首页> 外文学位 >Measurements of nitrous oxide isotopologues ((15)N(14)NO, (14)N(15)NO, and N(2)(18)O): Insights into global biogeochemical cycling and atmospheric chemistry and transport.
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Measurements of nitrous oxide isotopologues ((15)N(14)NO, (14)N(15)NO, and N(2)(18)O): Insights into global biogeochemical cycling and atmospheric chemistry and transport.

机译:一氧化二氮同位素((15)N(14)NO,(14)N(15)NO和N(2)(18)O)的测量:洞察全球生物地球化学循环以及大气化学和运输。

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Measurements of the nitrogen and oxygen isotopic compositions of nitrous oxide (N2O) provide additional constraints on the magnitudes of the sources and sinks of atmospheric N2O beyond those provided by concentration measurements alone since the various biogeochemical production and destruction processes produce distinct 15N/14N and/or 18O/16O ratios. New measurements of the 18O and bulk 15N isotopic compositions, as well as the site-specific 15N isotopic compositions (i.e. , the 15N isotopic composition of N2O for either the terminal or central nitrogen atom) are presented here for (1) stratospheric N2O from whole air samples collected from the NASA ER-2 aircraft, (2) N2O produced by microbial activity in tropical rain forest soils, and (3) free tropospheric N2O from whole air samples archived between 1978 and 2004. The measurements were made by continuous-flow isotope ratio mass spectrometry using a preconcentrator and gas chromatograph, which allowed the direct analysis of N2O from whole air samples without manual purification or conversion to N2 and O2. A novel mass spectrometric means to place the site-specific nitrogen isotopic compositions on the international air-N2 isotopic scale is also described.; For the stratosphere, the observed variations in isotopic compositions as a function of N2O mixing ratio are well-explained by transport and mixing and are not due to changes in the underlying isotope effects nor the relative proportion of N2O destruction by photolysis versus reaction with O(1D). These observations also allowed empirical estimates of the isotope fluxes between the stratosphere and troposphere to be made, thus reducing one of major uncertainties in the global N2O isotope budget. For N2O produced in the tropical soils, both under natural and artificial conditions, measurements of the isotopic compositions are used to estimate isotopic fractionation occurring during nitrification and denitrification, which are shown to be distinct. Correlations among the isotopic compositions are also used to characterize the extent of N2 O consumption in the soils. For the free tropospheric whole air samples dating back to 1978, the N2O isotopic compositions show significant decreasing trends and are consistent with the prediction that the increase in the atmospheric N2O burden is a result of agricultural activities that produce isotopically light N2O.
机译:一氧化二氮(N2O)的氮和氧同位素组成的测量对大气N2O的源和汇的大小提供了额外的限制,这超出了单独进行浓度测量所提供的限制,因为各种生物地球化学的生产和破坏过程会产生不同的15N / 14N和/或18O / 16O比率。本文介绍了(1)整个平流层N2O的18O和15N同位素组成的新测量值,以及定点的15N同位素组成(即,末端或中心氮原子的N2O的15N同位素组成)从NASA ER-2飞机收集的空气样本;(2)热带雨林土壤中微生物活动产生的N2O;以及(3)1978年至2004年之间存档的全部空气样本中的对流层N2O。这些测量是通过连续流进行的使用预浓缩器和气相色谱仪进行的同位素比质谱分析,可直接从整个空气样品中分析N2O,而无需人工纯化或转化为N2和O2。还描述了一种新颖的质谱方法,将特定位置的氮同位素组成置于国际空气-N2同位素范围内。对于平流层,通过运输和混合可以很好地解释观察到的同位素组成随N2O混合比的变化,这既不是由于潜在的同位素效应的变化,也不是由于光解与O(与O)反应而破坏N2O的相对比例。 1D)。这些观察结果还允许对平流层和对流层之间的同位素通量进行经验估计,从而减少了全球N2O同位素预算的主要不确定性之一。对于热带土壤中自然和人工条件下产生的N2O,同位素组成的测量值可用于估算硝化和反硝化过程中发生的同位素分馏,这是有区别的。同位素组成之间的相关性也可用于表征土壤中N2 O消耗的程度。对于追溯到1978年的对流层大气自由样品,N2O同位素组成显示出明显的下降趋势,并且与大气N2O负荷增加是产生同位素轻N2O的农业活动的结果的预测相一致。

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