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首页> 外文期刊>Atmospheric Measurement Techniques Discussions >New technique for high-precision, simultaneous measurements of CH4, N2O and CO2 concentrations; isotopic and elemental ratios of N2, O2 and Ar; and total air content in ice cores by wet extraction
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New technique for high-precision, simultaneous measurements of CH4, N2O and CO2 concentrations; isotopic and elemental ratios of N2, O2 and Ar; and total air content in ice cores by wet extraction

机译:高精度,同时测量CH4,N2O和CO2浓度的新技术; N2,O2和Ar的同位素和元素比例;湿萃取和冰芯中的总空气含量

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Air in polar ice cores provides unique information on past climatic and atmospheric changes. We developed a new method combining wet extraction, gas chromatography and mass spectrometry for high-precision, simultaneous measurements of eight air components (CH4, N2O and CO2 concentrations; δ15N, δ18O, δO2∕N2 and δAr∕N2; and total air content) from an ice-core sample of ~?60?g. The ice sample is evacuated for ~?2?h and melted under vacuum, and the released air is continuously transferred into a sample tube at 10?K within 10?min. The air is homogenized in the sample tube overnight at room temperature and split into two aliquots for mass spectrometric and gas chromatographic measurements. Care is taken to minimize (1)?contamination of greenhouse gases by using a long evacuation time, (2)?consumption of oxygen during sample storage by a passivation treatment on sample tubes, and (3)?fractionation of isotopic ratios with a long homogenization time for splitting. Precision is assessed by analyzing standard gases with artificial ice and duplicate measurements of the Dome Fuji and NEEM ice cores. The overall reproducibility (1 SD) of duplicate ice-core analyses are 3.2?ppb, 2.2?ppb and 2.9?ppm for CH4, N2O and CO2 concentrations; 0.006?‰, 0.011?‰, 0.09?‰ and 0.12?‰ for δ15N, δ18O, δO2∕N2 and δAr∕N2; and 0.63?mLSTP?kg?1 for total air content, respectively. Our new method successfully combines the high-precision, small-sample and multiple-species measurements, with a wide range of applications for ice-core paleoenvironmental studies.
机译:Polar Ice Cores中的空气提供有关过去的气候和大气变化的独特信息。我们开发了一种结合湿萃取,气相色谱和质谱法的新方法,用于高精度,同时测量八个空气成分(CH4,N2O和CO2浓度;Δ15n,δ18o,ΔO2/ n2和Δar/ n2;和总空气含量)从〜60?g的冰核样品。冰上样品被抽空〜2?H并在真空下熔化,并且释放的空气在10℃以内以10·k连续转移到样品管中。将空气在样品管中均质化过夜,在室温下分为两个等分试样,用于质谱和气相色谱测量。通过使用长时间的疏散时间来减少(1)克服温室气体的污染,(2)?通过对样品管的钝化处理在样品储存期间氧气消耗,(3)?同位素比率长分裂的均质时间。通过分析具有人造冰的标准气体和圆顶富士和雷尼冰芯的重复测量来评估精度。重复冰核分析的总体再现性(1 SD)为3.2?PPB,2.2?PPB和2.9〜9?PPM,用于CH 4,N2O和CO2浓度; 0.006?‰,0.011?‰,0.09?‰和0.12≤δ15n,δ18o,ΔO2/ n2和Δar/ n2;和0.63?mlstp?kg?1分别用于总空气含量。我们的新方法成功结合了高精度,小样品和多种测量,具有广泛的冰核古环境研究应用。
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