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生态学杂志 ›› 2026, Vol. 45 ›› Issue (7): 2195-2203.doi: 10.13292/j.1000-4890.202606.023

• 研究报告 • 上一篇    下一篇

基于样地调查和连续清查的辽宁省森林生物量碳储量及潜力估算

景春林1,2,7,周旺明3,7,许鹏4,张恒明5,谷薇薇4,周永斌6,7,魏亚伟1,7*   

  1. (1沈阳农业大学林学院, 沈阳 110866; 2中国林业科学研究院亚热带林业研究所, 杭州 311400; 3安庆师范大学生命科学学院, 安徽安庆 246133; 4辽宁有色勘察研究院有限责任公司, 沈阳 110013; 5辽宁省环境规划院有限公司, 沈阳 110031; 6大连大学生命健康学院, 辽宁大连 116622; 7辽宁辽河平原农田防护林生态系统定位观测研究站, 辽宁昌图 112500)
  • 出版日期:2026-07-10 发布日期:2026-07-10

Estimation of forest biomass carbon storage and sequestration potential in Liaoning Province based on plot survey and continuous inventory.

JING Chunlin1,2,7, ZHOU Wangming3,7, XU Peng4, ZHANG Hengming5, GU Weiwei4, ZHOU Yongbin6,7, WEI Yawei1,7*   

  1. (1College of Forestry, Shenyang Agricultural University, Shenyang 110866, China; 2Research Institute of Subtropical Forestry, Chinese Academy of Forestry, Hangzhou 311400, China; 3College of Life Sciences, Anqing Normal University, Anqing 246133, Anhui, China; 4Liaoning Non-Ferrous Geological Exploration and Research Institute Co., Ltd., Shenyang 110013, China; 5Liaoning Academy for Environmental Planning Co., Ltd., Shenyang 110031, China; 6School of Life and Health, Dalian University, Dalian 116622, Liaoning, China; 7Research Station of Liaoning Liaohe-River Plain Farmland Shelterbelt Ecosystem CEN, Changtu 112500, Liaoning, China).

  • Online:2026-07-10 Published:2026-07-10

摘要: 森林是陆地生态系统的主体,精确估算其生物量碳储量及其固碳潜力对更好地实现“双碳”目标具有重要的指导意义。本研究借助辽宁省内923块样地调查数据在林分尺度上构建了省内主要林分类型的生物量和蓄积量数据库以及12个主要森林类型的生物量蓄积量转换方程,进一步结合连续9次(1973—2018年)森林资源清查和灰色预测模型,对辽宁省森林生物量碳储量进行精确估算和固碳潜力评估。结果表明:与1973—1976年相比,2014—2018年辽宁省森林生物量碳储量和碳密度分别增加了165.53%和57.86%,达152.92 Tg C和35.93 Mg C·hm-2。其中生物量碳储量按林龄计,以中、幼龄林最多(占比>53.87%),按森林类型计,阔叶混交林最高(占比>40.96%),按区域计,辽东地区最高(占比>72.33%)。至2035和2060年,辽宁省森林生物量碳储量将达262.06~275.67和586.34~592.23 Tg C,潜力巨大。研究结果实现了生物量碳储量在立木-林分-区域尺度的转换,为辽宁省未来森林生态系统的管理和“双碳”目标的实现奠定了基础,也为我国其他地区森林生物量碳储量的精确估算提供了参考。


关键词: 生物量-蓄积量转换模型, 生物量碳储量, 生物量碳密度, 固碳潜力, 灰色预测模型

Abstract: As a dominant component of terrestrial ecosystems, forests play a crucial role in carbon storage and sequestration. It is of important guiding significance to accurately estimate forest carbon storage and sequestration potential for better achieving China’s “dual carbon” goals. Using 923 forest plots data across Liaoning Province, we established stand-level databases of the biomass and volume for main forest types, and constructed the biomass-volume conversion equations of 12 forest types in the region. These equations were further combined with information from nine consecutive national forest resource inventories (1973-2018) and a grey prediction model to estimate forest biomass carbon storage and carbon sequestration potential in Liaoning Province. Results showed that compared with the period of 1973-1976, forest biomass carbon storage and carbon density in 2014-2018 increased by 165.53% and 57.86%, being 152.92 Tg C and 35.93 Mg C·hm-2, respectively. Across age classes, biomass carbon storage of middle-aged and young forests contributed the largest proportion, accounting for more than 53.87% of the total. Among forest types, the mixed broad-leaved forests held the highest biomass carbon storage, comprising more than 40.96% to the total. Regionally, the eastern part of Liaoning contributed the most proportion, accounting 72.33% of the total forest biomass carbon storage. By 2035 and 2060, forest biomass carbon storage is projected to reach 262.06-275.67 and 586.34-592.23 Tg C, respectively, highlighting the region’s considerable biomass carbon sequestration potential. Our results realized the conversion of biomass carbon storage from the individual tree to stand and regional scales, laying a foundation for the management of forest ecosystems and the achievement of the “dual carbon” goals in Liaoning Province, and providing a reference for the accurate estimation of forest biomass carbon storage in other regions of China.


Key words: biomass-volume conversion model, biomass carbon storage, biomass carbon density, carbon sequestration potential, grey prediction model