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Journal of Chinese
            Architecture and Urbanism                                      Influence of land-use change on carbon storage



               land use changes at the peri-urban areas using geographic   governance effectiveness: A case study of the main urban
               information systems and cellular automata model. Journal   area of Lu ‘an. The People of the Yangtze River, 54(5):112-120.
               of Sustainable Development, 46:72.
                                                                  https://doi.org/10.16232/j.cnki.1001-4179.2023.05.016
               https://doi.org/10.5539/jsd.v4n6p72
                                                               Xia, M., Wang, H., Liu, Z. Y., Wang, N., Liu, Y. S., Wang, H. C.,
            Sharp, R., Douglass, J., Wolny, S., Arkema, K., Bernhardt,  J.,   et al. (2020). Carbon storage and carbon sink value of three
               Bierbower, W.,  et al. (2020).  InVEST 3.8. 7. User’s Guide.   wetland ecosystems in Ruoergai Plateau, Sichuan Province.
               The Natural Capital Project.  Standford, CA, USA:   Journal of Fujian Agriculture and Forestry University (Natural
               Standford University, University of Minnesota, the Nature   Science Edition), 49(3):392-398.
               Conservancy, and World Wildlife Fund.
                                                                  https://doi.org/10.13323/j.cnki.j.fafu(nat.sci)
            Shen, H., Zhang, T., Ma, W., Qin, Y., Wu, A., Cao, J., et al. (2018).
               Carbon storage and its allocation pattern in  Armeniaca   Xie, X. L., Sun, B., Zhou, H. Z., Li, Z. P., & Li, A. B. (2004).
               vulgaris plantations at different ages on the eastern slope of   Estimation and spatial distribution of soil organic carbon
               Taihang Mountain. Shengtai Xuebao/Acta Ecologica Sinica,   density and storage in China. Acta Pedologica Sinica, 1:35-43.
               38:6722-6728.                                   Xu, L., He, N. P., & Yu, G. R. (2019). 2010s Carbon density dataset
               https://doi.org/10.5846/stxb201803290634           of terrestrial ecosystems in China. Scientific Data in China,
                                                                  4(1):90-96.
            Takahashi, H. G., Yamashima, R., Matsumoto, J., & Takata,  K.
               (2015). Impact of historical land-use changes on the   Yang, J., Xie, B. P., & Zhang, D. G. (2021). Spatial-temporal
               Indian  summer  monsoon  onset.  International Journal of   variation of carbon storage in the Yellow River Basin based on
               Climatology: A Journal of the Royal Meteorological Society,   InVEST and CA-Markov model. Journal of Chinese Ecological
               35:2419-2430.                                      Agriculture (Both in English and Chinese), 29(6):1018-1029.
               https://doi.org/10.1002/joc.4132                   https://doi.org/10.13930/j.cnki.cjea.200746
            Wang, G., Yu, Q., Liu, X. X., Yang, L., Liu, J. H., & Yue, D. P.   Yang, Z. H., Chen, D. C., Lang, Z., Zhang, H. J., & Jiang, R. Q.
               (2019).  Spatiotemporal  evolution of  landscape pattern in   (2024). Effects of land use change on ecosystem carbon
               Baotou City.  Chinese Journal of Agricultural Machinery,   storage: A case study of Suzhou City. Environmental Science
               50(8):192-199.                                     and Technology, 47(2):1-13.
            Wang, Q. L., & Shao, J. A. (2023). Estimation of land use and   You, T. R., Wu, T. J., & Gao, F. (2020). The exploration and practice
               carbon storage in Chongqing Section of the Three Gorges   of ecological protection in Chengdu. Environmental Science
               Reservoir Area from 2000 to 2020.  Journal of Chongqing   and Management, 45(5):149-154.
               Normal University (Natural Science Edition), 40(6):52-64.  Zaehle, S., Bondeau, A., Carter, T. R., Cramer, W., Erhard, M.,
            Wei, Z., Zhongmin, H., Shenggong, L., Qun, G., Hao, Y., &   Prentice, I. C., et al. (2007). Projected changes in terrestrial
               Tonghui, Z. (2017). Impact of land use conversion on soil   carbon  storage  in  Europe  under  climate  and  land-use
               organic carbon stocks in an agro-pastoral ecotone of Inner   change, 1990–2100. Ecosystems, 10:380-401.
               Mongolia. Journal of Geographical Sciences, 8:999-1010.     https://doi.org/10.1007/s10021-007-9028-9
               https://doi.org/10.1007/s11442-017-1417-1       Zeng, J. L., & Tang, P. (2013). Review and exploration on the
            Wu, J. P., Liu, X. P., Li, X., & Chen, Y. M. (2016). Impact assessment   practice of urban and rural overall planning in Chengdu for
               of urban expansion on terrestrial ecosystem carbon storage   ten years. Urban Planning, 37(8):93-96.
               based on InVEST model and cellular automata: A  case   Zhang, P. P., Li, Y. H., Yin, H. R., Chen, Q. T., Dong, Q. D., &
               study of Guangdong Province. Geography and Geographic   Zhu, L. Q. (2022). Spatiotemporal variation and dynamic
               Information Science, 32(5):22-28.
                                                                  simulation of ecosystem carbon storage in China’s South-
            Wu, Y. F., Tang, Y. B., Li, W., & Li, C. (2023). Identification of   North transition zone.  Journal of Natural Resources,
               priority ecosystem protected areas and analysis of ecological   37(5):1183-1197.

















            Volume 6 Issue 3 (2024)                         12                       https://doi.org/10.36922/jcau.3069
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