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Predicting soil respiration for the Qinghai-Tibet Plateau: An empirical comparison of regression models
Bosch, Anna ; Doerfer, Corina ; He, Jin-Sheng ; Schmidt, Karsten ; Scholten, Thomas
刊名PEDOBIOLOGIA
2016
关键词Soil respiration Regression model Qinghai-Tibet Plateau WorldClim CO2 EFFLUX TEMPERATURE SENSITIVITY PERMAFROST DEGRADATION GLOBAL DATABASE ORGANIC-CARBON ALPINE MEADOW WATER-CONTENT FOREST SOIL HIGH ASIA PRECIPITATION
DOI10.1016/j.pedobi.2016.01.002
英文摘要Alpine ecosystems like the Qinghai-Tibet Plateau strongly respond to global warming. Their soils, containing large carbon stocks, release more carbon dioxide as a possible consequence. Reciprocally, this may intensify climate warming. The Qinghai-Tibet plateau's large and almost inaccessible terrain results in a general data scarcity for this area making the quantification of soil carbon dynamics challenging. The current study provides an area-wide estimation of soil respiration for the Qinghai-Tibet Plateau, which is a key region for climate change studies due to its size and sensitivity. We compared the ability of six regression models to predict soil respiration that were developed within different studies and are based on mean annual air temperature, mean annual precipitation and belowground biomass. We used the WorldClim data sets to approximate annual soil respiration on a regional scale. Compared to field measurements of soil respiration at single spots in different vegetation zones on the Qinghai-Tibet Plateau (max. 1876.63 g Cm-2 year(-1)), our predicted results (max. 1765.13 g Cm-2 year-1) appear to be consistent. The basic difference between grasslands and forests in soil respiration is indicated by all regression models, however, a more precise differentiation between vegetation types is only exhibited by the regression model based on mean annual precipitation. Overall, this model performs best for most and the largest vegetation zones. Nevertheless, the approximations of the model based on mean annual temperature by Raich and Schlesinger (1992) with a lower constant better represent the vegetation zone of the alpine steppe. With this spatial estimation of soil respiration at a regional scale, a basis for assessing an area-specific potential of greenhouse gas emissions on the Qinghai-Tibet Plateau is provided. Moreover, we quantify a complex soil ecological process for this data-scarce area. (C) 2016 Elsevier GmbH. All rights reserved.; Ev. Studienwerk Villigst e.V.; German Federal Ministry for Education and Research (BMBF) [03G0810A]; SCI(E); ARTICLE; anna.bosch@geographie.uni-tuebingen.de; 1-2; 41-49; 59
语种英语
内容类型期刊论文
源URL[http://ir.pku.edu.cn/handle/20.500.11897/438892]  
专题城市与环境学院
推荐引用方式
GB/T 7714
Bosch, Anna,Doerfer, Corina,He, Jin-Sheng,et al. Predicting soil respiration for the Qinghai-Tibet Plateau: An empirical comparison of regression models[J]. PEDOBIOLOGIA,2016.
APA Bosch, Anna,Doerfer, Corina,He, Jin-Sheng,Schmidt, Karsten,&Scholten, Thomas.(2016).Predicting soil respiration for the Qinghai-Tibet Plateau: An empirical comparison of regression models.PEDOBIOLOGIA.
MLA Bosch, Anna,et al."Predicting soil respiration for the Qinghai-Tibet Plateau: An empirical comparison of regression models".PEDOBIOLOGIA (2016).
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