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An experimental set-up for carbon isotopic analysis of atmospheric CO2 and an example of ecosystem response during solar eclipse 2010

机译:大气CO2碳同位素分析的实验装置和日食期间生态系统响应的示例2010

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摘要

We present here, an experimental set-up developed for the first time in India for the determination of mixing ratio and carbon isotopic ratio of air-CO2. The set-up includes traps for collection and extraction of CO2 from air samples using cryogenic procedures, followed by the measurement of CO2 mixing ratio using an MKS Baratron gauge and analysis of isotopic ratios using the dual inlet peripheral of a high sensitivity isotope ratio mass spectrometer (IRMS) MAT 253. The internal reproducibility (precision) for the PC measurement is established based on repeat analyses of CO2 +/- 0.03 parts per thousand. The set-up is calibrated with international carbonate and air-CO2 standards. An in-house air-CO2 mixture, `OASIS AIRMIX' is prepared mixing CO2 from a high purity cylinder with O-2 and N-2 and an aliquot of this mixture is routinely analyzed together with the air samples. The external reproducibility for the measurement of the CO2 mixing ratio and carbon isotopic ratios are +/- 7 (n = 169) mu mol.mol(-1) and +/- 0.05 (n = 169) parts per thousand based on the mean of the difference between two aliquots of reference air mixture analyzed during daily operation carried out during November 2009-December 2011. The correction due to the isobaric interference of N2O on air-CO2 samples is determined separately by analyzing mixture of CO2 (of known isotopic composition) and N2O in varying proportions. A +0.2 parts per thousand correction in the delta C-13 value for a N2O concentration of 329 ppb is determined. As an application, we present results from an experiment conducted during solar eclipse of 2010. The isotopic ratio in CO2 and the carbon dioxide mixing ratio in the air samples collected during the event are different from neighbouring samples, suggesting the role of atmospheric inversion in trapping the emitted CO2 from the urban atmosphere during the eclipse.
机译:我们在这里介绍了一种在印度首次开发的用于确定空气-CO2混合比和碳同位素比的实验装置。该设置包括使用低温程序从空气样本中收集和提取CO2的捕集阱,然后使用MKS Baratron量规测量CO2混合比,并使用高灵敏度同位素比质谱仪的双入口外围设备分析同位素比。 (IRMS)MAT 253. PC的内部重现性(精度)是基于对二氧化碳+/- 0.03千分之几的重复分析而建立的。该设置已根据国际碳酸盐和空气二氧化碳标准进行了校准。制备室内空气-CO2混合物,即“ OASIS AIRMIX”,将高纯度钢瓶中的CO2与O-2和N-2混合,并定期与空气样本一起分析该混合物的等分试样。用于测量CO2混合比和碳同位素比的外部重现性是基于平均值的+/- 7(n = 169)mu mol.mol(-1)和+/- 0.05(n = 169)千分之一于2009年11月至2011年12月在日常运行中分析的两等份参考空气混合物之间的差异。N2O对空气-CO2样品的同量异位干扰引起的校正通过分析CO2(已知同位素组成)的混合物单独确定)和N2O的比例不同。对于329 ppb的N2O浓度,确定增量C-13值的+0.2千校正。作为应用,我们提供了2010年日食期间的实验结果。此次活动期间收集的空气样品中的二氧化碳同位素比和二氧化碳混合比与附近的样品不同,表明大气反转在捕集中的作用月食期间城市大气中排放的二氧化碳。

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    Guha Tania; Ghosh Prosenjit;

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