冷尔唯

副教授

基本情况

冷尔唯,1992年生,江西省九江市修水县人

ResearchGate:https://www.researchgate.net/profile/Erwei_Leng?ev=hdr_xprf

Google Scholar:https://scholar.google.com/citations?user=SuJ4MjcAAAAJ&hl=en&oi=ao

办公室:湖南大学机械与运载工程学院205

E-mail:lengerwei@hnu.edu.cn

教育及工作经历

2009.09-2013.06,西安交通大学,能源与动力工程学院,工学学士,导师:王树众

2013.09-2019.06,华中科技大学,能源与动力工程学院,工学博士,导师:徐明厚、龚勋

2018.04-2018.08,葡萄牙里斯本大学,Instituto Superior Técnico,联合培养,导师:Mário Costa

2019.07至今,湖南大学,机械与运载工程学院,助理教授,副教授

学术成果

纵向项目:

[1]国家自然科学基金面上基金项目,2025.01-2028.12,在研;

[2]国家自然科学基金青年基金项目,2021.01-2023.12,已结题;

[3]湖南省自然科学基金青年基金项目,2021.01-2023.12,已结题;

[4]福建省自然科学基金青年基金项目,2021.01-2023.12,已结题;

[5]湖南大学科研启动经费及人才项目专项经费,2020.01-2024.12,已结题;

横向项目:

[1]江西江投能源技术研究有限公司,“多源生物质掺烧特性研究及模型开发项目”,2025-2026,在研;

[2]国家电力投资集团有限公司,“芦竹生物质掺烧降碳关键技术研究及应用项目”,2024-2025,已结题;

[3]中冶长天国际工程有限公司,“基于生物油分层利用的冶金生物焦性能调控技术”,2023-2024,已结题;

[4]国网电网有限公司,“火电机组灵活供给能力及能效状态评估软件集成及部署”,2023-2024,已结题;

[5]国网电网有限公司,“火电机组深度调峰度电成本及报价软件加工”,2022-2022,已结题

[6]国网电网有限公司,“基于火电机组烟气余热处理的生物质耦合燃煤发电技术应用研究”,2022-2022,已结题;

[7]国网电网有限公司,“基于电力现货市场环境下发电边际成本测算模型开展火电机组成本测算”,2022-2022,已结题;

参与项目:

[1]国家自然科学基金青年基金项目,“基于不同碱金属/碱土金属催化方式的纤维素热解特性研究”,2014.01-2016.12,主要参与,已结题;

[2]国家自然科学基金面上项目,“基于离子液体再生的不同形态纤维素热解特性及一次反应机理研究”,2018.01-2021.12,主要参与,已结题;

[3]国家自然科学基金联合基金项目,“微重力下煤粉燃烧的成灰及污染物生成机理的研究”,2018.01-2020.12,主要参与,已结题;

[4]国家自然科学基金重点国际合作项目,“煤粉O2/CO2循环燃烧过程中灰颗粒的沉积机理研究”,2016.01-2020.12,已结题;

[5]企业委托项目,“纯电动工程车动力系统热流优化设计与控制关键技术开发”,2019-2024,已结题;

[6]企业委托项目,“广东电网公司电力科学研究院:锅炉燃烧特性分析及在线控制研究”,已结题;

[7]企业委托项目,“广东粤电靖海电厂世界首台百万千瓦机组添加吸附剂减排燃煤PM2.5示范项目”,已结题。

发表论文

CI/EI论文50余篇,部分如下

[1]Muxin Liu, Quan Tang, Erwei Leng*, et al. Multi-staged machine learning-driven investigation of biomass-derived hard carbon anodes for sodium-ion batteries: Connecting precursor, structure, and performance [J]. Chemical Engineering Journal, 2026, 172350.

[2]Jiaxue Zhu, Quan Tang, Xun Gong, Erwei Leng*, et al. Depolymerization mechanism ofα-O-4 type lignin in pyrolysis through a cyclohexadienone intermediate [J]. Fuel, 2026, 137470.

[3]Quan Tang, Qian Li, Haoyu Zhou, Erwei Leng*, et al. Performance Regulation of Biomass-derived Coke for Metallurgical Applications Based on the Fractional Utilization of Biomass Pyrolysis Oil[J]. Energy, 2025, 134631.

[4]Zeng Y, Xue Y, Gong X, Gao X, E J, Chen J, Leng E*. Pyrolytic Performance and Kinetics Study of Epoxy Resin in Carbon Fiber Reinforced Composites: Synergistic Effects of Epoxy Resin and Carbon Fiber[J]. Journal of Analytical and Applied Pyrolysis, 2023, 106255.

[5]Leng E, Yang L, Wang T, et al. Mechanistic study on levoglucosan condensation and decomposition in the condensed phase during cellulose pyrolysis[J]. Fuel, 2024, 358: 130109.

[6]Leng E, He Y, Xue Y, et al. Interactions between cellulose and lignin during pyrolysis: Evolutions of condensed-phase functional groups and gas-phase volatile fraction[J]. Industrial Crops and Products, 2023, 205: 117518.

[7]Zeng Y, Leng E*, Xue Y, et al. Synergistic Effects in the Co-pyrolysis of Thermoset Epoxy Resin and Biomass on Kinetics and Product Distribution[J]. Polymer Degradation and Stability, 2023: 110569.

[8]He B, Yu Y, Gong X, Liu S, Tian H, Leng E*. Mechanism of acid-catalyzed pyrolysis of levoglucosan: Formation of anhydro-disaccharides[J]. Fuel, 2023, 345: 128242.

[9]Yilin Guo, Yang Fang Y, Xun Gong, Shuai Liu, Hong Tian, Jingwei Chen, Jiaqiang E, Erwei Leng*. Experimental and theoretical study of the catalytic effects of potassium and calcium additives on the pyrolysis ofβ-O-4 type lignin model compounds [J]. Fuel, 2023, 332: 125976.

[10]吕当振,陈珣,曾俊,伍奕涵,胡臻,冷尔唯.高比例可再生能源电力现货市场中燃煤机组启动成本计算方法研究. [J]节能技术, 2022, 40(06): 548-552.

[11]Fan Xiao, Li Yang, Ben He, Hong Tian, Shan Cheng, Yanshan Yin, Erwei Leng*. Experimental and theoretical study on the evolution of functional groups in cellulose char during oxidative pyrolysis [J]. Fuel, 2022, 329: 125400.

[12]Leng E, Guo Y, Yin Y, et al. In situ evolution of functional groups in char during cellulose pyrolysis under the catalysis of KCl and CaCl2 [J]. Fuel, 2022, 309: 122227.

[13]Leng E, Guo Y, Chen J*, et al. A comprehensive review on lignin pyrolysis: Mechanism, modeling and the effects of inherent metals in biomass [J]. Fuel, 2022, 309: 122102.

[14]Chen J*, Meng T, Wang Q, et al. Jingwei Chen, Tian Meng, Qiteng Wang, Yu Bai, Jiaqiang E, Erwei Leng*, Feng Zhang, Gaoliang Liao. [J]. Chemical Engineering Journal, 2022, 433: 133828.

[15]Jingwei Chen*, Qiteng Wang, Hongda Wei, Tian Meng, Jiaqiang E, Erwei Leng*, Feng Zhang, Gaoliang Liao. Molecular dynamic study on mechanisms of polyvinylidene fluoride decomposition by using supercritical water[J]. Chemical Engineering Journal, 2022, 431: 133958.

[16]郭以琳,殷黎,冷尔唯*,等. K+,Ca2+,Fe2+催化β-O-4木质素多聚体模型化合物的快速热解特性研究. [J]工程热物理学报, 2021, 42(12): 3073-3082.

[17]Leng E, He B, Chen J, et al. Prediction of three-phase product distribution and bio-oil heating value of biomass fast pyrolysis based on machine learning [J]. Energy, 2021, 236: 121401.

[18]Jingwei Chen, Qiteng Wang, Zhengyong Xu, Jiaqiang E*, Erwei Leng*, Feng Zhang, Gaoliang Liao. Process in supercritical water gasification of coal: A review of fundamentals, mechanisms, catalysts and element transformation [J]. Energy Conversion and Management, 2021, 237: 114122.

[19]Erwei Leng, Ana I. Ferreiro, Tingfeng Liu, et al. Experimental and kinetic modelling investigation on the effects of crystallinity on cellulose pyrolysis. [J] Journal of Analytical and Applied Pyrolysis, 2020: 104863.

[20]Li Yin, Erwei Leng*, Yang Fang, et al. Effects of KCl, KOH and K2CO3 on the pyrolysis of Cβ-O type lignin-related polymers. [J] Journal of Analytical and Applied Pyrolysis, 2020: 104809

[21]Erwei Leng, Mário Costa, Xun Gong, et al. Effects of KCl and CaCl2 on the evolution of anhydro sugars in reaction intermediates during cellulose fast pyrolysis. [J] Fuel, 2019, 251: 307-315.

[22]Erwei Leng, Ming Mao, Yang Peng, et al. The direct conversion of cellulose into 5-Hydroxymehylfurfural with CrCl3 composite catalyst in ionic liquid under mild conditions. [J] Chemistry Select, 2019, 4:181-189.

[23]Erwei Leng, Mário Costa, Yang Peng, et al. Role of different chain end types in pyrolysis of glucose-based anhydrosugars and oligosaccharides. [J] Fuel, 2018, 234:738-745.

[24]Erwei Leng, Yang Zhang, Yang Peng, et al. In situ structural changes of crystalline and amorphous cellulose during slow pyrolysis at low temperatures. [J] Fuel, 2018, 216:313-321.

[25]Erwei Leng, Yang Wang, Xun Gong, et al. Effect of KCl and CaCl2 loading on the formation of reaction intermediates during cellulose fast pyrolysis. [J] Proceedings of the Combustion Institute, 2017, 36:2263-2270.

[26]冷尔唯,龚勋,张扬,等.纤维素热解机理研究进展:以中间态纤维素为核心的纤维素演变. [J]化工学报, 2018, 69(1): 239-248.

[27]冷尔唯,张彪,张坚,等.原糖和脱水糖模型化合物的快速热解特性研究. [J]工程热物理学报, 2016, 37(10): 2225-2229.

学术报告:

[1]冷尔唯.基于氧气/蒸汽氧化的碳纤维复合材料热解-氧化回收机理研究.第五届全国循环经济与减污降碳大会暨西部资源碳中和未来产业成果对接会,四川.成都, 2025.

[2]Erwei Leng. Steam/Oxygen Oxidation Kinetics and Fiber Damage Mechanism in Pyrolysis-Oxidation Recycling of Carbon Fiber Reinforced Polymers. International Conference on Energy Engineering, Changsha, China, 15 Nov-16 Nov 2025.

[3]冷尔唯.生物质热解凝聚相液态中间体和官能团演变研究,碳中和与绿色化学工程技术研讨会,广东.汕头,2023.

[4]Erwei Leng, Ana Isabel Ferreiro, Xun Gong et al. Kinetic modeling of cellulose pyrolysis considering cellulose crystallinity. The 6th International Conference on Biomass Energy, Wuhan, China, 16 Oct-19 Oct 2018.

[5]Erwei Leng, Wang Yang, Gong Xun, et al. Effect of KCl and CaCl2 loading on the formation of reaction intermediates during cellulose fast pyrolysis. The 36th International Symposium on Combustion, Seoul, Korea, 31 Jul-5 Aug 2016.

[6]Erwei Leng, Zhang Yang, Gong Xun, et al. Evolution of cellulose with different crystallization morphology during pyrolysis based on in-situ diffuse reflectance FT-IR. The 21st International Symposium on Analytical and Applied Pyrolysis, Nancy, France, 9-12 May 2016.

[7]冷尔唯,张彪,张坚,等.原糖和脱水糖模型化合物的快速热解特性研究,工程热物理燃烧学分会,中国.北京, 2015.

发明专利

[1]陈晓英;刘凌;张涛;杨琨;冷尔唯;陶丽;陈祺;王健;陆利俊;崇培安;姚延民.一种酸性焦油辅助的生物质颗粒湿磨耦合烘焙处理的方法. 202511165683.0

[2]冷尔唯;唐权;赵鹏飞;佘敏;马佳怡;王瑾;屈正午;梁涵睿;林志鸿.一种基于生物油分级利用的冶金生物焦炭制备系统及方法. 202411968795.5

[3]尚锦松;默安然;王传鹏;尹晨;彭斓;范锦辉;何畅;李伟;冷尔唯.一种用于搓丝板加工的机床定位装置. 202410957146.9

[4]尚锦松;默安然;何畅;孙婷婷;王传鹏;张强;李伟;冷尔唯.一种用于螺纹紧固件模具加工双刀工艺的换刀装置. 202410952513.6

[5]龚勋;郑振宇;冷尔唯.一种适用于微重力条件下的磁吸式自动进样器. 202410436632.6

[6]李谦;王兆才;冷尔唯;周浩宇.一种制备冶金用生物质燃料的方法及系统. 202410004768.X

[7]卓晨;王康;倪祥云;冷尔唯.一种用于回收碳纤维材料的热解剥离一体化装置及系统. 202311192657.8

[8]陈敬炜;康斯仪;张演;黄敏;覃健源;孟甜;欧锦涛;冷尔唯.一种基于超临界水热氧化的钴酸锂电池正极材料回收方法. 202310525944.X

[9]神翠楠;李伟;韦锌祥;李锐伟;陈欣妍;冷尔唯;朱婉欣;袁嘉皓.一种自攻螺钉. 202320768164.3

[10]冷尔唯;肖凡;贺毅;陈敬炜;鄂加强;张峰;廖高良.热解凝聚相反应装置. 202111259596.3

[11]冷尔唯;肖凡;贺毅;陈敬炜;鄂加强;张峰;廖高良.热解凝聚相反应装置. 202122602488.3

奖励与荣誉

[1]全球前2%顶尖科学家磅榜单:2024年、2025年

[2]湖南大学教学成果奖:2025年

[3]湖南大学工会积极分子:2024年

[4]湖南大学青年岗位能手:2025年

[5]湖南省电机工程学会锅炉专业委员会年会优秀论文指导老师:2024年(一等)

[6]湖南大学优秀硕士学位论文指导老师:2022年(郭以琳)、2024年(杨丽)、2025年(曾钰琨)

[7]湖南省优秀硕士学位论文指导老师:2022年(郭以琳)

[8]湖南省优秀硕士研究生指导老师:2023年(贺奔)

[9]研究生国家奖学金指导老师:2020-2021学年(郭以琳)、2021-2022学年(贺奔)、2022-2023学年(杨丽)、2023-2024学年(曾钰琨)

[10]大学生节能减排社会实践与科技竞赛:2024年(省二*2)、2025年(国三、省二)

[11]全国零碳未来创新大赛:2024年(国一)

[12]互联网+大学生创新创业大赛:2023年(省三)

[13]湖南大学本科毕业实习优秀指导教师:2021年

[14]湖南大学优秀毕业设计指导教师:2023年(桂晨晨)

[15]湖南大学优秀班主任:2020-2021学年、2021-2022学年、2023-2024学年

[16]湖南大学机械学院教师教学基本功大赛:2022年(三等)

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