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Wuhan University
武汉大学 韩舸
1.Pei, Z., Han, G., Mao, H., Chen, C., Shi, T., Yang, K., ... & Gong, W. (2023). Improving quantification of methane point source emissions from imaging spectroscopy. Remote Sensing of Environment, 295, 113652.
2.Shi, T., Han, G., Ma, X., Mao, H., Chen, C., Han, Z., ... & Gong, W. (2023). Quantifying factory-scale CO2/CH4 emission based on mobile measurements and EMISSION-PARTITION model: cases in China. Environmental Research Letters, 18(3), 034028.
3.Pei, Z., Han, G., Mao, H., Chen, C., Shi, T., Yang, K., ... & Gong, W. (2023). Improving quantification of methane point source emissions from imaging spectroscopy. Remote Sensing of Environment, 295, 113652.
4.Shi, T., Han, G., Ma, X., Mao, H., Chen, C., Han, Z., ... & Gong, W. (2023). Quantifying factory-scale CO2/CH4 emission based on mobile measurements and EMISSION-PARTITION model: cases in China. Environmental Research Letters, 18(3), 034028.
5.Shi, T., Han, Z., Han, G., Ma, X., Chen, H., Andersen, T., ... & Gong, W. (2022). Retrieving CH 4-emission rates from coal mine ventilation shafts using UAV-based AirCore observations and the genetic algorithm–interior point penalty function (GA-IPPF) model. Atmospheric Chemistry and Physics, 22(20), 13881-13896.
6.Zhang, J., Han, G., Mao, H., Pei, Z., Ma, X., Jia, W., & Gong, W. (2022). The spatial and temporal distribution patterns of XCH4 in China: New observations from TROPOMI. Atmosphere, 13(2), 177.
7.Shi, T., Ma, X., Han, G., & Gong, W. (2021). Improving the performance of Methane different absorption LiDAR system through up-conversion Technology. In Fourier Transform Spectroscopy (pp. JTh6A-43). Optica Publishing Group.
8.Ma, X., Shi, T., Xu, H., He, B., Qiu, R., Han, G., & Gong, W. (2019). On-line wavenumber optimization for a ground-based CH4-DIAL. Journal of Quantitative Spectroscopy and Radiative Transfer, 229, 106-119.
{{subItem.subtitle}}
1.Pei, Z., Han, G., Mao, H., Chen, C., Shi, T., Yang, K., ... & Gong, W. (2023). Improving quantification of methane point source emissions from imaging spectroscopy. Remote Sensing of Environment, 295, 113652.
2.Shi, T., Han, G., Ma, X., Mao, H., Chen, C., Han, Z., ... & Gong, W. (2023). Quantifying factory-scale CO2/CH4 emission based on mobile measurements and EMISSION-PARTITION model: cases in China. Environmental Research Letters, 18(3), 034028.
3.Pei, Z., Han, G., Mao, H., Chen, C., Shi, T., Yang, K., ... & Gong, W. (2023). Improving quantification of methane point source emissions from imaging spectroscopy. Remote Sensing of Environment, 295, 113652.
4.Shi, T., Han, G., Ma, X., Mao, H., Chen, C., Han, Z., ... & Gong, W. (2023). Quantifying factory-scale CO2/CH4 emission based on mobile measurements and EMISSION-PARTITION model: cases in China. Environmental Research Letters, 18(3), 034028.
5.Shi, T., Han, Z., Han, G., Ma, X., Chen, H., Andersen, T., ... & Gong, W. (2022). Retrieving CH 4-emission rates from coal mine ventilation shafts using UAV-based AirCore observations and the genetic algorithm–interior point penalty function (GA-IPPF) model. Atmospheric Chemistry and Physics, 22(20), 13881-13896.
6.Zhang, J., Han, G., Mao, H., Pei, Z., Ma, X., Jia, W., & Gong, W. (2022). The spatial and temporal distribution patterns of XCH4 in China: New observations from TROPOMI. Atmosphere, 13(2), 177.
7.Shi, T., Ma, X., Han, G., & Gong, W. (2021). Improving the performance of Methane different absorption LiDAR system through up-conversion Technology. In Fourier Transform Spectroscopy (pp. JTh6A-43). Optica Publishing Group.
8.Ma, X., Shi, T., Xu, H., He, B., Qiu, R., Han, G., & Gong, W. (2019). On-line wavenumber optimization for a ground-based CH4-DIAL. Journal of Quantitative Spectroscopy and Radiative Transfer, 229, 106-119.