首页|乌鲁木齐市荒漠草地总初级生产力时空变化特征及其对气候变化的响应

乌鲁木齐市荒漠草地总初级生产力时空变化特征及其对气候变化的响应

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荒漠草地是干旱半干旱陆地生态系统的重要组成部分,对研究生态系统碳循环和功能评估具有深远影响.本研究以乌鲁木齐荒漠草地为研究对象,基于MODIS-MOD17A2H GPP和气象数据(降水、温度),利用Theil-Sen Median趋势分析、Mann-Kendall(MK)显著性检验等方法,探究2001-2020年乌鲁木齐荒漠草地总初级生产力(GPP)时空特征及其对气温、降水的响应.结果表明:1)近20年来乌鲁木齐荒漠草地GPP多年平均值为94.26 g·(m2·a)-1,整体呈微弱波动上升趋势.2)各区(县)荒漠草地GPP均表现为轻微增加趋势,水磨沟区的增长速率最高,其次是沙依巴克区,达坂城区最低.3)荒漠草地GPP对降水的响应显著高于气温,对降水响应敏感的区域占研究区的59.47%,表明降水是影响乌鲁木齐荒漠草地生长的主要气候限制因子.4)未来乌鲁木齐市荒漠草地整体会有"部分退化、局地改善"的发展趋势,对于北部及南部地区有退化趋势的区域亟需采取人工补水或补播改良等合理的保护和修复措施.研究结果可为乌鲁木齐市荒漠草地生态环境动态变化特征及合理利用提供参考.
Spatial and temporal characteristics of Urumqi City desert grasslands gross primary productivity and its response to climate change
The desert grasslands,integral to Xinjiang's dry and semi-dry terrestrial ecosystems,fulfil ecological functions like water cultivation,wind erosion resistance,and carbon sequestration.However,once desert grasslands are destroyed,they are not only unable to feed livestock,regulate the regional climate,and maintain ecological balance but also become the source of sandstorms and dust storms.With the intensification of climate change,preserving the ecological stability and vitality of Urumqi desert grasslands is gaining importance.Consequently,conducting a long time-series desert grassland observation is necessary.Therefore,we can further explore the spatial and temporal characteristics of desert grasslands in Urumqi,assess the existing environmental strain on these areas,and forecast the progression of their ecological health.This research aimed to explore the spatiotemporal dynamics of the Urumqi desert grassland GPP across various spatial dimensions.Our research utilized the MODIS-MOD 17A2H GPP and meteorological data(including precipitation and temperature)spanning 2001 to 2020,employing Theil-Sen Median trend analysis and the Mann-Kendall(MK)significance test.Additionally,we examined how desert grasslands react to climatic shifts,such as changes in temperature and precipitation.The results showed that:1)From 2001 to 2020,Urumqi desert grassland Gross Primary Productivity(GPP)averaged 94.26 g·(m2·a)-1 over several years,with a slight gradual increase in the annual average GPP.2)Across all districts and counties,the GPP of desert grasslands exhibited a slight increase.And varying hydrothermal factors led to the highest growth rate in the Shuimogou District,succeeded by the Shayibake District,and was the lowest in the Dabancheng District.3)The response of desert grassland to precipitation was higher than the temperature,indicating that precipitation is the main climatic limiting factor affecting the growth of desert grassland.4)In future,some areas of Urumqi desert grassland will be degraded while the foothills will improve locally.Consequently,it is imperative to adopt suitable safeguarding and restoration management measures for the deteriorated regions in Urumqi,including synthetic rehydration or enhancements in re-seeding.The research findings serve as a guide to understanding the evolution and effective utilization of the desert grassland ecosystem in Urumqi.

grasslanddesert ecosystemvegetation productivityspatial and temporal dynamicsclimate changeenvironmental driversecological response

李烨烨、张勇娟、姜芸、李从娟

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新疆大学生态与环境学院,新疆乌鲁木齐 830046

中国科学院新疆生态与地理研究所干旱区生态安全与可持续发展重点实验室,新疆乌鲁木齐 830011

乌鲁木齐市园林绿化工程质量监督站,新疆乌鲁木齐 830000

乌鲁木齐市红山公园,新疆乌鲁木齐 830000

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草地 荒漠生态系统 植被生产力 时空动态 气候变化 环境驱动 生态响应

2024

草业科学
中国草原学会 兰州大学草地农业科技学院

草业科学

CSTPCD北大核心
影响因子:0.854
ISSN:1001-0629
年,卷(期):2024.41(12)