[1] J. Li, C. Wang, J. Guo, Y. Xin, N. Zhang, X. Liu*, K. Feng*, 2024. Promoting sustainable development goals by optimizing city-level solar photovoltaic deployment in China. Environmental Science & Technology, accepted.
[2] R. Fu#, K. Peng#, P. Wang, H. Zhong, B. Chen, P. Zhang, Y. Zhang, D. Chen, X. Liu*, K. Feng*, J. Li*, 2023. Tracing metal footprints via global renewable power value chains. Nature Communications, 14: 3703.
[3] X. Liu, H. Du*, X. Zhang*, K. Feng*, X. Zhao, H. Zhong, N. Zhang, Z. Chen, 2023. Assessing Transboundary Impacts of Energy-Driven Water Footprint on Scarce Water Resources in China: Catchments Under Stress and Mitigation Options. Environmental Science & Technology, 57, 26, 9639–9652.
[4] Z. Qi, Y. Han, S. Afrane, X. Liu*, M. Zhang, J. Crittenden, J. Chen, G. Mao, 2023. Patent mining on soil pollution remediation technology from the perspective of technological trajectory. Environmental Pollution, 316: 120661.
[5] X. Liu#, H. Du#, L. Tang*, X. Bo*, J. Li, J. Zuo, M.A. Brown, M. Jia, K. Feng*, 2022. Relocating industrial plants delivers win-win emission-reduction benefits to origin and destination regions. Environmental Science & Technology, 56(22): 16043–16054.
[6] G. Mao, Y. Han, X. Liu*, J. Crittenden, N. Huang, U.M. Ahmad, 2022. Technology status and trends of industrial wastewater treatment: A patent analysis. Chemosphere, 288(2): 132483.
[7] C. Wang, K. Feng, X. Liu*, P. Wang*, W. Chen, J. Li*, 2021. Looming challenge of photovoltaic waste under China’s solar ambition: A spatial-temporal assessment. Applied Energy, 118186.
[8] H. Du, Q. Li, X. Liu*, B. Peng, F. Southworth, 2021. Costs and potentials of reducing CO2 emissions in China’s transport sector: Findings from an energy system analysis. Energy, 234: 121163.
[9] G. Mao, H. Hu, X. Liu*, J. Crittenden, N. Huang, 2020. A bibliometric analysis of industrial wastewater treatments from 1998 to 2019. Environmental Pollution, 115785.
[10] X. Liu, H. Du*, Z. Zhang*, J. Crittenden, M.L. Lahr, J. Moreno-Cruz, D. Guan, Z. Mi, J. Zuo, 2019. Can virtual water trade save water resources? Water Research, 163: 114848.
[11] X. Liu, H. Du, M. Brown, J. Zuo, G. Mao, 2018. Low-carbon technology diffusion in the decarbonization of the power sector: Policy implications. Energy Policy, 116: 344-356.
山东省高等学校青年创新团队计划, 能源-资源-环境管理与政策创新团队, 碳中和愿景下面向多要素协同的风光发电路径优化及废弃物管理策略,2024.01-2026.12,在研,团队带头人
国家自然科学基金青年项目, 多目标协同下光伏组件回收的政策模拟与路径优选研究,2023.01-2025.12,在研,主持
教育部人文社会科学研究青年基金项目, 多目标协同下光伏发电的政策模拟与路径优化:基于区域异质性视角,2023.01-2025.12 ,在研,主持
山东省自然科学基金青年项目. 社会资源环境多目标协同下山东城市尺度光伏发电的差异化路径与政策建议,2022.01-2024.12,在研,主持
中国博士后科学基金第68批面上资助,微观视角下重工业产业转移的大气污染减排与协同效益:建模与政策分析,2020.08-2022.08,已结题,主持
国家社会科学基金重大项目. 推动黄河流域生态保护和高质量发展研究,2020.06-2022.06,已结题,参与
国家自然科学基金重点项目, 可再生能源发展的驱动机理及路径选择:行为、市场与政策 ,2019.01-2023.12,在研,参与