代表性研究成果(近五年,*为通讯作者)
1.Zhang, Z., He, Z., Su, K., Wu, S., & Liu, L. (2026). Global evolution of ecosystem services research in watersheds: Insights from large language models. Land Use Policy, 160, 107849.
2.Zhang, Z., Li J., Liu L.*,..,Duan W. (2026). Anthropization or naturalization? Distance-dependent patterns of waterfront land use and land cover change in the Yangtze River Delta Urban Agglomeration. Cities,175: 107233.
3.Liu, L., Zhu, S., Zhang, Z*., Wu, S., & Hu, L. (2026). Using more, caring less? Exploring the relationship between environmental attitudes and direct ecosystem services use in China. Geography and Sustainability, 100417.
4.Liu, L., Dai, L., Wu, H., Jiang, J., Qiu, M., & Zhang, Z*. (2026). Decoupling from land: Shifting determinants of direct ecosystem services use in China. Ecological Indicators, 182, 114613.
5.Yu, X., Xiao, R., Zhang, Z*, Zhou, F., Mo, F., Xu, Z., ... & Wu, J. (2025). Rising disparities in grain self-sufficiency across China: Provincial divergence amidst overall national improvement. Environmental Impact Assessment Review, 114, 107942.
6.Zhi, J., Ge, L., Geng, T., Zhang, Z*., Li, L., Zhu, H., … Liu, W. (2024). Accurately mapping social functional zones of urban green spaces by integrating remote sensing images and crowd-sourced geospatial data.International Journal of Digital Earth, 17(1), 1–26.
7.Zhu, W. , Zhang, Z*., Zhang, H. , & Tovuudorj, R. . (2024). Integrating spatial patterns and driving factors of cultural ecosystem services into territorial spatial governance: a case study of the horqin sandy land with multi-ethnic settlements. Habitat International,148(000), 15.
8.Zhang, Z., Sun,X., Yu, X., Xiao,R. (2024). Decoupling Urban Development and Ecological Changes—A Case Study of Shanghai–Hangzhou Bay Urban Agglomeration. Journal of Urban Planning and Development.2024,150(2):05024010
9.Yu, C., Zhang, Z*., Jeppesen, E., Gao, Y., Liu, Y., Liu, Y., ... & Sun, X. (2024). Assessment of the effectiveness of China’s protected areas in enhancing ecosystem services. Ecosystem Services, 65, 101588.
10.Li, J., Gao, J., Zhang, Z*., Fu, J., Shao, G., Zhao, Z., & Yang, P. (2024). Insights into citizens’ experiences of cultural ecosystem services in urban green spaces based on social media analytics. Landscape and Urban Planning, 244, 104999.
11.Zhang, Z., Huang, S., Zhang, S., Liu, X., Jiang, W., Zheng, Z., ... & Long, Y. (2023). Online versus offline tourism emotion uncovering the bias pattern in online tourism emotion within theme parks[J]. Asia Pacific Journal of Tourism Research, 28:11, 1295-1310.
12.Zhang Z, Cui Y, Wang L, Sun X, Gao Y. (2023). Determining the ecological compensation standards based on willingness to accept (WTA) for intensive agricultural production areas: A case in China. Applied Geography, 158: 103051. SSCI 期刊(2022年影响因子/JCR分区:4.90/Q1)
13.Zhang, Z., Sun, S., Chen, W.*, & He, X. (2023). Spatiotemporal patterns in China's Minimal Living allowances: The urban-rural gap and regional differences revealed through a national poverty alleviation program. Growth and Change, 54(1): 214-233. doi: 10.1111/grow.1264. SSCI 期刊(2022年影响因子/JCR分区:2.704/Q2)
14.Zhang, Z., Wang, X., Zhang, Y., Gao, Y., Liu, Y., Sun, X., Zhi, J., Yin, S. (2023). Simulating land use change for sustainable land management in rapid urbanization regions: a case study of the Yangtze River Delta region. Landscape Ecology, 38(7): 1807-1830.https://doi.org/10.1007/s10980-023-01657-3.SCI期刊(2022年影响因子/JCR分区:5.043/Q1)
15.Zhang, Z., Shen, Z., Liu L., Zhang, Y., Yu, C., Cui, L., & Gao Y*. (2023). Integrating ecosystem services conservation into the optimization of urban planning policies in eco-fragile areas: A scenario-based case study. Cities. 134, 104200. SSCI 期刊(2022年影响因子/JCR分区:6.122/Q1)
16.Liu Y, Zhang Z*, Lu Q, Cui L, Gao Y, Nie T. (2023). Integrating biodiversity and ecosystem services to identify ecological priorities for an ecologically fragile city in China. Land Degradation & Development, 34(12): 3525-3538. SCI 期刊(2022年影响因子/JCR分区:5.043/Q1)
17.Shen Z, Zhang Z*, Cui L, Xia Z, Zhang Y. (2023). Coordinated change of PM2.5 and multiple landscapes based on spatial coupling model: Comparison of inland and waterfront cities. Environmental Impact Assessment Review 2023, 102: 107194.SSCI 期刊(2022年影响因子/JCR分区:6.122/Q1)
18.Zhi, J., Cao, X., Zhang, Z. *, Qin, T., Qi, L., Ge, L., ... & Fu, X. (2022). Identifying the determinants of crop yields in China since 1952 and its policy implications. Agricultural and Forest Meteorology, 327, 109216. SCI 期刊(2022年影响因子/JCR分区:6.424/Q1)
19.Zhang, Z., Zhang, Y., He, T., & Xiao, R*. (2022). Urban Vitality and its Influencing Factors: Comparative Analysis Based on Taxi Trajectory Data. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 15, 5102-5114. doi: 10.1109/JSTARS.2022.3183176. SCI 期刊(2022年影响因子/JCR分区:4.715/Q1)
20.Zhang, Z., Nie, T., Wu, Y.*, Ling, J., & Huang, D. (2022). The temporal and spatial distributions and influencing factors of transboundary pollution in China. International Journal of Environmental Research and Public Health, 19(8), 4643. (2022年影响因子/JCR分区:?/?)
21.Cui, L., Shen, Z., Liu, Y., Yu, C., Lu, Q., Zhang, Z.*, ... & Nie, T. (2022). Identification of driving forces for windbreak and sand fixation services in semiarid and arid areas: A case of Inner Mongolia, China. Progress in Physical Geography: Earth and Environment, 47(1), 32-49.doi:10.1177/03091333221105403. SCI 期刊(2022年影响因子/JCR分区:4.283/Q2)
22.Xiao, R., Yu, X., Xiang, T., Zhang, Z*, Wang, X., & Wu, J. (2021). Exploring the coordination between physical space expansion and social space growth of China’s urban agglomerations based on hierarchical analysis. Land Use Policy, 109, 105700.(2022年影响因子/JCR分区:6.189/Q1)
23.Xiao, R., Yu, X.., Zhang, Z*,Wang, X. (2021). Built‐up land expansion simulation with combination of naive Bayes and cellular automaton model—A case study of the Shanghai‐Hangzhou Bay agglomeration. Growth and Change. 52(3): 1804-1825. http://doi.org/10.1111/grow.12489 .SSCI 期刊(2022年影响因子/JCR分区:2.704/Q2)
24.Xu, X., Zhang, Z*., Long, T., Sun, S., & Gao, J. (2021). Mega-city region sustainability assessment and obstacles identification with GIS–Entropy–TOPSIS model: A case in Yangtze River Delta urban Agglomeration, China. Journal of Cleaner Production, 294: 126147. 126147.SCI期刊(2022年影响因子/JCR分区:11.072/Q1)
25.张中浩,张永瑶,胡熠娜,高峻*. “水—能源—粮食”纽带的长三角生态绿色一体化发展示范区生态系统服务供需关系的时空分布研究. 生态学报.2023,43(22):9430-9445北大核心期刊
26.张中浩,刘芦萌. AI时代行业高校地理信息科学专业课程的建设与思考.测绘通报,2023(S02):29-33.
27.张中浩, 聂甜甜, 高阳*等. 长江经济带生态系统服务与经济社会发展耦合协调关联时空特征研究. 长江流域资源与环境. 2022, 31(5) :1086-1100. CSSCI 期刊&北大核心期刊
28.张中浩,孙诗萌,高峻*.长三角城市群水-能源-粮食系统压力的演变特征及其影响机制. 自然资源学报. 2022, 37(6): 1586-1597. CSSCI 期刊&北大核心期刊
29.张中浩,孙诗萌,汪雪,肖锐,高峻*. 特大城市医疗公共服务可达性的空间格局及其影响因素分析——以上海市为例.地理科学. 2022, (4),622-630. CSSCI 期刊&北大核心期刊
30.张中浩, 聂甜甜,高阳*. 长三角城市群生态安全评价与时空跃迁特征分析. 地理科学. 2022, 42(11): 1923-1931. CSSCI 期刊&北大核心期刊
31.高峻, 张中浩, 李巍岳, 孙凤云, 胡熠娜, 王亮绪, 付晶, 李新*, 程国栋*.地球大数据支持下的城市可持续发展评估:指标、数据与方法. 中国科学院院刊, 2021, 36(8): 940-949.