Stocks and dynamics of soil organic carbon and coarse woody debris in three managed and unmanaged temperate forests

被引:0
作者
Inken Krueger
Christoph Schulz
Werner Borken
机构
[1] University of Bayreuth,Department of Soil Ecology, Bayreuth Center of Ecology and Environmental Research
[2] Bavarian State Institute of Forestry,undefined
[3] LWF,undefined
来源
European Journal of Forest Research | 2017年 / 136卷
关键词
Forest management; Forest conservation; Carbon stock; Coarse woody debris; Forest soil; Organic layer; Radiocarbon; Soil organic carbon;
D O I
暂无
中图分类号
学科分类号
摘要
The effect of forest conservation on the organic carbon (C) stock of temperate forest soils is hardly investigated. Coarse woody debris (CWD) represents an important C reservoir in unmanaged forests and potential source of C input to soils. Here, we compared aboveground CWD and soil C stocks at the stand level of three unmanaged and three adjacent managed forests in different geological and climatic regions of Bavaria, Germany. CWD accumulated over 40–100 years and yielded C stocks of 11 Mg C ha−1 in the unmanaged spruce forest and 23 and 30 Mg C ha−1 in the two unmanaged beech–oak forests. C stocks of the organic layer were smaller in the beech–oak forests (8 and 19 Mg C ha−1) and greater in the spruce forest (36 Mg C ha−1) than the C stock of CWD. Elevated aboveground CWD stocks did not coincide with greater C stocks in the organic layers and the mineral soils of the unmanaged forests. However, radiocarbon signatures of the Oe and Oa horizons differed among unmanaged and managed beech–oak forests. We attributed these differences to partly faster turnover of organic C, stimulated by greater CWD input in the unmanaged forest. Alternatively, the slower turnover of organic C in the managed forests resulted from lower litter quality following thinning or different tree species composition. Radiocarbon signatures of water-extractable dissolved organic carbon (DOC) from the top mineral soils point to CWD as potent DOC source. Our results suggest that 40–100 years of forest protection is too short to generate significant changes in C stocks and radiocarbon signatures of forest soils at the stand level.
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页码:123 / 137
页数:14
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