首页> 外文期刊>Analytical chemistry >High-precision continuous-flow measurement of delta C-13 and delta D ofatmospheric CH4
【24h】

High-precision continuous-flow measurement of delta C-13 and delta D ofatmospheric CH4

机译:大气CH4的ΔC-13和ΔD的高精度连续流量测量

获取原文
获取原文并翻译 | 示例
       

摘要

We describe our development of a CH4 preconcentration system for use with continuous-flow gas chromatograph combustion isotope ratio mass spectrometry (GC/C/ IRMS). Precision of measurement of delta C-13-CH4 is 0.05 parts per thousand (1 sigma) on multiple 60-mL aliquots of the same ambient air sample. The same front-end on-line CH4 preconcentration system allows us to measure deltaD of CH4 by gas chromatography IRMS when the combustion furnace is replaced with a pyrolysis oven (GC/P/IRMS). Precision of measurement for deltaD-CH4 is 1.5 parts per thousand (1 sigma) using 120 mL of ambient air based on multiple aliquots of the same air sample. These are the first reported measurements of atmospheric CH4 using GC/P/IRMS methodology. Each isotope analysis can be made much more rapidly (30-40 min) than they could using off-line combustion of an air sample (1-6 h) followed by conventional dual-inlet RMS measurements (12-20 min), while requiring much less total volume and retaining a comparable level of precision and accuracy. To illustrate the capabilities of our preconcentration GC/C/IRMS system, we compare the results of measurement of 24 background air samples made using both GC/C/IRMS and conventional vacuum line/dual-inlet HMS methodology. The air samples were collected on a shipboard air sampling transect made across the Pacific Ocean in July 2000 and are part of an ongoing atmospheric CH4 research program. The average difference between the two methods of IRMS analyses on these 24 samples is 0.01 +/- 0.03 parts per thousand (95% confidence interval) for delta C-13-CH4. These are the first measurements to be reported of air samples directly intercompared for delta C-13-CH4 using both GC/C/IRMS and dual-inlet IRMS measurement methodology. Measurement of deltaD-CH4 of these air samples is also presented as an illustration of the ability of this system to resolve small isotopic differences in remote air. High-precision measurement of delta C-13 and deltaD of atmospheric CH4 made using our coupled preconcentration GC/IRMS system will greatly improve our ability to utilize isotopic data in understanding spatial and temporal changes in atmospheric CH4 and the biogeochemistry of its sources and sinks.
机译:我们描述了我们的CH4预浓缩系统的开发,该系统可用于连续流气相色谱仪燃烧同位素比质谱(GC / C / IRMS)。在相同环境空气样品的多个60 mL等分试样中,ΔC-13-CH4的测量精度为千分之0.05(1 sigma)。当燃烧炉被热解炉(GC / P / IRMS)取代时,相同的前端在线CH4预浓缩系统使我们能够通过气相色谱IRMS测量CH4的δD。基于相同空气样本的多个等分试样,使用120 mL环境空气,deltaD-CH4的测量精度为千分之1.5(1 sigma)。这是首次报道使用GC / P / IRMS方法测量大气CH4的方法。与使用空气样品的离线燃烧(1-6小时)然后进行常规的双进口RMS测量(12-20分钟)相比,每次同位素分析可以更快(30-40分钟)完成总体积要少得多,并保持相当水平的精度和准确性。为了说明我们的预浓缩GC / C / IRMS系统的功能,我们比较了使用GC / C / IRMS和常规真空管线/双进样HMS方法制备的24种背景空气样品的测量结果。空气样品是在2000年7月通过横跨太平洋的船上空气采样样道采集的,并且是正在进行的大气CH4研究计划的一部分。这24个样本的两种IRMS分析方法之间的平均差异为C-13-CH4增量为0.01 +/- 0.03千分之(95%置信区间)。这是首次报告的使用GC / C / IRMS和双进气口IRMS测量方法直接比较的C-13-CH4空气样品的测量结果。还提供了这些空气样本的delD-CH4的测量值,以说明该系统解决偏远空气中微小同位素差异的能力。使用我们的预浓GC / IRMS系统进行的大气CH4的δC-13和δD的高精度测量将大大提高我们利用同位素数据来了解大气CH4的时空变化及其来源和汇的生物地球化学的能力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号