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Litterfall과 토양호흡 측정에 의한 신갈나무 천연림의 지하부 탄소 분배
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  • Litterfall과 토양호흡 측정에 의한 신갈나무 천연림의 지하부 탄소 분배
저자명
이명종,손요환,진현오,박인협,김동엽,김용석,신동민,Yi. Myong-Jong,Son. Yowhan,Jin. Hyun-O,Park. In-Hyeop,Kim. Dong-Yeop,Kim. Yong-Suk,Shin. Dong-Min
간행물명
한국농림기상학회지
권/호정보
2005년|7권 3호|pp.227-234 (8 pages)
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한국농림기상학회
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
서지반출

기타언어초록

From published data of mature forests worldwide, Raich and Nadelhoffer suggested that total belowground carbon allocation (TBCA) could be estimated from the difference between annual rates of soil respiration and aboveground litterfall. Here we analyze new measurements of IRGA-based soil respiration and litterfall of natural mature oak forests dominated by Quercus mongolica in Korea. Rates of in situ soil respiration and aboveground litter production are highly and positively correlated. Our results disagree with the Raich and Nadelhoffer model far world forests. A regression analysis of the data from Q. mongolica forests produced the following relationship: annual soil respiration : 141 + 2.08 ${ imes}$ annual litterfall. The least squares regression line has a more gentle slope (2.08) than the slope (2.92) described by Raich and Nedelhoffer for mature forests worldwide. The regression slope of our study indicates that, on average, soil respiration is about two times the aboveground litterfall-C, which further implies that TBCA is similar with annual aboveground litterfall-C at natural Q. mongolica forests in Korea. The non-zero Y-intercept (141) of the regression indicates that TBCA may be greater than litterfall-C where litterfall rate are relativery low. Over a gradient of litterfall-C ranging from 200-370 g C $m^{-2}yr^{-l}$, TBCA increased from 350-530 g C $m^{-2}yr^{-l}$.