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In situ measurement of CO2 and water vapour isotopic compositions at a forest site using mid-infrared laser absorption spectroscopy
Authors:Ryuichi Wada  Satoru Takanashi  Yuichiro Nakai  Tomoki Nakayama  Mai Ouchi
Institution:1. Institute for Space–Earth Environmental Research, Nagoya University, Nagoya, Japan;2. Department of Natural and Environmental Science, Teikyo University of Science, Uenohara, Japan;3. Department of Meteorological Environment, Forestry and Forest Products Research Institute, Tsukuba, Japan;4. Graduate School of Science, Nagoya University, Nagoya, Japan;5. Graduate School of Science, Nagoya University, Nagoya, Japan
Abstract:We conducted continuous, high time-resolution measurements of CO2 and water vapour isotopologues (16O12C16O, 16O13C16O and 18O12C16O for CO2, and H218O for water vapour) in a red pine forest at the foot of Mt. Fuji for 9 days from the end of July 2010 using in situ absorption laser spectroscopy. The δ18O values in water vapour were estimated using the δ2H–δ18O relationship. At a scale of several days, the temporal variations in δ18O-CO2 and δ18O-H2O are similar. The orders of the daily Keeling plots are almost identical. A possible reason for the similar behaviour of δ18O-CO2 and δ18O-H2O is considered to be that the air masses with different water vapour isotopic ratios moved into the forest, and changed the atmosphere of the forest. A significant correlation was observed between δ18O-CO2 and δ13C-CO2 values at nighttime (r2≈0.9) due to mixing between soil (and/or leaf) respiration and tropospheric CO2. The ratios of the discrimination coefficients (Δa/Δ) for oxygen (Δa) and carbon (Δ) isotopes during photosynthesis were estimated in the range of 0.7–1.2 from the daytime correlations between δ18O-CO2 and δ13C-CO2 values.
Keywords:Carbon-13  forest  discrimination coefficient  hydrogen-2  isotope measurement methods and equipment  isotope ecology  isotopologues  laser spectroscopy  oxygen-18  temporal variations  water vapour
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