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            專任教師:蘇建平

            蘇建平.jpg


            ★〡基本信息


            蘇建平,男,1992年生,講師,本科(2014年)畢業于中國石油大學(北京),碩士(2016年)畢業于德州農工大學,博士(2022年)畢業于加拿大不列顛哥倫比亞大學,同年在加拿大不列顛哥倫比亞大學進行博士后工作研究,于20249月加入中國石油大學(北京),并獲得校青年拔尖培育計劃支持,目前就職于碳中和未來技術學院。


            ★〡研究方向


            l 生物質與石油煉廠耦合降碳

            l Drop-in生物質燃料(生物航煤,可再生柴油等)在長距離運輸領域的應用潛力

            l 全生命周期分析在交通領域的應用

            ★〡工作經歷


            2022年06-2024年08月 加拿大不列顛哥倫比亞大學,博士后,導師: Jack Saddler

            2024年09月-至今 中國石油大學(北京)碳中和未來技術學院

            ★〡學習經歷


            2018-01至2022-05,加拿大不列顛哥倫比亞大學, 木材科學,博士研究生, 導師: Jack Saddler

            2014-092016-08,美國德州農工大學, 石油工程, 碩士研究生, 導師: Hisham Nasr-El-Din

            2010-09至2014-06,中國石油大學(北京), 石油工程,大學本科


            ★〡學術獎勵


            中國石油大學(北京)校青年拔尖人才 2024


            ★〡代表性論文著作



            l Cao, L., Su, J., Saddler, J., Cao, Y., Wang, Y., Lee, G., Siang, L. C., Pinchuk, R., Li, J., & Gopaluni, R. B. (2024). Real-time tracking of renewable carbon content with AI-aided approaches during co-processing of biofeedstocks. Applied Energy, 360, 122815. Elsevier.

            l Su, J., Van Dyk, S., O'Connor, D., & Saddler, J. (2023). A comparison of methods used to track the green molecules and determine the carbon intensities of co-processed fuels. Biofuels, Bioproducts and Biorefining. John Wiley & Sons, Ltd.

            l OConnell, A., Su, J., Ringsred, A., Prussi, M., Saddler, J., & Scarlat, N. (2022). Tracking the Biogenic Component of Lower-Carbon Intensive, Co-Processed FuelsAn Overview of Existing Approaches. Applied Sciences, 12(24), 12753. MDPI.

            l Su, J., Cao, L., Lee, G., Gopaluni, B., Siang, L. C., Cao, Y., Van Dyk, S., Pinchuk, R., & Saddler, J. (2022). Tracking the green coke production when co-processing lipids at a commercial fluid catalytic cracker (FCC): combining isotope 14C and causal discovery analysis. Sustainable Energy & Fuels, 6(24), 56005607. Royal Society of Chemistry.

            l Su, J., Van Dyk, S., & Saddler, J. (2022). Repurposing oil refineries to stand-alone units that refine lipids/oleochemicals to produce low-carbon intensive, drop-in biofuels. Journal of Cleaner Production, 376, 134335. Elsevier.

            l Cao, L., Su, J., Wang, Y., Cao, Y., Siang, L. C., Li, J., Saddler, J. N., & Gopaluni, B. (2022). Causal discovery based on observational data and process knowledge in industrial processes. Industrial & Engineering Chemistry Research, 61(38), 1427214283. American Chemical Society.

            l Su, J., Cao, L., Lee, G., Gopaluni, B., O'Connor, D., Van Dyk, S., Pinchuk, R., & Saddler, J. (2022). Determining the amount of 'green' coke generated when co-processing lipids commercially by fluid catalytic cracking. Biofuels, Bioproducts and Biorefining, 16(2), 325334. John Wiley & Sons, Ltd.

            l Van Dyk, S., Su, J., Ebadian, M., & Saddler, J. (2022). Production of lower carbon-intensity fuels by co-processing biogenic feedstocks: Potential and challenges for refineries. Fuel, 324, 124636. Elsevier.

            l Su, J., Cao, L., Lee, G., Tyler, J., Ringsred, A., Rensing, M., Van Dyk, S., O'Connor, D., Pinchuk, R., & Saddler, J. J. (2021). Challenges in determining the renewable content of the final fuels after co-processing biogenic feedstocks in the fluid catalytic cracker (FCC) of a commercial oil refinery. Fuel, 294, 120526. Elsevier.



            ★〡聯系方式


            jianping.su@cup.edu.cn

            中油大廈B座829



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