• Journal of Geo-information Science
  • Vol. 22, Issue 4, 877 (2020)
Xinliang XU1、1、*, Jiahao LI1、1、2、2, Zhicheng SHEN1、1、2、2, and Shikuan WANG1、1
Author Affiliations
  • 1State Key Laboratory of Resources and Environmental Information Systems,Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences, Beijing 100101, China
  • 1中国科学院地理科学与资源研究所 资源与环境信息系统国家重点实验室,北京 100101
  • 2University of Chinese Academy of Sciences, Beijing 100049, China
  • 2中国科学院大学,北京 100049
  • show less
    DOI: 10.12082/dqxxkx.2020.190372 Cite this Article
    Xinliang XU, Jiahao LI, Zhicheng SHEN, Shikuan WANG. Vulnerability of Farmland Ecosystems in Countries Along the "Belt and Road" and Responses to Climate Change[J]. Journal of Geo-information Science, 2020, 22(4): 877 Copy Citation Text show less
    References

    [1] 刘艺卓, 杨静, 刘武兵. 中国与“一带一路”沿线国家和地区构建自贸区的策略选择——基于农业的角度[J]. 世界农业, 2018(4):25-29. [ LiuY Z, YangJ, LiuW B. The strategic choice for China to build free trade zones in countries along the Belt and the Road-from the perspective of Agriculture[J]. World Agriculture, 2018(4):25-29. ] [ Liu Y Z, Yang J, Liu W B. The strategic choice for China to build free trade zones in countries along the Belt and the Road-from the perspective of Agriculture[J]. World Agriculture, 2018(4):25-29. ]

    [2] 中华人民共和国农业部, 中华人民共和国国家发展改革委员会, 中华人民共和国商务部, 等 .共同推进“一带一路”建设农业合作的愿景与行动[N].农民日报, 2017 -05-12(001). [ Ministry of Agriculture of the People's Republic of China, National Development and Reform Commission of the People's Republic of China, Ministry of Commerce of the People's Republic of China, et al. Jointly promoting the vision and action of "one belt and one road" in building agricultural cooperation[N]. Farmers’ Daily, 2017 -05-12(001). ] [ Ministry of Agriculture of the People's Republic of China, National Development and Reform Commission of the People's Republic of China, Ministry of Commerce of the People's Republic of China, et al. Jointly promoting the vision and action of "one belt and one road" in building agricultural cooperation[N]. Farmers’ Daily, 2017-05-12(001). ]

    [3] 刘卫东. “一带一路”战略的科学内涵与科学问题[J]. 地理科学进展, 2015,34(5):538-544. [ LiuW D. Scientific understanding of the Belt and Road Initiative of China and related research themes[J]. Progress in Geography, 2015,34(5):538-544. ] [ Liu W D. Scientific understanding of the Belt and Road Initiative of China and related research themes[J]. Progress in Geography, 2015,34(5):538-544. ]

    [4] 陈静, 周静平, 李存军, 等. 全国农业生态系统脆弱性评价[J]. 江苏农业科学, 2018,46(2):217-223. [ ChenJ, ZhouJ P, LiC J, et al. National assessment of agroecosystem vulnerability[J]. Jiangsu Agricultural Sciences, 2018,46(2):217-223. ] [ Chen J, Zhou J P, Li C J, et al. National assessment of agroecosystem vulnerability[J]. Jiangsu Agricultural Sciences, 2018,46(2):217-223. ]

    [5] 周松秀, 田亚平, 刘兰芳, 等. 南方丘陵区农业生态环境脆弱性的驱动力分析——以衡阳盆地为例[J]. 地理科学进展, 2011,30(7):938-944. [ ZhouS X, TianY P, LiuL F. Analysis of driving forces of agricultural eco-environmental vulnerability in the hilly area in southern China: A case study in Hengyang basin[J]. Progress in Geographica Sinica, 2011,30(7):938-944. ] [ Zhou S X, Tian Y P, Liu L F. Analysis of driving forces of agricultural eco-environmental vulnerability in the hilly area in southern China: A case study in Hengyang basin[J]. Progress in Geographica Sinica, 2011,30(7):938-944. ]

    [6] 夏兴生, 朱秀芳, 李月臣, 等. 基于AHP-PCA熵组合权重模型的三峡库区(重庆段)农业生态环境脆弱性评价[J]. 南方农业学报, 2016,47(4):548-556. [ XiaX S, ZhuX F, LiY C, et al. Evaluation for vulnerability of agroecological environment in Three Gorges Reservoir area(Chongqing section)based on AHP-PCA entropy combination weight mode[J]. Journal of Southern Agriculture, 2016,47(4):548-556. ] [ Xia X S, Zhu X F, Li Y C, et al. Evaluation for vulnerability of agroecological environment in Three Gorges Reservoir area(Chongqing section)based on AHP-PCA entropy combination weight mode[J]. Journal of Southern Agriculture, 2016,47(4):548-556. ]

    [7] et alVulnerability of Southern Plains agriculture to climate change[J]. Climatic Change, 146, 201-208(2017).

    [8] Assessing agricultural systems vulnerability to climate change to inform adaptation planning: An application in Khorezm, Uzbekistan[J]. Mitigation and Adaptation Strategies for Global Change, 21, 1263-1287(2016).

    [9] 杨庆媛, 毕国华, 陈展图, 等. 喀斯特生态脆弱区休耕地的空间配置研究——以贵州省晴隆县为例[J]. 地理学报, 2018,73(11):202-218. [ YangQ Y, BiG H, ChenZ T, et al. Spatial allocation of fallow land in karst rocky desertification areas: A case study of Qinglong County, Guizhou Province[J]. Acta Geographica Sinica, 2018,73(11):202-218. ] [ Yang Q Y, Bi G H, Chen Z T, et al. Spatial allocation of fallow land in karst rocky desertification areas: A case study of Qinglong County, Guizhou Province[J]. Acta Geographica Sinica, 2018,73(11):202-218. ]

    [10] 杨晓静, 徐宗学, 左德鹏, 等. 东北三省农业旱灾风险评估研究[J]. 地理学报, 2018,73(7):1324-1337. [ YangX J, XuZ X, ZuoD P, et al. Assessment on the risk of agricultural drought disaster in the three provinces of Northeast China[J]. Acta Geographica Sinica, 2018,73(7):1324-1337. ] [ Yang X J, Xu Z X, Zuo D P, et al. Assessment on the risk of agricultural drought disaster in the three provinces of Northeast China[J]. Acta Geographica Sinica, 2018,73(7):1324-1337. ]

    [11] 邹君, 杨玉蓉, 毛德华, 等. 湖南省农业生态水资源库脆弱性评价[J]. 冰川冻土, 2010,32(1):196-203. [ ZouJ, YangY R, MaoD H, et al. An assessment of vulnerability of agricultural ecological water resource bank in Hunan Province[J]. Journal of Glaciology and Geocryology, 2010,32(1):196-203 ] [ Zou J, Yang Y R, Mao D H, et al. An assessment of vulnerability of agricultural ecological water resource bank in Hunan Province[J]. Journal of Glaciology and Geocryology, 2010,32(1):196-203 ]

    [12] 魏琦. 北方农牧交错带生态脆弱性评价与生态治理研究[D]. 北京:中国农业科学院, 2010. [ WeiQ. Ecology fragility evaluation and control in north ecotone between agriculture and animal husbandry[D]. Beijing:Chinese Academy of Agricultural Sciences, 2010. ] [ Wei Q. Ecology fragility evaluation and control in north ecotone between agriculture and animal husbandry[D]. Beijing: Chinese Academy of Agricultural Sciences, 2010. ]

    [13] 杨飞, 马超, 方华军. 脆弱性研究进展:从理论研究到综合实践[J]. 生态学报, 2018,39(2):441-453. [ YangF, MaC, FangH J. Research progress on vulnerability:from theoretical research to comprehensive practice[J]. Acta Ecologica Sinica, 2018,39(2):441-453. ] [ Yang F, Ma C, Fang H J. Research progress on vulnerability:from theoretical research to comprehensive practice[J]. Acta Ecologica Sinica, 2018,39(2):441-453. ]

    [14] 田亚平, 常昊. 中国生态脆弱性研究进展的文献计量分析[J]. 地理学报, 2012,67(11):1515-1525. [ TianY P, ChangH. Bibliometric analysis of research progress on ecological vulnerability in China[J]. Acta Geographica Sinica, 2012,67(11):1515-1525. ] [ Tian Y P, Chang H. Bibliometric analysis of research progress on ecological vulnerability in China[J]. Acta Geographica Sinica, 2012,67(11):1515-1525. ]

    [15] 西江流域生态脆弱性时空分异及其驱动机制研究[J]. 地球信息科学学报, 20, 947-956(2018).

    [16] . Annual report on remote sensing monitoring of global ecological environment in 2015(2016).

    [17] et al《全球生态环境遥感监测年度报告》进展与展望[J]. 遥感学报, 22, 672-685(2018).

    [18] et alA global moderate resolution dataset of gross primary production of vegetation for 2000-2016[J]. Scientific Data, 4, 170165(2017).

    [19] et alResponses of gross primary production of grasslands and croplands under drought, pluvial, and irrigation conditions during 2010-2016, Oklahoma, USA[J]. Agricultural Water Management, 204, 47-59(2018).

    [20] et alResponse of tropical terrestrial gross primary production to the super El Niño event in 2015[J]. Journal of Geophysical Research: Biogeosciences, 123, 3193-3203(2018).

    [21] et alEstimation of terrestrial global gross primary production (GPP) with satellite data-driven models and eddy covariance flux data[J]. Remote Sens, 10, 1346-1366(2018).

    [22] et alDrought impacts on terrestrial primary production underestimated by satellite monitoring[J]. Nature Geoscience, 12, 264-270(2019).

    [23] Assessing land transformation and associated degradation of the west part of Ganga River Basin using forest cover land use mapping and residual trend analysis[J]. Journal of Arid Land, 11, 29-42(2019).

    [24] Optimizing a remote sensing production efficiency model for macro-scale GPP and yield estimation in agroecosystems[J]. Remote Sensing of Environment, 217, 258-271(2018).

    [25] [M]. Climate Change 2007: Impacts, adaptation and vulnerability. Cambridge(2007).

    [26] 乔青, 高吉喜, 王维, 等. 生态脆弱性综合评价方法与应用[J]. 环境科学研究, 2008,21(5):117-123. [ QiaoQ, GaoJ X, WangW. Method and application of ecological frangibility assessment[J]. Research of Environmental Sciences, 2008,21(5):117-123. ] [ Qiao Q, Gao J X, Wang W. Method and application of ecological frangibility assessment[J]. Research of Environmental Sciences, 2008,21(5):117-123. ]

    [27] 何敏, 王鹤松, 孙建新. 基于植被生产力的西南地区生态系统脆弱性特征[J]. 应用生态学报, 2019,30(2):429-438. [ HeM, WangH S, SunJ X. Characters of ecosystem vulnerability in southwestern China based on vegetation productivity[J]. Chinese Journal of Applied Ecology, 2019,30(2):429-438. ] [ He M, Wang H S, Sun J X. Characters of ecosystem vulnerability in southwestern China based on vegetation productivity[J]. Chinese Journal of Applied Ecology, 2019,30(2):429-438. ]

    [28] 於琍, 曹明奎, 陶波, 等. 基于潜在植被的中国陆地生态系统对气候变化的脆弱性定量评价[J]. 植物生态学报, 2008,32(3):521-560. [ YuL, CaoM K, TaoB, et al. Quantitative assessment of the vulnerability of terrestrial ecosystems of china to climate change based on potential vegetation[J]. Chinese Journal of Plant Ecology, 2008,32(3):521-530. ] [ Yu L, Cao M K, Tao B, et al. Quantitative assessment of the vulnerability of terrestrial ecosystems of china to climate change based on potential vegetation[J]. Chinese Journal of Plant Ecology, 2008,32(3):521-530. ]

    [29] et alAn exploratory framework for the empirical measurement of resilience[J]. Ecosystems, 8, 975-987(2005).

    [30] 肖桐, 王军邦, 陈卓奇. 三江源地区基于净初级生产力的草地生态系统脆弱性特征[J]. 资源科学, 2010,32(2):323-330. [ XiaoT, WangJ B, ChenZ Q. Vulnerability of grassland ecosystems in the Sanjiangyuan region based on NPP 2010[J]. Resources Science, 2010,32(2):323-330. ] [ Xiao T, Wang J B, Chen Z Q. Vulnerability of grassland ecosystems in the Sanjiangyuan region based on NPP 2010[J]. Resources Science, 2010,32(2):323-330. ]

    [31] 徐新良, 王靓, 蔡红艳. “丝绸之路经济带”沿线主要国家气候变化特征[J]. 资源科学, 2016,38(9):1742-1753. [ XuX L, WangL, CaiH Y. Spatio-temporal characteristics of climate change in the Silk Road Economic Belt[J]. Resources Science, 2016,38(9):1742-1753. ] [ Xu X L, Wang L, Cai H Y. Spatio-temporal characteristics of climate change in the Silk Road Economic Belt[J]. Resources Science, 2016,38(9):1742-1753. ]

    [32] Analysis of changes in meteorological variables using Mann- Kendall and Sen's slope estimator statistical tests in Serbia[J]. Global and Planetary Change, 100, 172-182(2013).

    [33] 王飞, 丁建丽, 魏阳. “一带一路”国家和地区百年尺度干旱化特征分析[J]. 地球信息科学学报, 2017,19(11):1442-1455.

    [34] 史培军, 孙劭, 汪明, 等. 中国气候变化区划(1961-2010年)[J]. 中国科学:地球科学, 2014(10):2294-2306. [ ShiP J, SunS, WangM, et al. Climate change regionalization in China (1961-2010)[J]. Science China: Earth Sciences, 2014,44(10):2294-2306. ] [ Shi P J, Sun S, Wang M, et al. Climate change regionalization in China (1961-2010)[J]. Science China: Earth Sciences, 2014,44(10):2294-2306. ]

    Xinliang XU, Jiahao LI, Zhicheng SHEN, Shikuan WANG. Vulnerability of Farmland Ecosystems in Countries Along the "Belt and Road" and Responses to Climate Change[J]. Journal of Geo-information Science, 2020, 22(4): 877
    Download Citation