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马帅帅

时间: 2026-03-19 点击次数:


一、基本信息

姓名:马帅帅

最高学位:博士

/博导:硕导

职称:特聘研究员

研究方向:生物质转化;废弃物资源化利用

电子邮件:shuaishuaima@sicau.edu.cn

二、学习及工作经历

2014.09-2018.06,吉林大学,农学专业,学士

2018.09-2020.06,中国农业大学,生物质工程专业,硕士

2020.09-2023.06,中国农业大学,生物质工程专业,博士

2023.10-2025.10,华盛顿州立大学,生物产品、科学与工程实验室,博士后

2025.03-2025.07,美国农业部林产品实验室,化学工程,交流访问

2025.12-至今,tyc5997太阳集团,环境学院,特聘研究员

三、主要成果

(一)代表性论文

[1] Ma S, Shiva, Tao H, Dempsey J, Chen X, Yuan J, Zhu JY, Yuan JS, Zhou L, Yang B*. A chemical-recovery-free ammonium sulfite-based alkali pretreatment of corn stover for low-cost sugar production via fertilizer use of waste liquor. Bioresource Technology, 2025, 427: 132402.

[2] Ma S, Shiva, Rui K, Engelhard MH, Chen X, Yang B*. Effects of pH on potassium sulfite based alkali pretreatment of corn stover under mild conditions. Chemical Engineering Journal, 2025, 526: 171144.

[3] Ma S, Wang H, Ren X, Wang Z, Gao X, Bian C, Wei L, Chen S, Cui Z, Zhu W*. Hydrothermal carbonization of lignin from black liquor enhances biomethane yield. Renewable and Sustainable Energy Reviews, 2025, 211: 115265.

[4] Ma S, Wang H*, Li L, Gu X, Zhu W*. Enhanced biomethane production from corn straw by a novel anaerobic digestion strategy with mechanochemical pretreatment. Renewable and Sustainable Energy Reviews, 2021, 146: 111099.

[5] Ma S, Li Y, Li J, Yu X, Cui Z, Yuan X, Zhu W*, Wang H*. Features of single and combined technologies for lignocellulose pretreatment to enhance biomethane production. Renewable and Sustainable Energy Reviews, 2022, 165: 112606.

[6] Ma S, Wang H*, Wang B, Gu X, Zhu W*. Biomethane enhancement from corn straw using anaerobic digestion by-products as pretreatment agents: A highly effective and green strategy. Bioresource Technology, 2022, 344: 126177.

[7] Ma S, Yu X, Harahap BM, Khan MU, He H, Cai Y*. Advances in anaerobic digestate management: functions and impacts of carbon and iron-based additives. Bioresource Technology, 2025, 436: 133037.

[8] Ma S, Wang H, Bian C, Gao X, Yuan X, Zhu W*. Enhancing methane production from corn straw via illumination-assisted Fe3O4/g-C3N4nanocomposite in anaerobic digestion. Bioresource Technology, 2024, 409: 131254.

[9] Ma S1, Li L1, Ren X, Zhu W*, Wang H*. A green pretreatment strategy using CO2 and acidogenesis liquid digestate as reagents for biomethane enhancement from corn stover. Industrial Crops and Products, 2022, 189: 115844.

[10] Ma S, Wang H*, Li J, Fu Y, Zhu W*. Methane production performances of different compositions in lignocellulosic biomass through anaerobic digestion. Energy, 2019, 189: 116190.

[11] Ma S, Wang H, Gao X, Bian C, Zhu W*. Mitigating ammonia inhibition in anaerobic digestion with lignin-based carbon materials synthesized by hydrothermal carbonization. Carbon Research, 2025, 4: 20.

[12] Sun X, Haiyan Xiong, Jiang C, Zhang D, Yang Z, Huang Y, Zhu W, Ma S, Duan J, Wang X, Liu W, Guo H, Li G, Qi J, Liang C, Zhang Z, Li J, Zhang H, Han L, Zhou Y, Peng Y, Li Z*. Natural variation of DROT1 confers drought adaptation in upland rice. Nature Communications, 2022, 13: 4265.

[13] Yu X, Li X, Ma S, Wang Y, Zhu W, Wang H*. BiomassBased, Interface Tunable, and DualResponsive Pickering Emulsions for Smart Release of Pesticides. Advanced Functional Materials, 2023, 33: 2214911.

[14] Wang Y, Yu X, Ma S, Cao S, Yuan X, Zhu W, Wang H*. High-value utilization of lignin: construction of an intelligent release system for targeting the delivery of pesticides. Green Chemistry, 2024, 26: 42-56.

[15] Li J, Jia H, Ma S, Xie L, Wei X-X, Dai L, Wang H, Su F, Chen C-M. Separator Design for High-Performance Supercapacitors: Requirements, Challenges, Strategies, and Prospects. ACS Energy Letters, 2022, 8: 56-78.

[16] Xu S, Gu X, Wu Q, Gao Y, Cai Y, Ma S, Zheng Z*, Wang X.* An ecological and economic approach to enhancing the agronomic quality of anaerobic digestate: Effects of adding agricultural Jiaosu on metabolism and the microbial community. Chemical Engineering Journal, 2023, 468: 143648.

[17] Li J, Wang Y, Zhu W, Chen S, Deng T, Ma S, Wang H*. A novel mechanocatalytical reaction system driven by fluid shear force for the mild and rapid pretreatment of lignocellulosic biomass. Waste Management, 2022, 148: 98-105.

(二)发明专利

[1] 朱万斌,王洪亮,马帅帅. 一种用厌氧发酵自身产物增强秸秆产甲烷性能的预处理方法和应用. CN114181977A.

[2] 朱万斌,王洪亮,马帅帅. 一种提高秸秆厌氧发酵产甲烷性能的处理方法及其应用. CN112725383A.


四、学术兼职

担任《Renewable and Sustainable Energy Reviews》《Chemical Engineering Journal》《Bioresource Technology》《Industrial Crops and Products》《Energy》《Carbon Research》等期刊审稿人


 

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