TY - JOUR
T1 - Uncertainties in static closed chamber measurements of the carbon isotopic ratio of soil-respired CO2
AU - Ohlsson, Anders
AU - Singh, Bhupinderpal
AU - Holm, Sören
AU - Nordgren, Anders
AU - Lövdahl, Lars
AU - Högberg, Peter
PY - 2005
Y1 - 2005
N2 - The delta(13)C of soil-respired CO2 (delta(r)) is frequently determined using static closed chamber methods. 6, is obtained as the intercept of the least squares linear regression of delta vs 1/C*, where measured delta(13)C-CO2 (delta) and volume fraction Of CO2 (C*) values of chamber headspace samples are used. Theoretically, we show that the variance of the estimate Of delta(r) can be reduced by extending the 1/C* interval of the regression towards (i) higher or (ii) lower values, or (iii) distributing the 1/C* values optimally within the pre-selected headspace CO2 sampling time period. Experimental applications of these approaches indicated that: (1) lowering the initial CO2 level, thereby increasing 1/C*, yielded a positive bias to the 6, result. (2) It was feasible to obtain lower variance in the 6, estimate by lowering 1/C* values through extended CO2 sampling time. We also recommend that each chamber is sampled only once, mainly because this allows freedom to select the sampling times, in order to optimize the distribution of 1/C* values. (c) 2005 Elsevier Ltd. All rights reserved
AB - The delta(13)C of soil-respired CO2 (delta(r)) is frequently determined using static closed chamber methods. 6, is obtained as the intercept of the least squares linear regression of delta vs 1/C*, where measured delta(13)C-CO2 (delta) and volume fraction Of CO2 (C*) values of chamber headspace samples are used. Theoretically, we show that the variance of the estimate Of delta(r) can be reduced by extending the 1/C* interval of the regression towards (i) higher or (ii) lower values, or (iii) distributing the 1/C* values optimally within the pre-selected headspace CO2 sampling time period. Experimental applications of these approaches indicated that: (1) lowering the initial CO2 level, thereby increasing 1/C*, yielded a positive bias to the 6, result. (2) It was feasible to obtain lower variance in the 6, estimate by lowering 1/C* values through extended CO2 sampling time. We also recommend that each chamber is sampled only once, mainly because this allows freedom to select the sampling times, in order to optimize the distribution of 1/C* values. (c) 2005 Elsevier Ltd. All rights reserved
UR - https://res.slu.se/id/publ/6020
U2 - 10.1016/j.soilbio.2005.03.023
DO - 10.1016/j.soilbio.2005.03.023
M3 - Journal article
SN - 0038-0717
VL - 37
SP - 2273
EP - 2276
JO - Soil Biology and Biochemistry
JF - Soil Biology and Biochemistry
IS - 12
ER -