首页> 外文期刊>Tellus, Series B. Chemical and Physical Meteorology >Assessment of winter fluxes of CO2 and CH4 in boreal forest soils of central Alaska estimated by the profile method and the chamber method: a diagnosis of methane emission and implications for the regional carbon budget
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Assessment of winter fluxes of CO2 and CH4 in boreal forest soils of central Alaska estimated by the profile method and the chamber method: a diagnosis of methane emission and implications for the regional carbon budget

机译:用廓线法和室法估算阿拉斯加中部北方森林土壤冬季的CO2和CH4通量:甲烷排放量的诊断及其对区域碳预算的影响

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摘要

This research was carried out to estimate the winter fluxes of CO2 and CH4 using the concentration profile method and the chamber method in black spruce forest soils in central Alaska during the winter of 2004/5. The average winter fluxes of CO2 and CH4 by chamber and profile methods were 0.24 +/- 0.06 (SE; standard error) and 0.21 +/- 0.06 gCO(2)-C/m(2)/d, and 21.4 +/- 5.6 and 21.4 +/- 14 mu gCH(4)-C/m(2)/hr. This suggests that the fluxes estimated by the two methods are not significantly different based on a one-way ANOVA with a 95% confidence level. The hypothesis on the processes of CH4 transport/production/emission in underlying snow-covered boreal forest soils is proven by the pressure differences between air and in soil at 30 cm depth. The winter CO2 emission corresponds to 23% of the annual CO2 emitted from Alaska black spruce forest soils, which resulted in the sum of mainly root respiration and microbial respiration during the winter based on the delta(CO2)-C-13 of -22.5 parts per thousand. The average wintertime emissions of CO2 and CH4 were 49 +/- 13 gCO(2)-C/m(2)/season and 0.11 +/- 0.07 gCH(4)-C/m(2)/season, respectively. This implies that winter emissions of CO2 and CH4 are an important part of the annual carbon budget in seasonally snow-covered terrain of typical boreal forest soils.
机译:进行了这项研究,以使用浓度分布图方法和箱式方法估算2004/5冬季阿拉斯加中部黑云杉林土壤的冬季CO2和CH4通量。通过腔室法和剖面法得出的冬季平均CO2和CH4通量为0.24 +/- 0.06(SE;标准误差)和0.21 +/- 0.06 gCO(2)-C / m(2)/ d和21.4 +/- 5.6和21.4 +/- 14μg CH(4)-C / m(2)/ hr。这表明,基于具有95%置信度的单向方差分析,两种方法估算的通量没有显着差异。下层积雪的北方森林土壤中CH4的运输/生产/排放过程的假设通过空气与30 cm深度的土壤之间的压力差证明。冬季CO2排放量相当于阿拉斯加黑云杉林土壤每年CO2排放量的23%,这导致冬季的根部呼吸作用和微生物呼吸作用的总和是基于-22.5份的δ(CO2)-C-13得出的每千。冬季平均CO2和CH4的排放分别为49 +/- 13 gCO(2)-C / m(2)/季节和0.11 +/- 0.07 gCH(4)-C / m(2)/季节。这意味着在典型的北方森林土壤的季节性积雪地形中,冬季的CO2和CH4排放是年度碳收支的重要组成部分。

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