杨傲,男,河南南阳人,博士(后),副教授,硕士生导师,斯威本科技大学兼职博士生合作导师,担任Separation and Purification Technology(IF = 8.6,SCI一区TOP)和Chemical Engineering Research and Design (IF = 3.9,SCI三区) 的Guest Editor,Frontiers in Chemical Engineering(EI)的Review Editor和Guest Editor,Industrial & Engineering Chemistry Research、Energy、ACS Sustainable Chemistry & Engineering、Separation and Purification Technology等期刊审稿专家。近年来,授权专利4项,获批软件著作权5件,获省部级科技进步奖二等奖1项(7/10),获重庆市/重庆大学优秀博士学位论文。在化学工程、智能化工和能源安全类相关学科发表高水平论文60余篇(谷歌学术引用2300余次),其中以第一或通讯作者发表高水平论文30余篇(其中SCI一区TOP期刊12篇)。发表期刊包含1篇AIChE Journal、2篇Chemical Engineering Science、2篇Chemical Engineering Journal、1篇Green chemistry、1篇Process Safety and Environmental Protection、9篇Industrial & Engineering Chemistry Research、16篇Separation and Purification Technology、4篇Energy、3篇Journal of Cleaner Production、2篇Computers and Chemical Engineering,其中多篇入选ESI 高被引论文、热点论文,入选2023年斯坦福大学全球影响力榜单Top 2%(Single year)。课题组拥有COSMOtherm(COSMO-RS) 2024正版软件、计算机辅助分子设计程序(Python)、分子描述符自提取程序(Python)、构效关系预测模型程序(Python)、多目标优化程序(Matlab),可用于相关研究仿真模拟计算。 Ø 研究方向 (1) 智能化工安全:基于AI构建分子定量/定性构效关系(QSPR/QSAR)模型实现化学品安全、环境、阻燃材料等性质预测和分子设计,基于AI筛选设计脱除CO2/H2S的绿色高效溶剂。 (2) 化工过程节能降碳与CCUS:,基于量子化学计算(COSMO-RS)实现共沸溶液的绿色、低碳溶剂开发,天然气/工业废气脱碳脱硫工艺建模,开发绿色低碳的生物质工艺过程。 (3) 化工过程强化与多目标优化:基于Aspen Plus和Matlab/Python实现化工过程强化(萃取精馏、萃取分隔板精馏、变压精馏)与多目标优化(经济/环境/安全),实现可持续化工过程设计。 Ø 教育经历 2016.09-2021.07 重庆大学,化学工程与技术,博士(导师:申威峰) Ø 工作经历 (1) 2024.04-至今 重庆科技大学,副教授,硕士生导师 (2) 2021.08-2024.03 重庆科技大学,讲师,硕士生导师 (3) 2022.11-至 今 北京理工大学重庆创新中心,博士后(合作导师:申威峰、王萌) (4) 2021.08-至 今 斯威本科技大学,兼职博士生合作导师(合作者:Jaka Sunarso) (5) 2020.07-2021.07 香港理工大学,助理研究员(合作导师:任竞争) Ø 主讲课程 本科生课程:《通风工程安全》、《危险化学品管理》、《化工过程安全仿真实训》、《化工工艺热风险及评估》、《化工安全工程综合实验》。 Ø 指导学生竞赛 累计指导本科生13人、合作指导博士生一名(澳洲斯威本科技大学)。指导本科生参加《全国大学生化工安全设计大赛》(国A)、《全国大学生化工安全设计竞赛》(国B)获国家级、省部级奖励5项。 Ø 承担科研项目 (1) 主持 国家自然科学基金青年项目1项(国家基金,2024.01-2026.12,在研) (2) 主持 重庆市自然科学基金面上项目1项(省部级,2022.08-2025.07,在研) (3) 主持 重庆市教育委员会青年项目1项(省部级,2022.10-2025.09,在研) (4) 主持 重庆科技学院人才引进科研启动经费项目1项(校级,2022.01-2024.12,已结题) (5) 主持 重庆市博士后研究项目特别资助1项(省部级,2023.07-2024.11,在研) (6) 主持 重庆大学中央高校基本科研业务费1项(已结题) Ø 代表性论文(#表示共同第一作者; *表示通讯作者) 2024年 [1] Yang A., Sun S.R, Su Y.*, Kong Z.Y., Ren J.Z., Shen W.F.*, Insight to the prediction of CO2 solubility in ionic liquids based on the interpretable machine learning model. Chemical Engineering Science, 2024, 297, 120266. (化工三大刊、SCI二区、IF = 4.7) [2] Yang A., Sun S.R., Kong Z.Y.*, Zhu S.S., Sunarso J., Shen W.F.*, Energy-efficient heterogeneous triple-column azeotropic distillation process for recovery of ethyl acetate and methanol from wastewater. Computers and Chemical Engineering, 2024, 183, 108618. (计算机化工TOP期刊、SCI二区、IF = 4.1) [3] Yang A., Sun S.R.*, Mi H.F., Wang W.H., Liu J., Kong Z.Y.*, An interpretable feed-forward neural network and XG-Boost based algorithms to predict CO2 solubility in ionic liquid. Industrial & Engineering Chemistry Research, 2024, 63 (18), 8293–8305. (化工三大刊、SCI三区、IF = 4.2) [4] Yang A., Sun S.R., Zhu S.S., Kong Z.Y.*, Qi L., Wang Q.*, A systematic approach for screening green entrainers combining the environmental-health-safety indexes and separation performance. Process Safety and Environmental Protection, 2024, 186, 1320-1329. (安全领域TOP期刊、SCI二区、IF = 7.8) [5] Cao H.T., Li Y., Chang C.L., Zhang X.P., Yang A.*, Shen W.F.*, A deep learning hybrid framework combining efficient evolutionary algorithm for complex many-objective optimization of triple CO2 feeds sustainable methanol production. ACS Sustainable Chemistry & Engineering, 2024, 12(17), 6682–6696. (SCI一区TOP期刊、IF = 8.4) [6] Sun S.R., Yang A.*, Kong Z.Y., Huang H.S.*, Lv L.P., Zhou Q.L., Gu B.F., The conceptual design and process intensification of the separation of ternary azeotropic mixture with heterogeneous characteristic. Chemical Engineering Research and Design, 2024, 204, 303-315. (SCI三区、IF = 3.9) [7] Sanchez-Ramírez E., Sun S.R., Sim J.Y., Yang A., Kong Z.Y.*, Segovia-Hernandez J.G., A more appropriate way to optimize the hybrid reactive-extractive distillation system. Separation and Purification Technology, 2024, 344 , 127184. (SCI一区TOP、IF = 8.1) 2023年 [1] Yang A.*, Kong Z.Y.*, Sunarso J., Design and optimisation of novel hybrid side stream reactive extractive distillation for recovery of isopropyl alcohol and ethyl acetate from wastewater. Chemical Engineering Journal, 2023, 451, 138563. (SCI一区TOP、IF = 15.1、ESI 1%高被引) [2] Yang A., Ernawati L., Wang M.*, Kong Z.Y., Sunarso J., Sun S.R.*, Shen W.F., Multi-objective optimization of the intensified extractive distillation with side-reboiler for the recovery of ethyl acetate and methanol from wastewater, Separation and Purification Technology, 2023, 310, 123131.(SCI一区TOP、IF = 8.1、ESI 1%高被引) [3] Yang A., Kong Z.Y.*, Sun S.R., Sunarso J., Ren J.Z., Shen W.F.*, Design and multiobjective optimization of a novel double extractive dividing wall column with a side reboiler scheme for the recovery of ethyl acetate and methanol from wastewater. Industrial & Engineering Chemistry Research, 2023, 62 (44), 18591−18602. (化工三大刊、SCI三区、IF = 4.2) [4] 杨傲, 王文和*, 米红甫, 朱承志, 冯泽民, 申威峰*. 基于Aspen Plus的化工过程安全仿真实训课程设计与探索. 实验技术与管理, 2023, 40(9): 150-156.(北大中文核心) [5] Kong Z.Y.*, Yang A.*, Tsai C.C., Adi V.S.K., Saptoro A., Sunarso J., Design and Optimization of Hybrid Reactive-Extractive Distillation for Ternary Azeotropic Separation: A Case Considering the Effect of Side Reactions. Industrial & Engineering Chemistry Research, 2023, 62 (27), 10601-10610. (化工三大刊、SCI三区、IF = 4.2) [6] Du L.L., Jin S.M.*, Yang Z.N., Sun S.R., Yang A.*, Shen W.F., An efficient multi-criteria decision making for assessing the optimization of reactive extractive distillation in terms of economy, environment and safety. Chemical Engineering Research and Design, 2023, 197, 838–850. (SCI三区、IF = 3.9) [7] Wu J.Z., Su Y.*, Yang A., Ren J.Z., Xiang Y., An improved multi-modal representation-learning model based on fusion networks for property prediction in drug discovery. Computers in Biology and Medicine, 2023, 165, 107452. (SCI二区、IF = 7.7) [8] Tsai C.C., Kong Z.Y.*, Yang A., Adi V.S.K., Sunarso J.*, A perspective on the inevitable side reactions in ethylene-glycol based reactive-extractive distillation. Chemical Engineering Journal, 2023, 475, 146331. (SCI一区TOP、IF = 15.1) [9] Shi T., Zhou J.Z., Ren J.Z.*, Ayub Y., Yu H.S., Shen W.F., Li Q., Yang A., Co-valorisation of sewage sludge and poultry litter waste for hydrogen production: Gasification process design, sustainability-oriented optimization, and systematic assessment. Energy, 2023, 272, 127131. (SCI一区TOP、IF = 9.0) [10] Sun S.R., Yang A., Chang C.L., Hua G.Q.*, Ren J.Z., Lei Z.G., Shen W.F.*, Improved multiobjective particle swarm optimization integrating mutation and changing inertia weight strategy for optimal design of the extractive single and double dividing wall column. Industrial & Engineering Chemistry Research, 2023, 62(43), 17923-17936. (化工三大刊、SCI三区、IF = 4.2) 2022年 [1] Yang A.*, Kong Z.Y., Sunarso J., Su Y.*, Wang Q., Zhu S.S., Insights on sustainable separation of ternary azeotropic mixture tetrahydrofuran/ethyl acetate/water using hybrid vapor recompression assisted side-stream extractive distillation, Separation and Purification Technology, 2022, 290, 120884.(SCI一区TOP、IF = 8.1) [2] Yang A., Wang W.H., Sun S.R.*, Shi T., Ren J.Z., Bai M.N., Shen W.F.*, Sustainable design and multi-objective optimization of eco-efficient extractive distillation with single and double entrainer(s) for separating the ternary azeotropic mixture tetrahydrofuran/ethanol/methanol, Separation and Purification Technology, 2022, 285, 120413.(SCI一区TOP、IF = 8.1、ESI 1%高被引) [3] Yang A.*, Su Y., Sun S.R., Shen W.F.*, Bai M.N., Ren J.Z.*, Towards sustainable separation of the ternary azeotropic mixture based on the intensified reactive-extractive distillation configurations and multi-objective particle swarm optimization, Journal of Cleaner Production, 2022, 332, 130116.(SCI一区TOP、IF = 11.1、ESI 1%高被引) [4] Yang A.*, Kong Z.Y., Sunarso J., Shen W.F.*, Towards energy saving and carbon reduction of pressure-swing distillation for separating the ternary azeotropic mixtures by thermodynamic insights and process intensification Separation and Purification Technology, 2022, 301, 121983.(SCI一区TOP、IF = 8.1) [5] Qi L., Li J. L., Yang A.*, Yi X.G., Shen W.F.*, Toward a Sustainable Azeotrope Separation of Acetonitrile/Water by the Synergy of Ionic Liquid-Based Extractive Distillation, Heat Integration, and Multiobjective Optimization. Industrial & Engineering Chemistry Research, 2022, 61 (27), 9833-9846. (化工三大刊、SCI三区、IF = 4.2) [6] Kong Z.Y., Yang A.*, Segovia-Hernández J.G.*, Putrantod A., Sunarsoa J., Towards sustainable separation and recovery of dichloromethane and methanol azeotropic mixture through process design, control, and intensification. Journal of Chemical Technology Biotechnology, 2023, 98, 213-229. (SCI四区、IF = 3.4) [7] Kong Z.Y., Yang A.*, Chua J., Chew J.J., Sunarso J.*, Energy-Efficient Hybrid Reactive-Extractive Distillation with a Preconcentration Column for Recovering Isopropyl Alcohol and Diisopropyl Ether from Wastewater: Process Design, Optimization, and Intensification. Industrial & Engineering Chemistry Research, 2022, 61, 11156−11167. (化工三大刊、SCI三区、IF = 4.2) 2021年之前 [1] Yang A., Shen W.F.*, Wei S.A., Dong L.C., Li J., Gerbaud V., Design and control of pressure-swing distillation for separating ternary systems with three binary minimum azeotropes. AIChE Journal, 2019, 65, 1281-1293.(化学工程顶级期刊、SCI二区、ESI 1%高被引) [2] Yang A.#, Su Y.#, Wang Z.H., Jin S.M., Ren J.Z., Zhang X.P., Shen W.F.*, H Clark J., A multi-task deep learning neural network for predicting flammability-related properties from molecular structures. Green Chemistry, 2021, 23 (12), 4451-4465.(SCI一区TOP、IF = 9.8) [3] Su Y.#, Yang A.#, Jin S.M., Shen W.F.*, Cui P.Z., Ren J.Z., Investigation on ternary system tetrahydrofuran/ethanol/water with three azeotropes separation via the combination of reactive and extractive distillation. Journal of Cleaner Production, 2020, 273, 123145.(SCI一区TOP、IF = 11.1) [4] Yang A., Sun S.R., Eslamimanesh A., Wei S.A., Shen W.F.*, Energy-saving investigation for diethyl carbonate synthesis through the reactive dividing wall column combining the vapor recompression heat pump or different pressure thermally coupled technique. Energy, 2019, 172, 320-332.(SCI一区TOP、IF = 9.0、ESI 1%高被引、ESI 1‰热点论文) [5] Yang A., Su Y., Shen W.F.*, Chien I.L., Ren J.Z., Multi-objective optimization of organic Rankine cycle system for the waste heat recovery in the heat pump assisted reactive dividing wall column. Energy Conversion and Management, 2019, 199, 112041.(SCI一区TOP、IF = 10.4) [6] Yang A., Jin S.M., Shen W.F.*, Cui P.Z.*, Chien I.L., Ren J.Z., Investigation of energy-saving azeotropic dividing wall column to achieve cleaner production via heat exchanger network and heat pump technique. Journal of Cleaner Production, 2019, 234, 410-422.(SCI一区TOP、IF = 11.1) [7] Yang A., Su Y., Chien I.L., Jin S.M., Yan C.L., Wei S.A., Shen W.F.*, Investigation of an energy-saving double-thermally coupled extractive distillation for separating ternary system benzene/toluene/cyclohexane. Energy, 2019, 186, 115756.(SCI一区TOP、IF = 9.0) [8] Yang A., Sun S.R., Shi T., Xu D., Ren J.Z., Shen W.F.*, Energy-efficient extractive pressure-swing distillation for separating binary minimum azeotropic mixture dimethyl carbonate and ethanol. Separation and Purification Technology, 2019, 229, 115817.(SCI一区TOP、IF = 8.1) Ø 发明专利 (1) 申威峰, 杨傲, 双热耦合三元萃取精馏分离苯-甲苯-环己烷三元共沸体系的方法, 2018-6-5,中国, ZL201810566377.1 (发明专利, 授权) (2) 申威峰, 杨傲, 一种反应精馏联合侧线萃取精馏分离四氢呋喃-乙醇-水三元共沸体系的方法, 2019-10-28, 中国, CN201911069406.4 (发明专利, 公开) (3) 申威峰, 杨傲, 一种反应精馏联合萃取精馏分离四氢呋喃-乙醇-水三元共沸体系的方法, 2019-10-28, 中国, CN201911069550.8 (发明专利, 公开) (4) 杨傲, 王文和, 冯泽民, 双塔反应萃取侧线精馏工艺分离叔丁醇-乙醇-水三元共沸体系的方法, 2022-07-05, 中国, CN114702368A (发明专利, 公开) (5) 杨傲, 王文和, 冯泽民, 申威峰, 乙酸乙酯-甲醇-水三元共沸物分离用双隔板萃取精馏塔, 2022.07.29, 中国, ZL202210518230.1 (发明专利, 授权) (6) 杨傲, 王文和, 冯泽民, 申威峰, 分离提纯乙酸乙酯-甲醇-水三元共沸混合物的方法, 中国, 2022.08.26, CN114939283A (发明专利, 授权) (7) 杨傲, 朱爽爽, 粟杨, 冯泽民, 孙诗瑞, 申威峰, 一种耦合非均相和三塔精馏分离乙酸乙酯-甲醇-水的方法, 中国, 2023.05.09, CN116082159A (发明专利, 授权) Ø 软件著作 (1) 杨傲, 朱爽爽, 孙诗瑞, 申威峰, 谭伯川, 基于PSO的反应萃取精馏优化软件, 2022SR1424725. (2) 朱爽爽, 杨傲, 孙诗瑞, 申威峰, 谭伯川, 基于NSGAII的精馏多目标优化软件, 2023SR0447508. (3) 申威峰, 孙诗瑞, 杨傲, 基于粒子群算法的萃取精馏分隔壁塔多目标优化软件, 2023SR0869519. (4) 杨傲,朱爽爽,孙诗瑞,谭伯川,申威峰,基于SVM的溶剂环境性质预测软件,2024SR0051795. (5) 杨傲,朱爽爽,孙诗瑞,谭伯川,基于XGBoost的溶剂环境性质预测软件,2024SR0171945. Ø 荣誉奖励 2023年 事业单位工作人员年度考核优秀 2023年 重庆科技学院优秀共产党员 2022年 事业单位工作人员年度考核优秀 2022年 重庆市/重庆大学优秀博士学位论 2021年 重庆市科技进步奖二等奖(个人排名第7) 2020年 重庆大学优秀毕业研究生 2019年 博士研究生国家奖学金
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