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首页> 外文期刊>Atmospheric Measurement Techniques Discussions >A new instrument for stable isotope measurements of 13C and 18O in CO2 – instrument performance and ecological application of the Delta Ray IRIS analyzer
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A new instrument for stable isotope measurements of 13C and 18O in CO2 – instrument performance and ecological application of the Delta Ray IRIS analyzer

机译:CO2 - 仪器性能和三角射线虹膜分析仪13C和18O稳定同位素测量的新仪器

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We used the recently developed commercially available Delta Ray isotope ratio infrared spectrometer (IRIS) to continuously measure the CO2 concentration c and its isotopic composition δ13C and δ18O in a managed beech forest in central Germany. Our objectives are (a)?to characterize the Delta Ray IRIS and evaluate its internal calibration procedure and (b)?to quantify the seasonal variability of c, δ13C, δ18O and the isotopic composition of nighttime net ecosystem CO2 exchange (respiration) Reco13C and Reco18O derived from Keeling plot intercepts. The analyzer's minimal Allan deviation (as a measure of precision) was below 0.01?ppm for the CO2 concentration and below 0.03?‰ for both δ values. The potential accuracy (defined as the 1σ deviation from the respective linear regression that was used for calibration) was approximately 0.45?ppm for c, 0.24?‰ for 13C and 0.3?‰ for 18O. For repeated measurements of a target gas in the field, the long-term standard deviation from the mean was 0.3?ppm for c and below 0.3?‰ for both δ values. We used measurements of nine different inlet heights to evaluate the isotopic compositions of nighttime net ecosystem CO2 exchange Reco13C and Reco18O in a 3-month measurement campaign in a beech forest in autumn 2015. During this period, an early snow and frost event occurred, coinciding with a change in the observed characteristics of both Reco13C and Reco18O. Before the first snow, Reco13C correlated significantly (p????10?4) with time-lagged net radiation Rn, a driver of photosynthesis and photosynthetic discrimination against 13C. This correlation became insignificant (p????0.1) for the period after the first snow, indicating a decoupling of δ13C of respiration from recent assimilates. For 18O, we measured a decrease of 30?‰ within 10?days in Reco18O after the snow event, potentially reflecting the influence of 18O depleted snow on soil moisture. This decrease was 10?times larger than the corresponding decrease in δ18O in ambient CO2 (below 3?‰) and took 3?times longer to recover (3?weeks vs. 1?week). In summary, we conclude that (1)?the new Delta Ray IRIS with its internal calibration procedure provides an opportunity to precisely and accurately measure c, δ13C and δ18O at field sites and (2)?even short snow or frost events might have strong effects on the isotopic composition (in particular 18O) of CO2 exchange on an ecosystem scale.
机译:我们使用最近开发的商业上可用的δ射线同位素比率红外光谱仪(虹膜),以在德国的管理山毛榉森林中连续测量CO 2浓度C及其同位素组成δ13C和Δ18O。我们的目标是(a)?表征Delta射线虹膜并评估其内部校准程序和(b)?量化C,Δ13c,δ18o和夜间净生态系统CO2交换(呼吸)Reco13c的同位素组成的季节性变异性Reco18o源自Keeling Plot拦截。分析仪的最小艾伦偏差(作为精度测量)低于0.01〜ppm,用于CO 2浓度,低于0.03Ω·值。电位精度(定义为与校准的各个线性回归的1σ偏差)为C,对于13C和0.3Ω,0.24×1,为13℃。对于该场中目标气体的重复测量,来自平均值的长期标准偏差为0.3μm,对于δ值,C和0.3℃以下。我们使用九种不同入口高度的测量来评估夜间净生态系统CO2交换RECO13C和RECO18O的同位素组成,并在2015年山毛榉森林中的3个月测量活动中。在此期间,发生了早期的雪和霜冻活动,恰逢随着RECO13C和RECO18O的观察到特征的变化。在第一次雪之前,Reco13C与时间滞后的净辐射RN相关,光合作用驾驶员和针对13℃的光合辨别的驾驶员相关联(P ??? 10?4)。在第一雪后的时期,这种相关性变得微不足道(p ???? 0.1),表明近期同化的呼吸Δ13c的去耦。对于18O来说,我们在雪事件之后的Reco18O中测量了30次?‰在10?天内,可能反映了180耗尽雪对土壤水分的影响。这种降低比环境CO2中的Δ18O相应的相应减少(低于3?‰)并花3倍以恢复3倍(3?周与1?周)。总之,我们得出结论(1)?具有其内部校准程序的新三角射线虹膜提供了在现场网站上精确准确地测量C,Δ13C和Δ18O的机会,(2)?即使短雪或霜冻事件也可能具有强大CO2交换对生态系统规模的同位素组成(特别是180)的影响。

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