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1 0 5 4                                广  西  植  物                                         46 卷
                                                                 2006. 人工 林 经 营 与 全 球 变 化 减 缓 [ J]. 生 态 学 报ꎬ
            参考文献:                                                26(11): 3870-3877.]
                                                               FENG Y Mꎬ LÜ C Yꎬ WANG Lꎬ et al.ꎬ 2023. Carbon and
                                                                 nitrogen storage and allocation patterns of Picea crassifolia
            Academy of Forestry Inventory and Planningꎬ NFGAꎬ East
              Academy of Forestry Inventory and Planningꎬ AFGAꎬ Central  forest with different stand density [J]. Arid Land Geographyꎬ
              South Academy of Forestry Inventory and Planningꎬ NFGAꎬ  46(7): 1133-1144. [冯宜明ꎬ 吕春燕ꎬ 王零ꎬ 等ꎬ 2023. 不
                                                                 同林分密度青海云杉林碳氮储量及其分配格局 [J]. 干旱
              et al.ꎬ 2024. Tree biomass models and related parameters to
              carbon accounting for major tree species GB/ T 43648—2024  区地理ꎬ 46(7): 1133-1144.]
              [S]. Beijing: China Standards Press: 244. [国家林业和草  JIANG Y Mꎬ LYU M Kꎬ LU Y Mꎬ et al.ꎬ 2025. Lignin ̄
              原局林草调查规划院ꎬ 国家林业和草原局华东调查规划                          microbial necromass carbon coupling drives the vertical
              院ꎬ 国家林业和草原局中南调查规划院ꎬ 等ꎬ 2024. 主要                    stratification mechanism of deep soil carbon sequestration in
              树种立木生物量模型与碳计量参数 [S]. 北京: 中国标准                      subtropical forests [J]. Journal of Applied Ecologyꎬ 62(12):

              出版社: 244.]                                         3550-3564.
            BINKLEY Dꎬ CAMPOE O Cꎬ GSPALTL Mꎬ et al.ꎬ 2013. Light  KASSIER H Wꎬ 2011. Forest dynamicsꎬ growth and yield:
              absorption and use efficiency in forests: Why patterns differ  From measurement to model [J]. Southern Forests: a Journal
              for trees and stands [J]. Forest Ecology and Managementꎬ  of Forest Scienceꎬ 73(1): 63-65.
              288: 5-13.                                       KIM Cꎬ JEONG Jꎬ CHO H Sꎬ et al.ꎬ 2010. Carbon and nitrogen
            BINKLEY Dꎬ STAPE J Lꎬ BAUERLE W Lꎬ et al.ꎬ 2010.     status of litterfallꎬ litter decomposition and soil in even ̄aged
              Explaining growth of individual trees: Light interception and  larchꎬ red pine and rigitaeda pine plantations [J]. Journal of
              efficiency of light use by Eucalyptus at four sites in Brazil  Plant Researchꎬ 123: 403-409.
              [J]. Forest Ecology and Managementꎬ 259(9): 1704-1713.  LI H Xꎬ MA H Lꎬ YIN Y Fꎬ et al.ꎬ 2023. Dynamic of labileꎬ
            BINKLEY Dꎬ STAPE J Lꎬ RYAN M Gꎬ 2004. Thinking about  recalcitrant  carbon  and  nitrogen  during  the  litter
              efficiency of resource use in forests [J]. Forest Ecology and  decomposition in a subtropical natural broadleaf forest
              Managementꎬ 193(1/ 2): 5-16.                       [J]. Chinese Journal of Plant Ecologyꎬ 47 ( 5): 618 -
            CHEN Cꎬ PARK Tꎬ WANG X Hꎬ et al.ꎬ 2019. China and India  628. [李慧璇ꎬ 马红亮ꎬ 尹云锋ꎬ 等ꎬ 2023. 亚热带天然阔
              lead in greening of the world through land ̄use management  叶林凋 落 物 分 解 过 程 中 活 性、惰 性 碳 氮 的 动 态 特 征
              [J]. Nature Sustainabilityꎬ 2(2): 122-129.         [J]. 植物生态学报ꎬ 47(5): 618-628.]
            CHEN L Sꎬ ZHANG L Qꎬ SONG Z Bꎬ et al.ꎬ 2022. Main shrub  LI W Yꎬ 2022. Analysis of space ̄time evolution of forest
              community types and soil water holding characteristics in  ecosystem security assessment in Gannan Prefectureꎬ Gansu
              Bailong River arid valley [J]. Journal of Anhui Agricultural  Province [D]. Beijing: Beijing Forestry University. [李婉
              Sciencesꎬ 50(22): 111-113ꎬ 163. [陈林生ꎬ 张岚琦ꎬ 宋占      莹ꎬ 2022. 甘肃省甘南州森林生态系统安全评价及时空演
              邦ꎬ 等ꎬ 2022. 白龙江干旱河谷灌丛群落类型与土壤持水                     变分析 [D]. 北京: 北京林业大学.]
              特性 [J]. 安徽农业科学ꎬ 50(22): 111-113ꎬ 163.]           LI Xꎬ RAMOS AGUILA L Cꎬ WU D Hꎬ et al.ꎬ 2023. Carbon
            CHEN Xꎬ ZHOU X Gꎬ WEN Y Gꎬ et al.ꎬ 2025. Carbon storage  sequestration and storage capacity of Chinese fir at different
              and allocation characteristics in three plantation ecosystems in  stand ages [ J ]. Science of the Total Environmentꎬ
              a karst rocky desertification area [J]. Guangxi Sciencesꎬ 32  904: 166962.
              (3): 471-480. [陈鑫ꎬ 周晓果ꎬ 温远光ꎬ 等ꎬ 2025. 岩溶         LIU S Rꎬ WANG Hꎬ LI H Kꎬ et al.ꎬ 2024. Projections of
              石漠化区 3 种人工林生态系统碳储量及其分配特征                           China’s forest carbon storage and sequestration and ways of
              [J]. 广西科学ꎬ 32(3): 471-480.]                        their potential capacity enhancement [ J]. Scientia Silvae
            FANG J Yꎬ CHEN A Pꎬ 2001. Dynamic forest biomass carbon  Sinicaeꎬ 60(4): 157-172. [刘世荣ꎬ 王晖ꎬ 李海奎ꎬ 等ꎬ
              pools in China and their significance [ J]. Acta Botanica  2024. 碳中和目标下中国森林碳储量、碳汇变化预估与潜
              Sinicaꎬ 43(9): 967-973. [方精云ꎬ 陈安平ꎬ 2001. 中国森       力提升途径 [J]. 林业科学ꎬ 60(4): 157-172.]
              林植被碳库的动态变化及其意义 [J]. 植物学报ꎬ 43(9):                 LIU T Rꎬ PENG D Lꎬ TAN Z Jꎬ et al.ꎬ 2021. Effects of stand
              967-973.]                                          density on soil respiration and labile organic carbon in
            FENG R Fꎬ YANG W Qꎬ ZHANG Jꎬ 2006. Artificial forest  different aged Larix principis ̄rupprechtii plantations [ J ].
              management for global change mitigation [J]. Acta Ecologica  Ecological Processesꎬ 10: 44.
              Sinicaꎬ 26(11): 3870- 3877. [冯瑞芳ꎬ 杨万勤ꎬ 张健ꎬ       MING A Gꎬ JIA H Yꎬ TIAN Z Wꎬ et al.ꎬ 2014. Characteristics
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