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Theoretical and practical limitations of the acetylene inhibition technique to determine total denitrification losses

机译:乙炔抑制技术确定总抵抗损失的理论和实践局限性

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The loss of N2 from intensively managed agro-ecosystems is an important part of the N budget. Flux monitoring of N2 emissions at the field scale, e.g., by eddy correlation or aerodynamic gradient method, is impossible due to the large atmospheric N2 background (78%). The acetylene (C2H2) inhibition technique (AIT) is a rather simple and frequently used, albeit imperfect, method to determine N2 losses from intact soil cores. In principle, AIT allows an estimation of total denitrification at high temporal resolution and on small spatial scales, with limited workload and costs involved. To investigate its potential and limitations, a laboratory system with two different detection systems (photoacoustic IR spectroscopy and gas chromatography) is presented, which allowed simultaneous measurements of up to 7 intact soil cores in air-tight glass tubes in a temperature controlled cabinet (adjusted to field conditions) with automated C2H2 injection. A survey of total denitrification losses (N2 + N2O) over 1.5 yr in soil cores from an intensively managed, cut grassland system in central Switzerland supports previous reports on severe limitations of the AIT, which precluded reliable estimates of total denitrification losses. Further, the unavoidable sampling and transfer of soil samples to the laboratory causes unpredictable deviations from the denitrification activity in the field.
机译:N2从集中管理的农业生态系统的损失为N预算的重要组成部分。通量场规模,例如监测N2的排放,由涡相关性或空气动力学的梯度法,是不可能的,因为大的大气N2背景(78%)。乙炔(C2H2)抑制技术(AIT)是一个相当简单的和经常使用的,虽然不完美,方法确定从完整土壤芯N2损失。原则上,AIT允许以高时间分辨率和小空间尺度总脱硝的估计,用有限的工作量和所花费的成本。探讨其潜力和局限,实验室系统具有两个不同的检测系统(光声IR光谱和气相色谱法)被呈现,这使得向上的同时测量到7个原状土芯中在温度控制柜气密玻璃管(调整现场条件下)与自动注射C2H2。总反硝化损失从瑞士中部的集约管理,切断草地系统的一项调查(N2 + N2O)在土壤中核1.5年支持在AIT的严格限制,这排除了总反硝化损失的可靠估计以前的报告。此外,不可避免的采样和土壤样品转移到实验室导致从在该领域的脱氮活性不可预知的偏差。

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