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Biochar reduces the efficiency of nitrification inhibitor 34-dimethylpyrazole phosphate (DMPP) mitigating N2O emissions

机译:Biochar降低硝化抑制剂34-二甲基吡唑磷酸酯(DMPP)缓解N2O排放的效率

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摘要

Among strategies suggested to decrease agricultural soil N2O losses, the use of nitrification inhibitors such as DMPP (3,4-dimethylpyrazole phosphate) has been proposed. However, the efficiency of DMPP might be affected by soil amendments, such as biochar, which has been shown to reduce N2O emissions. This study evaluated the synergic effect of a woody biochar applied with DMPP on soil N2O emissions. A incubation study was conducted with a silt loam soil and a biochar obtained from Pinus taeda at 500 °C. Two biochar rates (0 and 2% (w/w)) and three different nitrogen treatments (unfertilized, fertilized and fertilized + DMPP) were assayed under two contrasting soil water content levels (40% and 80% of water filled pore space (WFPS)) over a 163 day incubation period. Results showed that DMPP reduced N2O emissions by reducing ammonia-oxidizing bacteria (AOB) populations and promoting the last step of denitrification (measured by the ratio nosZI + nosZIIirS + nirK genes). Biochar mitigated N2O emissions only at 40% WFPS due to a reduction in AOB population. However, when DMPP was applied to the biochar amended soil, a counteracting effect was observed, since the N2O mitigation induced by DMPP was lower than in control soil, demonstrating that this biochar diminishes the efficiency of the DMPP both at low and high soil water contents.
机译:在建议减少农业土壤N2O损失的策略中,有人建议使用硝化抑制剂,如DMPP(3,4-二甲基吡唑磷酸酯)。但是,DMPP的效率可能会受到土壤改良剂(例如生物炭)的影响,这种生物炭已被证明可以减少N2O的排放。这项研究评估了与DMPP一起使用的木质生物炭对土壤N2O排放的协同作用。用淤泥壤土和从炭松(Pinus taeda)获得的生物炭在500°C下进行孵化研究。在两种不同的土壤含水量水平(40%和80%的充水孔隙空间(WFPS))下测定了两种生物炭比率(0和2%(w / w))和三种不同的氮处理(未施肥,施肥和施肥+ DMPP) ))在163天的潜伏期内。结果表明,DMPP通过减少氨氧化细菌(AOB)种群并促进反硝化的最后一步来减少N2O排放(以nosZI + nosZII / nirS + nirK基因的比例衡量)。由于活性炭人口的减少,生物炭仅以40%的WFPS减少了N2O排放。但是,当将DMPP施用到生物炭改良土壤上时,由于DMPP诱导的N2O缓解效果低于对照土壤,因此观察到了抵消作用,表明这种生物炭降低了DMPP在高低土壤含水量下的效率。 。

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