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논문 기본 정보

자료유형
학술저널
저자정보
Kim, Hyun (Jeonbuk Forest Environment Research Institute) Kim, Hyun-Jun (Department of Forest Environmental Science, Chonbuk National University) Lee, Kyeong-Hak (Korea Forest Research Institute) Son, Young-Mo (Korea Forest Research Institute) Lee, Kwang-Soo (Korea Forest Research Institute) Lee, Sang-Hyun (Department of Forest Environmental Science, Chonbuk National University)
저널정보
한국응용생명화학회 Applied Biological Chemistry Applied Biological Chemistry 제54권 제5호
발행연도
2011.1
수록면
758 - 762 (5page)

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초록· 키워드

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Biomass conversion factors such as stem densities and biomass expansion factors of eight tree species and their applicability as national factors were determined. The stem densities of Cryptomeria japonica (III), Chamaecyparis obtuse (III), Pinus densiflora (IV), Pinus rigida (IV), Pinus koraiensis (IV), Larix leptolepis (IV), Quercus acutissima (III), and Liriodendron tulipifera (IV) were 0.37, 0.33, 0.46, 0.41, 0.58, 0.65, 0.88, and 0.58 g/ $cm^3$, respectively. The biomass expansion factors of C. japonica (III), C. obtuse (III), P. densiflora (IV), P. rigida (IV), P. koraiensis (IV), and L. leptolepis (IV) were 1.393, 1.360, 1.150, 1.136, 1.212, and 1.097 (aboveground), respectively. Q. acutissima (III) had biomass expansion factors of 1.133 (aboveground) and 1.185 (underground), and L. tulipifera (IV) had biomass expansion factors of 1.161 (aboveground) and 1.216 (underground). As a result of verifying applicability as national factors using the investigated factors, it could be assumed that the stem density (0.47 g/ $cm^3$) and biomass expansion factor (1.29 aboveground) in coniferous trees and the stem density (0.65 g/ $cm^3$) and biomass expansion factor (1.22 aboveground) in hardwood trees were suitable for determining biomass. Based on these results, precise estimation of forest biomass classified by forest type, tree species, and age classes of Jeonbuk region would be possible.

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