个人简介
童抗抗,长聘教轨助理教授
教育背景
2013-2018 明尼苏达大学-双城校区(美国),汉弗莱公共事务学院, 博士
2008-2011 中国科学院,中科院生态环境研究中心,生态学,硕士
2004-2008 武汉理工大学,资源与环境工程学院,环境科学,学士
工作经历
2021.09- 上海交通大学, 中英国际低碳学院,长聘教轨助理教授
2019.08-2021.08 普林斯顿大学(美国),土木和环境工程系,博士后/副研究员
2018.06-2019.07 明尼苏达大学-双城校区(美国),汉弗莱公共事务学院,博士后
科研项目
上海市2023年度“科技创新行动计划”软科学研究项目(自选项目). 全球城市碳中和决策中碳分析方法的应用特征研究. 2023.03-2024.02. 主持
美国国家科学基金项目. SRN: Integrated Urban Infrastructure Solutions for Environmentally Sustainable, Healthy, and Livable Cities. $12 million. 2015-2023. 主要参与人
美国国家科学基金项目. PIRE: Developing Low-Carbon Cities in the US, China, and India Through Integration Across Engineering, Environmental Sciences, Social Sciences, and Public Health. $4.45 million. 2012-2018. 主要参与人
美国国家科学基金项目. S&CC: Connecting the Smart-City Paradigm with a Sustainable Urban Infrastructure Systems Framework to Advance Equity in Communities. $2.5 million. 2017-2021. 一般参与人
著作章节
Tong, K., Ramaswami, A. Chapter 10: Urban Environments and Transboundary Linkages: in Poulter, B., Canadell, P., Hayes, D., Thompson, R. (Ed). Balancing Regional Greenhouse Gas Budgets. Elsevier. 2022. P337-374
政策报告
World Economic Forum. 2022. Delivering ClimateResilient Cities Using a Systems Approach (Insight Report). https://www3.weforum.org/docs/WEF_C4IR_GFC_on_Cities_Climate_Resilience_2022.pdf
教学工作
2022年秋季,研究生课程“净零碳城市的基础设施”(英文授课), 独立讲师,中英国际低碳学院,上海交通大学
2020年秋季,本科生课程“美国和印度可持续发展城市:技术和政策相关的路径”(英文授课), 教学助理,普林斯顿大学(美国)
2016年秋季,研究生课程“可持续型社会的物质能量流分析“(英文授课), 独立讲师,明尼苏达大学-双城校区(美国)
荣誉奖励
2021. 上海市人才项目入选者
2017.09-2018.05. 明尼苏达大学博士论文奖学金
近期论文
查看导师新发文章
(温馨提示:请注意重名现象,建议点开原文通过作者单位确认)
Joe F. Bozeman III*, Shauhrat S. CHOPRA, Philip James, SAJJAD Muhammad, Hua Cai, Kangkang Tong, Maya Carrasquillo, Harold Rickenbacker, Destenie Nock, Weslynne Ashton, Oliver Heidrich, Sybil Derrible, and Melissa Bilec. Three research priorities for just and sustainable urban systems: now is the time to refocus. Journal of Industrial Ecology. 2022. Online: https://doi.org/10.1111/jiec.13360
Nagpure, A. S.; Tong, K.; Ramaswami, A*. Socially-differentiated urban metabolism methodology informs equity in coupled carbon-air pollution mitigation strategies: Insights from three Indian cities. Environmental Research Letters. 2022. (In print). https://doi.org/10.1088/1748-9326/ac881e
Zhang, C.; Zhai, H.*; Cao, L.; Li, X.; Cheng, F.; Peng, L.; Tong, K.; Meng, J.*; Yang, Y.; Wang, X.*. Understanding the complexity of existing fossil fuel power plant decarbonization. iScience. 2022. 25, 8, 104758. https://doi.org/10.1016/j.isci.2022.104758
Tong, K.* Net-zero-carbon urban transitions need systems thinking. (Voices: "Opportunities and barriers to net-zero cities"). One Earth. 2022. 5(7), 739-744. DOI: https://doi.org/10.1016/j.oneear.2022.06.013
Lal, M. R.*, Tibrewal, K., Venkataraman, C., Tong, K., Fang A., Ma, Q., Wang, S., Kaiser, J., Ramaswami, A., Russell, A. G.. Impact of Circular, Waste-Heat Reuse Pathways on PM2.5-Air Quality, CO2 Emissions, and Human Health in India: Comparison with Material Exchange Potential. Environmental Science & Technology. 2022. 56(13), 9773-9783. DOI: https://doi.org/10.1021/acs.est.1c05897
Clark, P. L., Tabory, S., Tong, K., Servadio, J. L., Kappler, K., Xu, K., Lawal, A. S., Wiringa, P., Kne, L., Feiock, R., Marshall, J. D., Russell, A. G., Ramaswami. A.*. A data framework for assessing social inequality and equity in multi‐sector social, ecological, infrastructural urban systems: Focus on fine‐spatial scales. Journal of Industrial Ecology. 2022. 26 (1), 145-163. DOI: https://doi.org/10.1111/jiec.13222
Tong, K., Ramaswami, A.*, Xu, K., Feiock, R., Schmitz, P., Ohlsen M. Measuring social equity in urban energy use and interventions using fine-scale data. PNAS. 2021. 118 (24) e2023554118 DOI: https://doi.org/10.1073/pnas.2023554118
Ramaswami. A., Tong, K., Canadell J., Jackson. R., Stokes, E. Dhakal S., Finch. M., Jittrapirom P., Singh. N., Yamagata Y., Yewdall E., Yona L., Seto, K.. Carbon analytics for net-zero emissions sustainable cities. Nature Sustainability. 2021. DOI: https://doi.org/10.1038/s41893-021-00715-5
Tong, K., Nagpure, A., Ramaswami A.*. All urban areas’ energy use data across 640 districts in India for the year 2011. Scientific Data. 2021. DOI: https://doi.org/10.1038/s41597-021-00853-7
Tong, K.*, Ramaswami. A., Feiock, R. Environmentally Sustainable Transitions of US District Energy Systems: Perspectives from Infrastructure Operators/Designers through the Co-evolutionary Lens. Journal of Cleaner Production. 2020. 268: 121894. DOI: https://doi.org/10.1016/j.jclepro.2020.121894
Tong, K.*, Zhao, Z., Feiock, R., Ramaswami, A.. Patterns of Urban Infrastructure Capital Investment in Chinese Cities and Explanation through a Political Market Lens. Journal of Urban Affairs. 2019. 41 (2), 248-263. DOI: https://doi.org/10.1080/07352166.2018.1499417
Tong, K.*, Fang, A., Li, Y., Shi, L., Wang, Y., Wang, S., Ramaswami, A.*. The Collective Contribution of Chinese Cities to Territorial and Electricity-related CO2 Emissions. Journal of Cleaner Production. 2018. 189: 910-921. DOI: https://doi.org/10.1016/j.jclepro.2018.04.037
Ramaswami. A.*, Jiang, D., Tong, K., Zhao, Z., Impact of the Economic Structure of Cities on Urban Scaling Factors: Implications for Urban Material and Energy Flows in China. Journal of Industrial Ecology. 2018. 22 (2), 392-405. DOI: https://doi.org/10.1111/jiec.12563
Tong, K., Fang, A., Yu, H., Li, Y., Shi, L.*, Wang, S., Ramaswami, A.*. Estimating the Potential for Industrial Waste Heat Reutilization in Urban District Energy Systems: Method Development and Implementation in Two Chinese Provinces. Environmental Research Letters. 2017. 12(12): 125008 DOI: https://doi.org/10.1088/1748-9326/aa8a17
Ramaswami. A.*, Tong, K., Fang, A., Lal, R., Nagpure, A., Li, Y., Yu, H., Jiang, D., Russell, A., Shi, L., Chertow, M., Wang, Y., Wang, S.. Urban Cross-sector Actions for Carbon Mitigation with Local Health Co-benefits in China. Nature Climate Change. 2017. 7: 736-742. DOI: https://doi.org/10.1038/nclimate3373
Tong, K., Fang, A., Boyer, D., Hu, Y., Cui, S., Shi, L., Kalmykova, Y., and Ramaswami, A.*. Greenhouse Gas Emissions from Key Infrastructure Sectors in Larger and Smaller Chinese Cities: Method Development and Benchmarking. Carbon Management, 2016, 7(1-2): 27-39. DOI: https://doi.org/10.1080/17583004.2016.1165354