img

Wechat

  • CN 62-1070/P
  • ISSN 1000-694X
  • Bimonthly 1981
Adv search

Effect Evaluation of the Enclosure-Rehabilitation of Desertification Land in Cuogang Based on Time Series Remote Sensing Data

  • Tian Haijing ,
  • Sun Tao ,
  • Liu Xusheng ,
  • Kong Xiangji
Expand
  • Academy of Forest Inventory and Planning, State Forestry and Grassland Administration, Beijing 100013, China

Received date: 2018-03-06

  Revised date: 2018-06-05

  Online published: 2019-06-10

Abstract

The pilot project for enclosure-rehabilitation of desertification land in Cuogang started in 2013. In this study, we used the time series MODIS NDVI dataset in 2001-2017 to analyze the vegetation spatial-temporal trend. And the effects were evaluated by precipitation use efficiency and NDVI residual trend analysis. Before the enclosure (2001-2013), vegetation trends in and outside the reserve were similar. While after the enclosure (2013-2017), vegetation outside the reserve showed significant decreasing trend. In 2016 and 2017, the NDVI anomaly percentages inside the reserve was higher that the outside. Standardized precipitation index (SPI) analysis showed that Cuogang has experienced constant drought in 2015-2017, which had caused vegetation degradation. Results of precipitation use efficiency and NDVI residual trend analysis showed that the implementation of the project has significantly increased the vegetation efficiency of precipitation utilization, improved the capability of sandland vegetation in adapting to climate change, effectively protected the sandland vegetation by minimizing the drought impact on vegetation growth.

Cite this article

Tian Haijing , Sun Tao , Liu Xusheng , Kong Xiangji . Effect Evaluation of the Enclosure-Rehabilitation of Desertification Land in Cuogang Based on Time Series Remote Sensing Data[J]. Journal of Desert Research, 2019 , 39(3) : 155 -162 . DOI: 10.7522/j.issn.1000-694X.2018.00076

References

[1] 陈佑启.中国土地利用变化及其影响的空间建模分析[J].地理科学进展,2011,19(2):116-127.
[2] 周广胜,王玉辉,张新时.中国植被及生态系统对全球变化反应的研究与展望[J].中国科学院院刊,1999,14(1):28-32.
[3] Rosenthal W D,Blanchard B J,Blanchard A J.Visible infrared microwave agriculture classification,biomass,and plant height algorithms[J].IEEE Transactions on Geoscience and Remote Sensing,1985(2):84-90.
[4] Asrar G,Fuchs M,Kanemasu E T,et al.Estimating absorbed photosynthetic radiation and leaf area index from spectral reflectance in wheat[J].Agronomy Journal,1984,76(2):300-306.
[5] Tian H,Cao C,Chen W,et al.Response of vegetation activity dynamic to climatic change and ecological restoration programs in Inner Mongolia from 2000 to 2012[J].Ecological Engineering,2015,82:276-289.
[6] Baret F,Guyot G.Potentials and limits of vegetation indices for LAI and APAR assessment[J].Remote Sensing of the Environment,1991,35:161-173.
[7] Wu Z,Wu J,Liu J,et al.Increasing terrestrial vegetation activity of ecological restoration program in the Beijing-Tianjin sand source region of China[J].Ecological Engineering,2013,52:37-50.
[8] 田海静,曹春香,戴晟懋,等.准格尔旗植被覆盖度变化的时间序列遥感监测[J].地球信息科学学报,2014,16(1):126-133.
[9] 温晓金,杨新军,刘焱序,等.黄土高原长武县域植被变化季相趋势及影响因素[J].资源科学,2016,38(4):768-776.
[10] 赵安周,刘宪锋,朱秀芳,等.2000-2014年黄土高原植被覆盖时空变化特征及其归因[J].中国环境科学,2016,36(5):1568-1578.
[11] Cao S.Why large-scale afforestation efforts in China have failed to solve the desertification problem[J].Environmental Science & Technology,2008,42(6):1826-1831.
[12] Wang X M,Zhang C X,Hasi E,et al.Has the Three Norths Forest Shelterbelt Program solved the desertification and dust storm problems in arid and semiarid China?[J].Journal of Arid Environments,2010,74(1):13-22.
[13] Nicholson S E,Tucker C J,Ba M B.Desertification,drought,and surface vegitation:an example from the West African Sahel[J].Bulletin of the American Meteorological Society,1998,79(5):815.
[14] Prince S D,Colstoun D,Brown E,et al.Evidence from rain-use efficiencies does not indicate extensive Sahelian desertification[J].Global Change Biology,1998,4(4):359-374.
[15] Piao S,Yin G,Tan J.et al.Detection and attribution of vegetation greening trend in China over the last 30 years[J].Global Change Biology,2015,21(4):1601-1609.
[16] Evans J,Geerken R.Discrimination between climate and human-induced dryland degradation[J].Journal of Arid Environments,2004,57(4):535-554.
[17] Wessels K J,Prince S D,Malherbe J,et al.Can human-induced land degradation be distinguished from the effects of rainfall variability?-a case study in South Africa[J].Journal of Arid Environments,2007,68(2):271-297.
[18] Hird J N,Mc Dermid G J.Noise reduction of NDVI time series:an empirical comparison of selected techniques[J].Remote Sensing of Environment,2009,113(1):248-258.
[19] Ren J,Chen Z,Zhou Q,et al.Regional yield estimation for winter wheat with MODIS-NDVI data in Shandong,China[J].International Journal of Applied Earth Observation and Geoinformation,2008,10(4):403-413.
[20] Jiang G.It is inappropriate for afforestation in the Three North regions[J].Science Decision Making,2005,11:40-42.
[21] Sen P K.Estimates of the regression coefficient based on Kendall's tau[J].Journal of the American Statistical Association,1968,63(324):1379-1389.
[22] Cai B F.Monitoring and evaluating of major forestry ecological project based on remote sensing-a case study of three north shelter forest project[D].Beijing:Graduate University of Chinese Academy of Sciences,2008.
[23] Fernandes R,Leblanc S G.Parametric (modified least squares) and non-parametric (Theil-Sen) linear regressions for predicting biophysical parameters in the presence of measurement errors[J].Remote Sensing of Environment,2005,95(3):303-316.
[24] Churkina G,Running S W.Contrasting climatic controls on the estimated productivity of global terrestrial biomes[J].Ecosystems,1998,1(2):206-215.
[25] Tian H,Chen G,Liu M,et al.Model estimates of net primary productivity,evapotranspiration,and water use efficiency in the terrestrial ecosystems of the southern United States during 1895-2007[J].Forest Ecology and Management,2010,259(7):1311-1327.
[26] 胡中民,于贵瑞,王秋凤,等.生态系统降水利用效率研究进展[J].生态学报,2009,29(3):1498-1507.
[27] 张远东,庞瑞,顾峰雪,等.西南高山地区水分利用效率时空动态及其对气候变化的响应[J].生态学报,2016,36(6):1515-1525.
[28] 韦振锋,王德光,张翀,等.1999-2010年中国西北地区植被覆盖对气候变化和人类活动的响应[J].中国沙漠,2014,34(6):1665-1670.
[29] Zhang J,Niu J,Bao T,et al.Human induced dryland degradation in Ordos Plateau,China,revealed by multilevel statistical modeling of normalized difference vegetation index and rainfall time-series[J].Journal of Arid Land,2014,6(2):219-229.
[30] Qu B,Zhu W,Jia S,et al.Spatio-temporal changes in vegetation activity and its driving factors during the growing season in China from 1982 to 2011[J].Remote Sensing,2015,7(10):13729-13752.
[31] 孙智辉,王治亮,曹雪梅,等.基于标准化降水指数的陕西黄土高原地区1971-2010年干旱变化特征[J].中国沙漠,2013,33(5):1560-1567.
[32] 王莺,李耀辉,胡田田.基于SPI指数的甘肃省河东地区干旱时空特征分析[J].中国沙漠,2014,34(1):244-253.
Outlines

/