Response of Vegetation Productivity to Climate Change and Human Activities in the Shaanxi–Gansu–Ningxia Region, China - Journal of the Indian Society of Remote Sensing
- ️Wang, Dongli
- ️Thu May 24 2018
References
Chen, F. J., Shen, Y. J., Qian, L. I., Guo, Y., & Li-Mei, X. U. (2011). Spatio-temporal variation analysis of ecological systems NPP in china in past 30 years. Scientia Geographica Sinica, 31(11), 1409–1414. (in Chinese).
Chu, C., Bartlett, M., Wang, Y., He, F., Weiner, J., Chave, J., et al. (2016). Does climate directly influence NPP globally? Global Change Biology, 22(1), 12–24.
Cruz-Blanco, M., Lorite, I. J., & Santos, C. (2014). An innovative remote sensing based reference evapotranspiration method to support irrigation water management under semi-arid conditions. Agricultural Water Management, 131, 135–145.
Dorjsuren, M., Liou, Y. A., & Cheng, C. H. (2016). Time series MODIS and in situ data analysis for Mongolia drought. Remote Sensing, 8(6), 509.
Fan, J. Z., Deng-Ke, L. I., & Zhou, H. (2013). Valuation on carbon fixation and oxygen release in reforested croplands of shaanxi province of china. Chinese Journal of Ecology, 32(4), 874–881. (in Chinese).
Feng, X., Fu, B., Lu, N., Zeng, Y., & Wu, B. (2013). How ecological restoration alters ecosystem services: an analysis of carbon sequestration in China’s Loess Plateau. Scientific reports, 3, 1–5.
Fu, B., Liu, Y., Y, Lu, et al. (2011). Assessing the soil erosion control service of ecosystems change in the Loess Plateau of China. Ecological Complexity, 8(4), 284–293.
Fu, B., Wang, Y., Lu, Y., et al. (2009). The effects of land-use combinations on soil erosion: A case study in the Loess Plateau of China. Progress in Physical Geography, 33(6), 793–804.
Gang, C., Zhou, W., Wang, Z., Chen, Y., Li, J., Chen, J., et al. (2015). Comparative assessment of grassland NPP dynamics in response to climate change in China, North America, Europe and Australia from 1981 to 2010. Journal of Agronomy and Crop Science, 201(1), 57–68.
García, M., Sandholt, I., Ceccato, P., et al. (2013). Actual evapotranspiration in drylands derived from in situ and satellite data: Assessing biophysical constraints. Remote Sensing of Environment, 131, 103–118.
Hao, Y. P., Chen, Y. F., & Zhang, X. Y. (1998). Progress in estimation of net primary productivity and its responses to climatic change. Advance in Earch Sciences, 13(6), 564–571.
Helman, D., Lensky, I. M., & Givati, A. (2015). Annual evapotranspiration retrieved solely from satellites’ vegetation indices for the Eastern Mediterranean. Atmospheric Chemistry & Physics Discussions, 15(11), 1–33.
Imhoff, M. L., Bounoua, L., DeFries, R., Lawrence, W. T., Stutzer, D., Tucker, C. J., et al. (2004). The consequences of urban land transformation on net primary productivity in the United States. Remote Sensing of Environment, 89, 434–443.
JianPing, L., JingDe, G., YingJuan, H., ShiLi, W., & YuPing, M. (2009). The vegetation classification of the return farmland to pasture or forest region in Shaanxi-Gansu-Ningxia based on SPOT/VEGETATION data. Agricultural Science & Technology-Hunan, 10(5), 179–183.
Leith, H., & Whittaker, R. (1975). Primary production of the biosphere. Ecology Studies, 14, 339.
Li, D. K., Fan, J. Z., & Wang, J. (2011). Variation characteristics of vegetation net primary productivity in Shaanxi province based on MOD17A3. Chinese Journal of Ecology, 30(12), 2776–2782. (in Chinese).
Li, S., Yan, J., Liu, X., & Wan, J. (2013). Response of vegetation restoration to climate change and human activities in Shaanxi-Gansu-Ningxia Region. Journal of Geographical Sciences, 23(1), 98–112.
Li, S. S., Yan, J., & Wan, J. (2012). The spatial-temporal changes of vegetation restoration on loess plateau in Shaanxi–Gansu–Ningxia region. Acta Geographica Sinica, 67(7), 960–970.
Liu, C., Dong, X., & Liu, Y. (2015). Changes of NPP and their relationship to climatic factors based on the transformation of different scales in Gansu, China. CATENA, 125, 190–199.
Long, H. L., Li, X. B., Wang, H., Wei, D. D., & Zhang, C. (2010). Net primary productivity (NPP) of grassland ecosystem and its relationship with climate in Inner Mongolia. Acta Ecologica Sinica, 30(5), 1367–1378.
Mu, Q., Zhao, M., & Running, S. W. (2011). Improvements to a MODIS global terrestrial evapotranspiration algorithm. Remote Sensing of Environment, 115(8), 1781–1800.
Pan, Y., Yu, C., Zhang, X., Chen, B., Wu, J., Tu, Y., et al. (2016). A modified framework for the regional assessment of climate and human impacts on net primary productivity. Ecological Indicators, 60, 184–191.
Pereira, G., Silva, M. E. S., Moraes, E. C., et al. (2017). Improving precipitation simulation from updated surface characteristics in South America. Theoretical and Applied Climatology, 129(1–2), 521–538.
Potter, C. S., Randerson, J. T., Field, C. B., Matson, P. A., Vitousek, P. M., Mooney, H. A., et al. (1993). Terrestrial ecosystem production: a process model based on global satellite and surface data. Global Biogeochemical Cycles, 7(4), 811–841.
Samani, Z. A. (2015). Improving evapotranspiration estimation using remote sensing technology. New Mexico State University.
Stow, D., Daeschner, S., Hope, A., et al. (2003). Variability of the seasonally integrated normalized difference vegetation index across the north slope of Alaska in the 1990s. International Journal of Remote Sensing, 24(5), 1111–1117.
Sun, G., Wan, H., Wang, C., et al. (2013). Vegetation monitoring and analyzing of golden triangle energy in Inner Mongolia, Shaanxi, Gansu and Ningxia region. Agricultural Machinery, S2, 247–250.
Wang, S., Zhang, Y., Wei, H., et al. (2015). The NPP change and the vegetation carbon fixation/oxygen release values in Shaanxi–Gansu–Ningxia region of China. Journal of Desert Research, 35(5), 1421–1428.
Wei, Z. F., Ren, Z. Y., Zhang, C., et al. (2014). The spatial and temporal pattern of desertification in 1999–2010 in the Shaanxi–Gansu–Ningxia Region. Journal of Desert Research, 34(5), 1230–1236. (in Chinese).
Xiao, J. (2014). Satellite evidence for significant biophysical consequences of the “Grain for Green” program on the Loess Plateau in China. Journal of Geophysical Research: Biogeosciences, 119(12), 2261–2275.
Xie, B., Qin, Z., Yang, W., & Chang, Q. (2014). Spatial and temporal variation in terrestrial net primary productivity on Chinese loess plateau and its influential factors. Agricultural Engineering, 30(11), 244–253.
Xu, H. M., Gao, Q. Z., Huang, Y. M., et al. (2006). Simulated the impact of climate change on net primary production in hilly area of loess plateau, China. Acta Ecologica Sinica, 26(9), 2939–2947. (in Chinese).
Xu, X. L., Liu, J. Y., Zhang, Z. X., et al. (2017). Content and R&D of the dataset on the spatial distribution of Chinese terrestrial ecosystem at the interval of five years (1990–2010). Journal of Global Change Data & Discovery, 1(1), 52–59.
Yebra, M., Van Dijk, A., Leuning, R., et al. (2013). Evaluation of optical remote sensing to estimate actual evapotranspiration and canopy conductance. Remote Sensing of Environment, 129, 250–261.