可减少稻田土壤氮素的淋失但可增加中国宁夏灌溉的全球净增温潜力

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摘要

The efficacy of biochar as an environmentally friendly agent for non-point source and climate change mitigation remains uncertain. Our goal was to test the impact of biochar amendment on paddy rice nitrogen (N) uptake, soil N leaching, and soil CH4 and N2O fluxes in northwest China. Biochar was applied at four rates (0, 4.5, 9 and13.5 t ha−1 yr−1). Biochar amendment significantly increased rice N uptake, soil total N concentration and the abundance of soil ammonia-oxidizing archaea (AOA), but it significantly reduced the soil NO3 -N concentration and soil bulk density. Biochar significantly reduced NO3 -N and NH4 +-N leaching. The C2 and C3 treatments significantly increased the soil CH4 flux and reduced the soil N2O flux, leading to significantly increased net global warming potential (GWP). Soil NO3 -N rather than NH4 +-N was the key integrator of the soil CH4 and N2O fluxes. Our results indicate that a shift in abundance of the AOA community and increased rice N uptake are closely linked to the reduced soil NO3 -N concentration under biochar amendment. Furthermore, soil NO3 -N availability plays an important role in regulating soil inorganic N leaching and net GWP in rice paddies in northwest China.
机译:生物炭作为非点源和减缓气候变化的环保剂的功效仍然不确定。我们的目标是测试生物炭改良剂对西北地区水稻氮素吸收,土壤氮淋失以及土壤CH4和N2O通量的影响。以4种速率(0、4.5、9和13.5 t ha -1 yr -1 )施用生物炭。生物炭改良剂显着提高了水稻的氮吸收量,土壤总氮浓度和土壤氨氧化古细菌(AOA)的含量,但显着降低了土壤NO3 - -N浓度和土壤容重。生物炭显着减少了NO3 - -N和NH4 + -N的淋溶。 C2和C3处理显着增加了土壤CH4通量并减少了N2O通量,从而导致净全球升温潜能值(GWP)显着增加。土壤NO3 - -N而非NH4 + -N是土壤CH4和N2O通量的关键积分因子。我们的结果表明,在生物炭改良下,AOA群落的丰度变化和水稻对氮的吸收增加与土壤NO3 - -N浓度降低密切相关。此外,中国西北稻田土壤NO3 - -N的有效性在调节土壤无机N淋失和净GWP方面起着重要作用。

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