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热能工程系

黄鑫

2019-10-17 16:34  点击:[]

[中文版]

姓名

黄鑫

性别

所在部门

热能工程系

职称

讲师

职务

联系电话

邮箱

xin_huang@cqu.edu.cn

 

*个人简介:

黄鑫,男,1991.9,汉族,重庆合川人,工学博士,讲师。20136月获中国矿业大学化学工程与工艺学士学位,同年保送本校攻读硕士学位,师从曹景沛教授,曾获硕士研究生国家奖学金,优秀创新硕士,优秀硕士学位论文、优秀毕业生、校级优秀学生等荣誉称号。201610月由国家公派赴日本九州大学先导物质化学研究所所长林润一郎教授课题组攻读博士学位,20199月获得量子过程理工专业工学博士学位。201910月加入全球最大网赌正规平台,主要从事煤与生物质催化热解/低温气化以及绿色催化转化生物基平台化合物等相关研究。在ACS Sustainable Chem. Eng.Energy Convers. Manag.,FuelFuel Process. Technol., J. Anal. Appl. Pyrolysis、和Int. J. Hydrog. Energy等国际知名SCI能源期刊发表论文10余篇,包括1ESI 1%工程领域高被引论文,参加国家学术会议9次,并多次作口头报告。担任Energy Convers. Manag.和煤炭学报(英文版)审稿人。

 

教育经历:

2016.10-2019.09 日本九州大学 量子过程理工   工学博士

2013.09-2016.06 中国矿业大学 化学工程与技术 工学硕士

2009.09-2013.06 中国矿业大学 化学工程与工艺 工学学士

 

*研究方向:

¶  低品位资源的热化学转化

          快速热解、催化热解、热解多联产,生物油的表征,低温气化制备合成气

¶  绿色催化转化生物基平台化合物

          制备负载型金属催化剂、固体酸性催化剂,分离生物质三组分,制备纤维素基平台化合物,解聚木质素

 

研究生培养:

欢迎有感兴趣的同学随时联系与交流,向优秀本科生提供低品位炭质资源热化学转化方面的科研项目训练机会。

 

在研科研项目:

 

已结题科研项目:

 

*发表论文:

1.     X Huang, K Yamasaki, S Kudo, J Sperry, J Hayashi. Influence of ionic liquid type on porous carbon formation during the ionothermal pyrolysis of cellulose. J. Anal. Appl. Pyrolysis, under review. [IF = 3.5, Q1, Rank_chemical engineering = 95/928]

2.     X Huang, S Kudo, J Sperry, J Hayashi. Clean Synthesis of 5-Hydroxymethylfurfural and Levulinic Acid by Aqueous Phase Conversion of Levoglucosenone over Solid Acid Catalysts. ACS Sustainable Chem. Eng., 2019, 7 (6), 5892–5899. [IF = 6.1, Q1, Rank_ energy =39/1212]

3.     X Huang, S Kudo, J Hayashi. Two-step conversion of cellulose to levoglucosenone using updraft fixed bed pyrolyzer and catalytic reformer. Fuel Process. Technol., 2019, 191, 29-35. [IF = 4.5, Q1, Rank_energy = 49/1212]

4.     X Huang, JP Cao, XY Zhao, JX Wang, X Fan, YP Zhao, XY Wei. Pyrolysis kinetics of soybean straw using thermogravimetric analysis. Fuel, 2016, 169, 93-98. [IF = 5.1, Q1, Rank_energy = 31/1212, ESI工程领域1%高被引论文,被引69]

5.     X. Huang, JP Cao, P Shi, XY Zhao, XB Feng, YP Zhao, X Fan, XY Wei, T Takarada. Influences of pyrolysis conditions in the production and chemical composition of the bio-oils from fast pyrolysis of sewage sludge. J. Anal. Appl. Pyrolysis, 2014, 110, 353-362. [IF = 3.5, Q1, Rank_chemical engineering = 95/928,被引56]

6.     黄鑫, 曹景沛, 王敬贤, 赵小燕, 时鹏, 魏贤勇. 污水污泥快速热解过程中氮迁移规律研究. 中国矿业大学学报, 2016, 45(1): 176-181. ( EI )

7.     JP Cao, X Huang, XY Zhao, XY Wei, T Takarada. Nitrogen transformation during gasification of livestock compost over transition metal and Ca-based catalysts. Fuel, 2015, 140, 477-483. [IF = 5.1, Q1, Rank_energy = 31/1212被引25]

8.     JP Cao, X Huang, XY Zhao, BS Wang, S Meesuk, K Sato, XY Wei, T Takarada. Low-temperature catalytic gasification of sewage sludge-derived volatiles to produce clean H2-rich syngas over a nickel loaded on lignite char. Int. J. Hydrog. Energy, 2014, 39(17), 9193-9199. [IF = 4.1, Q1, Rank_energy = 73/1212被引34]

9.     FL Yang, JP Cao, XY Zhao, J Ren, W Tang, X Huang, XB Feng, M Zhao, X Cui, XY Wei. Acid washed lignite char supported bimetallic Ni-Co catalyst for low temperature catalytic reforming of corncob derived volatiles. Energy Convers. Manag., 2019, 196, 1257-1266. [IF = 7.2, Q1, Rank_energy = 17/1212 ]

10.  JP Zhao, JP Cao, F Wei, XY Zhao, XB Feng, X Huang, M Zhao, XY Wei. Sulfation-acidified HZSM-5 catalyst for in-situ catalytic conversion of lignite pyrolysis volatiles to light aromatics. Fuel, 2019, 255, 115784. [IF = 5.1 , Q1, Rank_energy = 31/1212]

11.  JX Wang, JP Cao, XY Zhao, SN Liu, X Huang, TL Liu, XY Wei. Comprehensive research of in situ upgrading of sawdust fast pyrolysis vapors over HZSM-5 catalyst for producing renewable light aromatics. J Energy Inst. 2019. https://doi.org/10.1016/j.joei.2019.04.013 [IF = 3.8]

 

 

学术会议交流:

1.     X Huang, D Mitsuyama, S Kudo, J Hayashi. Fast Synthesis of Hydroxymethylfurfural from Levoglucosenone by mixing with Sulphuric Acid and Heating in A Microtube Reactor, The 18th Asian Pacific Confederation of Chemical Engineering Congress, paper accepted.

2.     X Huang, S Kudo, J Hayashi. Production of Levoglucosenone by Catalytic Reforming of Volatiles from Fast Pyrolysis of Cellulose in an Updraft Fixed Bed Reactor. The 14th Japan-China Symposium on Coal and C1 Chemistry, Sep. 25-28, 2018, Hokkaido, Japan. Oral presentation.

3.     X Huang, S Kudo, J Hayashi. Clean Synthesis of 5-Hydroxylmethylfurfural from cellulose-derived levoglucosenone. The 13th Japan-China-Korea Joint Symposium on Carbon Saves the Earth, Aug. 12-15, 2018, Ulanqab, China. Poster presentation.

4.     工藤 真二,光山 大貴,ファン シン,林 潤一郎.「希硫酸を用いたレボグルコセノンの低温異性化」化学工学会第83回年会,大阪,201831315日.

5.     X Huang, S Kudo, J Hayashi. Clean Synthesis of 5-Hydroxylmethylfurfural and Levulinic Acid by Aqueous Phase Conversion of Levoglucosenone over Solid Acid Catalysts. Green Chemistry New Zealand 2017, Dec. 8-9, 2017, Auckland, New Zealand. Poster presentation.

6.     工藤 真二,ファン シン,林 潤一郎.「レボグルコセノンを原料とするHMFクリーン合成」化学工学会第49回秋季大会,名古屋,201792025日.

7.     X Huang, JP Cao, XY Zhao, XY Wei. Pyrolysis kinetics of soybean straw using thermogravimetric analysis. 2015 International Conference on Coal Science and Technology, Sep. 27–Oct. 1, 2015, Melbourne, Australia.

8.     X Huang, JP Cao, XY Zhao, XY Wei. Optimum conditions to produce triacetonamine from fast pyrolysis of sewage sludge. Abstract of papers of the American chemical society. 1155 16TH ST, NW, Washington, DC 20036 USA: AMER CHEMICAL SOC, 2015, 249.

9.     X Huang, JP Cao, JX Wang, XY Zhao, XY Wei. Effects of temperature and catalysts on bio-oil composition during fast pyrolysis of sewage sludge. The 13th Japan-China Symposium on Coal and C1 Chemistry, Aug. 31- Sep. 3, 2015, Dunhuang, China. Oral presentation.

 

 [English version]

Xin Huang, PhD, lecturer

Academic Qualifications

·           Ph.D., Applied   Science for Electronics and Materials, Kyushu   University, Fukuoka, Japan,

2019

·           M.E., Chemical   Engineering, China University of Mining and Technology, Xuzhou, China

2016

·           B.E., Chemical   Engineering, China University of Mining and Technology, Xuzhou, China

2013

Research Interests

·         Advanced bioenergy production technologies

        Catalytic pyrolysis of low grade resources

        Characterisation of bio-oil produced from biomass pyrolysis

        Production of syngas from biomass gasification

·         Green conversion of biomass to chemicals

        Separation of lignocellulosic biomass into dissolved sugars, cellulose and lignin

        Selective conversion of cellulose to levoglucosenone, 5-hydroxymethylfurfural, liquid fuels, etc.

        Depolymerization of Lignin to aromatic monomers

·         Heterogeneous catalysis in sustainability

        Hydrodeoxygenation of biomass-derived compounds

        Development of solid acid catalyst, such as zeolite, Amberlyst

Awards and Scholarships

·           Postgraduate Study Abroad Program of National   Construction on High-level Universities funded by China Scholarship Council

2016

·           Excellent Master’s Thesis in China University   of Mining and Technology

2016

·           National Scholarship for Graduate Student

·           Model Student of Academic Records

·           The First Prize Scholarship

2015

2015

2014

 

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