• Acta Geographica Sinica
  • Vol. 75, Issue 9, 1948 (2020)
Zecheng GUO1, Wei WEI1、*, Peiji SHI1, Liang ZHOU2、3, Xufeng WANG4, Zhenya LI1, Sufei PANG1, and Binbin XIE5
Author Affiliations
  • 1College of Geography and Environmental Science, Northwest Normal University, Lanzhou 730070, China
  • 2Faculty of Geomatics, Lanzhou Jiaotong University, Lanzhou 730070, China
  • 3State Key Laboratory of Resources and Environmental Information System, Institute of Geographic Sciences and Natural Resources Research, CAS, Beijing 100101, China
  • 4Key Laboratory of Ecohydrology of In-land River Basin/Gansu Qilian Mountains Ecological Research Center, Northwest Institute of Eco-environment and Resources, CAS, Lanzhou 730000, China
  • 5School of Urban Economics and Tourism Culture, Lanzhou City University, Lanzhou 730070, China
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    DOI: 10.11821/dlxb202009010 Cite this Article
    Zecheng GUO, Wei WEI, Peiji SHI, Liang ZHOU, Xufeng WANG, Zhenya LI, Sufei PANG, Binbin XIE. Spatiotemporal changes of land desertification sensitivity in the arid region of Northwest China[J]. Acta Geographica Sinica, 2020, 75(9): 1948 Copy Citation Text show less
    References

    [1] WangTao, ZhuZhenda. Study on sandy desertification in China: Definition of sandy desertification and its connotation. Journal of Desert Research, 2003,23(3):209-214. [ 王涛, 朱震达. 我国沙漠化研究的若干问题—沙漠化的概念及其内涵. 中国沙漠, 2003,23(3):209-214.] [王涛, 朱震达. 我国沙漠化研究的若干问题—沙漠化的概念及其内涵. 中国沙漠, 2003, 23(3): 209-214.]

    [2] UN. United Nations Convention to Combat Desertification in Those Countries Experiencing Serious Drought and/or Desertification, Particularly in Africa. Combat Desertification Office of Ministry of Forestry in the People's Republic of China, trans. Beijing: China Forestry Publishing House, 1994. [ UN. 联合国关于在发生严重干旱和/或沙漠化的国家特别是在非洲防治沙漠化的公约. 中华人民共和国林业部防治沙漠化办公室, 译. 北京: 中国林业出版社, 1994.] [UN. 联合国关于在发生严重干旱和/或沙漠化的国家特别是在非洲防治沙漠化的公约. 中华人民共和国林业部防治沙漠化办公室, 译. 北京: 中国林业出版社, 1994.]

    [3] ZhuZhenda. Fragile ecological zones and land desertification in China. Journal of Desert Research, 1991,11(4):11-22. [ 朱震达. 中国的脆弱生态带与土地荒漠化. 中国沙漠, 1991,11(4):11-22.] [朱震达. 中国的脆弱生态带与土地荒漠化. 中国沙漠, 1991, 11(4): 11-22.]

    [4] Sterk G, Boardman J, Verdoodt A. Desertification: History, causes and options for its control[J]. Land Degradation & Development, 27, 1783-1787(2016).

    [5] Symeonakis E, Karathanasis N, Koukoulas S et al. Monitoring sensitivity to land degradation and desertification with the environmentally sensitive area index: The case of Lesvos Island[J]. Land Degradation & Development, 27, 1562-1573(2016).

    [6] Karamesouti M, Panagos P, Kosmas C. Model-based spatio-temporal analysis of land desertification risk in Greece[J]. Catena, 167, 266-275(2018).

    [7] TianLu, QiuSijing, PengJian, et al. Desertification sensitivity evaluation in Inner Mongolia Autonomous Region based on PSR framework. Progress in Geography, 2018,37(12):1682-1692. [ 田璐, 邱思静, 彭建, 等. 基于PSR框架的内蒙古自治区沙漠化敏感性评估. 地理科学进展, 2018,37(12):1682-1692.] [田璐, 邱思静, 彭建, 等. 基于PSR框架的内蒙古自治区沙漠化敏感性评估. 地理科学进展, 2018, 37(12): 1682-1692.]

    [8] Salvati L, Bajocco S. Validation of MEDALUS fire risk index using forest fires statistics through a multivariate approach[J]. Ecological Indicators, 48, 365-369(2015).

    [9] ZhaoMingyue, ZhaoWenwu, JinTing, et al. Land desertification sensitivity evaluation in Qinghai Lake Basin. Chinese Agricultural Science Bulletin, 2012,28(32):237-242. [ 赵明月, 赵文武, 靳婷, 等. 青海湖流域土地沙漠化敏感性评价. 中国农学通报, 2012,28(32):237-242.] [赵明月, 赵文武, 靳婷, 等. 青海湖流域土地沙漠化敏感性评价. 中国农学通报, 2012, 28(32): 237-242.]

    [10] WangYuehui, ZhangLinbo, GuoYang, et al. Analysis of spatiotemporal pattern and tendency of land desertification sensitivity in six provinces of China. Research of Soil and Water Conservation, 2014,21(5):132-137. [ 王跃辉, 张林波, 郭杨, 等. 中国六省土地沙漠化敏感性时空格局与趋势分析. 水土保持研究, 2014,21(5):132-137.] [王跃辉, 张林波, 郭杨, 等. 中国六省土地沙漠化敏感性时空格局与趋势分析. 水土保持研究, 2014, 21(5): 132-137.]

    [11] SunBinfeng, WangXiaoke. On assessment of sandy desertification sensitivity in Xinjiang. Journal of Southwest China Normal University (Natural Science Edition), 2015,40(7):108-112. [ 孙滨峰, 王效科. 新疆沙漠化敏感性评价研究. 西南师范大学学报(自然科学版), 2015,40(7):108-112.] [孙滨峰, 王效科. 新疆沙漠化敏感性评价研究. 西南师范大学学报(自然科学版), 2015, 40(7): 108-112.]

    [12] ChenDongdong, ZhaoJun. Spatial and temporal characteristics of lake changes in arid areas of northwest China. Remote Sensing Technology and Application, 2017,32(6):1114-1125. [ 陈栋栋, 赵军. 我国西北干旱区湖泊变化时空特征. 遥感技术与应用, 2017,32(6):1114-1125.] [陈栋栋, 赵军. 我国西北干旱区湖泊变化时空特征. 遥感技术与应用, 2017, 32(6): 1114-1125.]

    [13] ZhouDan, ShenYanjun, ChenYaning, et al. Estimation of ecological water requirement of desert vegetation in the arid region of northwest China. Chinese Journal of Ecology, 2015,34(3):670-680. [ 周丹, 沈彦俊, 陈亚宁, 等. 西北干旱区荒漠植被生态需水量估算. 生态学杂志, 2015,34(3):670-680.] [周丹, 沈彦俊, 陈亚宁, 等. 西北干旱区荒漠植被生态需水量估算. 生态学杂志, 2015, 34(3): 670-680.]

    [14] WeiXiaoxu, ZhaoJun, WeiWei, et al. Coordinated development of ecological-economic system and spatial evolution based on county unit in China. Progress in Geography, 2014,33(11):1535-1545. [ 魏晓旭, 赵军, 魏伟, 等. 基于县域单元的中国生态经济系统协调度及空间演化. 地理科学进展, 2014,33(11):1535-1545.] [魏晓旭, 赵军, 魏伟, 等. 基于县域单元的中国生态经济系统协调度及空间演化. 地理科学进展, 2014, 33(11): 1535-1545.]

    [15] CuiBuli, LiXiaoyan, JiangGuanghui, et al. Study on land use/cover in mountain area based on the DEM: Taking the Qinghai Lake Basin as an example. Journal of Natural Resources, 2011,26(5):871-880. [ 崔步礼, 李小雁, 姜广辉, 等. 基于DEM的山地丘陵区土地利用/覆被研究: 以青海湖流域为例. 自然资源学报, 2011,26(5):871-880.] [崔步礼, 李小雁, 姜广辉, 等. 基于DEM的山地丘陵区土地利用/覆被研究: 以青海湖流域为例. 自然资源学报, 2011, 26(5): 871-880.]

    [16] DuanHanchen, XueXian. Spatio-temporal distribution of aeolian desertification in Horqin Sandy Land based on DEM. Journal of Arid Land Resources and Environment, 2018,32(8):74-79. [ 段翰晨, 薛娴. 基于DEM的科尔沁沙地沙漠化土地时空分布特征. 干旱区资源与环境, 2018,32(8):74-79.] [段翰晨, 薛娴. 基于DEM的科尔沁沙地沙漠化土地时空分布特征. 干旱区资源与环境, 2018, 32(8): 74-79.]

    [17] WangYa, ZhouLihua, WeiXuan. An evaluation index system of vulnerability of the desertification reversion process based on the socio-ecological systems theory. Acta Ecologica Sinica, 2018,38(3):829-840. [ 王娅, 周立华, 魏轩. 基于社会—生态系统的沙漠化逆转过程脆弱性评价指标体系. 生态学报, 2018,38(3):829-840.] [王娅, 周立华, 魏轩. 基于社会—生态系统的沙漠化逆转过程脆弱性评价指标体系. 生态学报, 2018, 38(3): 829-840.]

    [18] Liu L Y, Li X Y, Shi P et al. Wind erodibility of major soils in the farming-pastoral ecotone of China[J]. Journal of Arid Environments, 68, 611-623(2007).

    [19] ZhouKan, FanJie, WangYafei, et al. Evaluation of water resources carrying capacity and its guidelines for spatial planning in arid and semi-arid region: A case in Xiji-Haiyuan-Guyuan area of Ningxia. Scientia Geographica Sinica, 2019,39(2):232-241. [ 周侃, 樊杰, 王亚飞, 等. 干旱半干旱区水资源承载力评价及空间规划指引: 以宁夏西海固地区为例. 地理科学, 2019,39(2):232-241.] [周侃, 樊杰, 王亚飞, 等. 干旱半干旱区水资源承载力评价及空间规划指引: 以宁夏西海固地区为例. 地理科学, 2019, 39(2): 232-241.]

    [20] WeiWei. Land use optimal allocation based on CLUE-S and MCR model in Shiyang River Basin[D]. Lanzhou: Lanzhou University, 2018. [ 魏伟. 基于CLUE-S和MCR模型的石羊河流域土地利用空间优化配置研究[D]. 兰州: 兰州大学, 2018.] [魏伟. 基于CLUE-S和MCR模型的石羊河流域土地利用空间优化配置研究[D]. 兰州: 兰州大学, 2018.]

    [21] ZhangXinshi. Principles and optimal models for development of Maowusu Sandy Grassland. Acta Phytoecologica Sinica, 1994,18(1):1-16. [ 张新时. 毛乌素沙地的生态背景及其草地建设的原则与优化模式. 植物生态学报, 1994,18(1):1-16.] [张新时. 毛乌素沙地的生态背景及其草地建设的原则与优化模式. 植物生态学报, 1994, 18(1): 1-16.]

    [22] Xu D, You X, Xia C. Assessing the spatial-temporal pattern and evolution of areas sensitive to land desertification in north China[J]. Ecological Indicators, 97, 150-158(2019).

    [23] ZhaiRenjian. Research on automated matching methods for multi-scale vector spatial data based on global consistency evaluation[D]. Zhengzhou: Information Engineering University, 2011. [ 翟仁健. 基于全局一致性评价的多尺度矢量空间数据匹配方法研究[D]. 郑州: 解放军信息工程大学, 2011.] [翟仁健. 基于全局一致性评价的多尺度矢量空间数据匹配方法研究 [D]. 郑州: 解放军信息工程大学, 2011.]

    [24] BiJingxue, ZhenJie, WangYunjia, et al. The method of enhanced gaussian function weighted KNN indoor positioning. Bulletin of Surveying and Mapping, 2017(6):9-12. [ 毕京学, 甄杰, 汪云甲, 等. 高斯函数定权的改进KNN室内定位方法. 测绘通报, 2017(6):9-12.] [毕京学, 甄杰, 汪云甲, 等. 高斯函数定权的改进KNN室内定位方法. 测绘通报, 2017(6): 9-12.]

    [25] Mesquita D P P, Gomes J P P, Júnior A H S et al. Euclidean distance estimation in incomplete datasets[J]. Neurocomputing., 248, 11-18(2017).

    [26] Amani M, Salehi B, Mahdavi S et al. Temperature-vegetation-soil moisture dryness index (TVMDI)[J]. Remote Sensing of Environment, 197, 1-14(2017).

    [27] YangShiqi. A case study of a novel sustainable agricultural development evaluation method based on Euclidean distance theory. Acta Ecologica Sinica, 2017,37(11):3840-3848. [ 杨世琦. 基于欧氏距离的农业可持续发展评价理论构建与实例验证. 生态学报, 2017,37(11):3840-3848.] [杨世琦. 基于欧氏距离的农业可持续发展评价理论构建与实例验证. 生态学报, 2017, 37(11): 3840-3848.]

    [28] ShiSan'e, WeiWei, YangDong, et al. Spatial and temporal evolution of eco-environmental quality in the oasis of Shiyang River Basin based on RSEDI. Chinese Journal of Ecology, 2018,37(4):1152-1163. [ 石三娥, 魏伟, 杨东, 等. 基于RSEDI的石羊河流域绿洲区生态环境质量时空演变. 生态学杂志, 2018,37(4):1152-1163.] [石三娥, 魏伟, 杨东, 等. 基于RSEDI的石羊河流域绿洲区生态环境质量时空演变. 生态学杂志, 2018, 37(4): 1152-1163.]

    [29] Wei W, Guo Z C, Xie B B et al. Spatiotemporal evolution of environment based on integrated remote sensing indexes in arid inland river basin in northwest China[J]. Environmental Science and Pollution Research, 26, 13062-13084(2019).

    [30] ZhuDayun, XiongKangning, XiaoHua, et al. Comparison of rocky desertification detection ability of GF-1 and Landsat-OLI based on vegetation index. Journal of Natural Resources, 2016,31(11):1949-1957. [ 朱大运, 熊康宁, 肖华, 等. 基于植被指数的GF-1与Landsat-OLI石漠化识别能力对比评价. 自然资源学报, 2016,31(11):1949-1957.] [朱大运, 熊康宁, 肖华, 等. 基于植被指数的GF-1与Landsat-OLI石漠化识别能力对比评价. 自然资源学报, 2016, 31(11): 1949-1957.]

    [31] ChenWanxu, LiJiangfeng, ZengJie, et al. Spatial heterogeneity and formation mechanism of eco-environmental effect of land use change in China. Geographical Research, 2019,38(9):2173-2187. [ 陈万旭, 李江风, 曾杰, 等. 中国土地利用变化生态环境效应的空间分异性与形成机理. 地理研究, 2019,38(9):2173-2187.] [陈万旭, 李江风, 曾杰, 等. 中国土地利用变化生态环境效应的空间分异性与形成机理. 地理研究, 2019, 38(9): 2173-2187.]

    [32] WangJinfeng, XuChengdong. Geodetector: Principle and prospective. Acta Geographica Sinica, 2017,72(1):116-134. [ 王劲峰, 徐成东. 地理探测器: 原理与展望. 地理学报, 2017,72(1):116-134.] [王劲峰, 徐成东. 地理探测器: 原理与展望. 地理学报, 2017, 72(1): 116-134.]

    [33] ZhaoXiaofeng, LiYaya, ZhaoYuntai, et al. Spatiotemporal differences and driving factors of land development degree in China based on geographical detector. Resources and Environment in the Yangtze Basin, 2018,27(11):2425-2433. [ 赵小风, 李娅娅, 赵雲泰, 等. 基于地理探测器的土地开发度时空差异及其驱动因素. 长江流域资源与环境, 2018,27(11):2425-2433.] [赵小风, 李娅娅, 赵雲泰, 等. 基于地理探测器的土地开发度时空差异及其驱动因素. 长江流域资源与环境, 2018, 27(11): 2425-2433.]

    [34] WangGuoxia, LiMan. The spatial interaction between inter-provincial migration and manufacturing industry transfer. Scientia Geographica Sinica, 2019,39(2):183-194.

    [35] MaYong, TongYun, RenJie, et al. Spatial-temporal pattern and driving factors of public participation in environmental regulation: Taking the Yangtze River Economic Belt as an example. Scientia Geographica Sinica, 2018,38(11):1799-1808.

    [36] WangXiaofeng, ZhangMingming, YinLichang, et al. Study on the driving factors in desertification process in arid and semi-arid region of China from 2000 to 2015. Ecology and Environmental Sciences, 2019,28(5):948-957. [ 王晓峰, 张明明, 尹礼唱, 等. 2000—2015年中国干旱半干旱地区沙漠化进程驱动力研究. 生态环境学报, 2019,28(5):948-957.] [王晓峰, 张明明, 尹礼唱, 等. 2000—2015年中国干旱半干旱地区沙漠化进程驱动力研究. 生态环境学报, 2019, 28(5): 948-957.]

    Zecheng GUO, Wei WEI, Peiji SHI, Liang ZHOU, Xufeng WANG, Zhenya LI, Sufei PANG, Binbin XIE. Spatiotemporal changes of land desertification sensitivity in the arid region of Northwest China[J]. Acta Geographica Sinica, 2020, 75(9): 1948
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