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Cited 38 time in webofscience Cited 41 time in scopus
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Influence of stand density on soil CO2 efflux for a Pinus densiflora forest in Korea

Authors
Noh, N.J.Son, Y.Lee, S.K.Yoon, T.K.Seo, K.W.Kim, C.Lee, W.-K.Bae, S.W.Hwang, J.
Issue Date
Jul-2010
Publisher
Springer Verlag
Keywords
Litterfall; Pinus densiflora; Soil CO2 efflux; Soil nitrogen; Soil temperature; Soil water content; Stand density
Citation
Journal of Plant Research, v.123, no.4, pp 411 - 419
Pages
9
Indexed
SCI
SCIE
SCOPUS
Journal Title
Journal of Plant Research
Volume
123
Number
4
Start Page
411
End Page
419
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/25955
DOI
10.1007/s10265-010-0331-8
ISSN
0918-9440
1618-0860
Abstract
We investigated the influence of stand density [938 tree ha-1 for high stand density (HD), 600 tree ha-1 for medium stand density (MD), and 375 tree ha-1 for low stand density (LD)] on soil CO2 efflux (RS) in a 70-year-old natural Pinus densiflora S. et Z. forest in central Korea. Concurrent with RS measurements, we measured litterfall, total belowground carbon allocation (TBCA), leaf area index (LAI), soil temperature (ST), soil water content (SWC), and soil nitrogen (N) concentration over a 2-year period. The RS (t C ha-1 year-1) and leaf litterfall (t C ha-1 year-1) values varied with stand density: 6.21 and 2.03 for HD, 7.45 and 2.37 for MD, and 6.96 and 2.23 for LD, respectively. In addition, RS was correlated with ST (R2 = 0.77-0.80, P < 0.001) and SWC (R2 = 0.31-0. 35, P < 0.001). It appeared that stand density influenced RS via changes in leaf litterfall, LAI and SWC. Leaf litterfall (R2 = 0.71), TBCA (R2 = 0.64-0.87), and total soil N contents in 2007 (R2 = 0.94) explained a significant amount of the variance in RS (P < 0.01). The current study showed that stand density is one of the key factors influencing RS due to the changing biophysical and environmental factors in P. densiflora. ? 2010 The Botanical Society of Japan and Springer.
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농업생명과학대학 > 환경산림과학부 > Journal Articles

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