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中国农学通报 ›› 2026, Vol. 42 ›› Issue (16): 170-180.doi: 10.11924/j.issn.1000-6850.casb2025-0967

• 资源·环境·生态·土壤·气象 • 上一篇    下一篇

气候变化背景下拉萨重大生态工程固碳效益综合分析

拉巴1(), 芦俊俊2, 尼玛卓嘎3, 赛珍1(), 刘芳2   

  1. 1 西藏拉萨市气象局, 拉萨 850000
    2 中国科学院地理科学与资源研究所, 北京 100101
    3 西藏拉萨市林周县气象局, 拉萨 850000
  • 收稿日期:2025-12-09 修回日期:2026-05-09 出版日期:2026-08-25 发布日期:2026-08-20
  • 通讯作者:
    赛珍,女,1988年出生,西藏拉萨人,高级工程师,硕士,研究方向:气象服务。通信地址:850000 西藏拉萨城关区藏热北路 拉萨市气象局,E-mail:
  • 作者简介:

    拉巴,男,1972年出生,西藏拉萨人,正高级工程师,本科,研究方向:农业气象应用与气候变化等研究工作。通信地址:850000西藏拉萨城关区藏热北路 拉萨市气象局,Tel:0891-6829972,E-mail:

  • 基金资助:
    拉萨市科技计划项目“气候变化背景下拉萨重大生态工程固碳效益研究”(LSKJ202316)

Comprehensive Analysis of Carbon Sequestration Benefits of Major Ecological Projects in Lhasa Under Background of Climate Change

LHA PA1(), LU Junjun2, NIMA ZHUOGA3, SAI Zhen1(), LIU Fang2   

  1. 1 Lhasa Meteorological Bureau, Lhasa 850000
    2 Institute of Geographic Sciences and Resources, Chinese Academy of Sciences, Beijing 100101
    3 Meteorological Bureau of Linzhou County, Lhasa 850000
  • Received:2025-12-09 Revised:2026-05-09 Published:2026-08-25 Online:2026-08-20

摘要:

科学评估全球气候变暖背景下西藏拉萨生态系统的固碳效应,核算生态工程的固碳增汇效益,为探索未来固碳提升路径。本研究以净初级生产力(NPP)作为衡量拉萨市生态系统固碳动态水平的关键指标,基于CASA模型对拉萨市生态系统固碳进行量化分析,整合拉萨市的土地利用、植被类型、气象和NDVI、遥感影像等多源数据。使用MRT、ArcGIS和ENVI软件对遥感影像进行拼接、投影转换、因子转换和裁剪等批处理,采用最大值合成法(MVC)处理,获得2000—2020年间拉萨河流域逐月和逐年的NDVI数据。结果显示,拉萨市植被的固碳能力整体维持在50~300 g C/m2的范围内。从县域尺度分析,林周县、达孜区和墨竹工卡县的平均固碳能力较高,其平均植被净初级生产力常年保持在150 g C/m2以上。森林是拉萨最主要的碳汇来源,贡献了55%的二氧化碳固定量,其次为草地与湿地,分别提供了23%与21%的碳汇贡献。拉萨市整体平均植被固碳能力为218 g C/m2,气温的升高显著增强了高海拔地区植被的固碳能力。综上,本研究揭示了典型生态工程的固碳过程、速率以及效益,阐明了拉萨南北山、退化草原、拉萨河以及重要湿地等生态修复项目下的碳储量变化和碳中和贡献,研究对比了不同生态工程实施所带来的生态系统碳储量差异及影响机制,提出了提升生态固碳与功能修复协同效应的优化路径和策略建议,旨在以科技创新助力拉萨乃至整个西藏的生态文明建设,并为实现碳达峰碳中和目标提供技术支撑。

关键词: 气候变化, 固碳效益, 综合分析

Abstract:

To scientifically evaluate the carbon sequestration effects of ecosystem in Lhasa under the background of global warming, account for the benefits of carbon sequestration in ecological projects, and explore the improvement path for carbon sequestration in future, NPP was used to measure the dynamic level of carbon sequestration of ecosystem systems in Lhasa. The study carried out a quantitative analysis of carbon sequestration in the Lhasa ecosystem based on the CASA model, and collected multi-source data such as land use, vegetation types, meteorology and NDVI, remote sensing images in Lhasa. Using MRT, ArcGIS, and ENVI software, we performed batch processing on remote sensing images, including mosaic, projection conversion, factor conversion and cropping, and the maximum synthesis method (MVC) was used to obtain monthly and year-by-year NDVI data in the Lhasa River Basin from 2000 to 2020. The results showed that the overall carbon sequestration capacity of vegetation in Lhasa was between 50-400 g C/m2. From the county scale, it was found that the average carbon sequestration capacity of Linzhou County, Dazi District and Mozhu Gongka County was relatively high, and the average net primary vegetation productivity remained at 150 g C/m2 and above all year round. Forests were the main source of carbon sink in Lhasa, fixing 55% carbon dioxide, followed by grasslands and wetlands, which provided 23% and 21% of carbon sink contributions, respectively. The overall average vegetation carbon sequestration capacity in Lhasa was 218 g C/m2, and the increase in temperature mainly increased the carbon sequestration capacity of vegetation at high altitudes. In conclusion, it reveals the carbon sequestration process, rate and benefits of typical ecological engineering, clarifies the change of carbon reserves and carbon neutralization contribution under ecological restoration, such as Lhasa's north-south mountains, degraded grasslands, Lhasa River and important wetlands, compares the differences and impact mechanisms of ecosystem carbon reserves under the implementation of different ecological projects, and gives suggestions on the improvement pathway of the synergy of ecological carbon sequestration and functional restoration, aiming to help the construction of ecological civilization in Lhasa and even the whole Tibet with scientific and technological innovation, and provide technical support for achieving the goal of carbon peak and carbon neutralization.

Key words: climate change, carbon sequestration benefits, comprehensive analysis

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