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涂倩思,助理教授,博士生导师,入选上海市人才计划项目,国际大气环境遥感学会(AERSS)温室气体排放专题专家。
主要研究方向是温室气体遥感观测、浓度反演和碳排放估算等三个方面。通过利用地基遥感和卫星遥感技术及机器学习算法研究温室气体时空变化规律,以及区域温室气体排放估算模型,相关成果已发表在AtmosphericMeasurement Techniques和AtmosphericChemistry and Physics等大气科学国际知名期刊。
欢迎申请硕士、博士生、博士后、科研助理!相关专业包括但不限于计算机、大气科学、环境科学、环境工程、应用数学。提供海外联合培养机会(卡尔斯鲁厄理工学院、海德堡大学、芬兰气象研究中心等)。对相关方向感兴趣的同学,欢迎邮件联系(tuqiansi@tongji.edu.cn)。
【教育经历】
2015.4 - 2019.5 卡尔斯鲁厄理工学院,大气科学与遥感,博士
2012.10 - 2014.11 斯图加特大学,基础设施规划,硕士
2008.9 - 2012.7 北京师范大学,环境工程,学士
2023:上海市领军人才高层次人才科研项目《区域温室气体浓度时空变化规律与排放研究》,主持
2023-2024:空间天气学国家重点实验室开放课题《高精度傅立叶光谱仪125HR与可便携傅立叶光谱仪EM27/SUN的对比观测实验研究》,主持
2022:山西省科技重大专项计划揭榜挂帅项目,合作参与
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支持扩展名:.rar .zip .doc .docx .pdf .jpg .png .jpeg[1] 国家自然科学基金青年项目,基于星地协同观测的煤矿聚集区甲烷排放反演方法研究,2024-2026,主持
[2] 中央高校高层次人才科研项目,上海市温室气体排放源识别及排放量反演方法研究,2024-2025,主持
[3] 中国科学院国家重点实验室开放课题 ,高精度傅立叶光谱仪125HR与可便携傅立叶光谱仪EM27/SUN的对比观测实验研究,2023-2024,主持
[4] 山西省科技重大专项计划揭榜挂帅项目,面向大气污染治理和碳中和的天空地一体化精准监测技术与装备研发,2022,参与
[1] Tu,Q., Hase, F., Qin, K., Cohen, J. B., Khosrawi, F., Zou, X., Schneider, M.,and Lu, F.: Quantifying CH4 emissions from coal mine aggregation areas inShanxi, China, using TROPOMI observations and the wind-assigned anomaly method,Atmospheric Chemistry and Physics, 24, 4875–4894,https://doi.org/10.5194/acp-24-4875-2024, 2024.
[2] 涂倩思,秦凯,鹿凡.碳柱观测合作网络(COCCON)甲烷监测进展及其在中国的初步应用. 遥感学报, 28 (8):1955-1967, DOI:10.11834/jrs.20243296, 2024
[3] Tu,Q., Hase, F., Chen, Z., Schneider, M., García, O., Khosrawi, F., Chen, S.,Blumenstock, T., Liu, F., Qin, K., Cohen, J., He, Q., Lin, S., Jiang, H., andFang, D.: Estimation of NO2 emission strengths over Riyadh and Madrid fromspace from a combination of wind-assigned anomalies and a machine learningtechnique, Atmospheric Measurement Techniques, 16, 2237–2262,https://doi.org/10.5194/amt-16-2237-2023, 2023.
[4] Tu,Q., Schneider, M., Hase, F., Khosrawi, F., Ertl, B., Necki, J., Dubravica,D., Diekmann, C. J., Blumenstock, T., and Fang, D.: Quantifying CH4 emissionsin hard coal mines from TROPOMI and IASI observations using the wind-assignedanomaly method, Atmospheric Chemistry and Physics, 22, 9747–9765,https://doi.org/10.5194/acp-22-9747-2022, 2022.
[5] Alberti,C., Tu, Q.#, Hase, F., Makarova, M. V., Gribanov,K., Foka, S. C., Zakharov, V., Blumenstock, T., Buchwitz, M., Diekmann, C.,Ertl, B., Frey, M. M., Imhasin, H. Kh., Ionov, D. V., Khosrawi, F., Osipov, S.I., Reuter, M., Schneider, M., and Warneke, T.: Investigation of spacebornetrace gas products over St Petersburg and Yekaterinburg, Russia, by usingCOllaborative Column Carbon Observing Network (COCCON) observations, Atmos.Meas. Tech., 15, 2199–2229, https://doi.org/10.5194/amt-15-2199-2022, 2022.
[6] Tu,Q., Hase, F., Schneider, M., García, O., Blumenstock, T., Borsdorff, T.,Frey, M., Khosrawi, F., Lorente, A., Alberti, C., Bustos, J. J., Butz, A.,Carreño, V., Cuevas, E., Curcoll, R., Diekmann, C. J., Dubravica, D., Ertl, B.,Estruch, C., León-Luis, S. F., Marrero, C., Morgui, J.-A., Ramos, R., Scharun,C., Schneider, C., Sepúlveda, E., Toledano, C., and Torres, C.: Quantificationof CH4 emissions from waste disposal sites near the city of Madrid usingground- and space-based observations of COCCON, TROPOMI and IASI, AtmosphericChemistry and Physics, 22, 295–317, https://doi.org/10.5194/acp-22-295-2022, 2022.
[7] Schneider,M., Ertl, B., Tu, Q., Diekmann, C. J., Khosrawi, F., Röhling, A. N.,Hase, F., Dubravica, D., García, O. E., Sepúlveda, E., Borsdorff, T., Landgraf,J., Lorente, A., Butz, A., Chen, H., Kivi, R., Laemmel, T., Ramonet, M.,Crevoisier, C., Pernin, J., Steinbacher, M., Meinhardt, F., Strong, K., Wunch,D., Warneke, T., Roehl, C., Wennberg, P. O., Morino, I., Iraci, L. T., Shiomi,K., Deutscher, N. M., Griffith, D. W. T., Velazco, V. A., and Pollard, D. F.:Synergetic use of IASI profile and TROPOMI total-column level 2 methaneretrieval products, Atmos. Meas. Tech., 15, 4339–4371,https://doi.org/10.5194/amt-15-4339-2022, 2022.
[8] Tu,Q., Hase, F., Blumenstock, T., Kivi, R., Heikkinen, P., Sha, M. K.,Raffalski, U., Landgraf, J., Lorente, A., Borsdorff, T., Chen, H., Dietrich,F., and Chen, J.: Intercomparison of atmospheric CO2 and CH4 abundances onregional scales in boreal areas using Copernicus Atmosphere Monitoring Service(CAMS) analysis, COllaborative Carbon Column Observing Network (COCCON)spectrometers, and Sentinel-5 Precursor satellite observations, AtmosphericMeasurement Techniques, 13, 4751–4771, https://doi.org/10.5194/amt-13-4751-2020,2020.
[9] Tu,Q., Hase, F., Blumenstock, T., Schneider, M., Schneider, A., Kivi, R.,Heikkinen, P., Ertl, B., Diekmann, C., Khosrawi, F., Sommer, M., Borsdorff, T.,and Raffalski, U.: Intercomparison of arctic XH2O observations from threeground-based Fourier transform infrared networks and application for satellitevalidation, Atmospheric Measurement Techniques, 14, 1993–2011,https://doi.org/10.5194/amt-14-1993-2021, 2021.
2022.3 - 至今 同济大学,助理教授
2019.5 – 2021.12 卡尔斯鲁厄理工学院,博士后/访问学者
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