徐俊超
2024-01-12 17:03  



基本信息

:副教授

  务:系主任

所在系室:能源与动力工程

联系方式:junchxu@ahut.edu.cn

通信地址:金沙集团1862cc成色,243002

担任International Journal of Coal Science & Technology青年科学编辑,International Journal of Environmental Research and Public Health客座编辑;CEJ、Powder Technology、Particuology、PSEP、洁净煤燃烧等期刊审稿人中国颗粒学会会员

教育工作背景

2019.4—2022.12  东南大学/奇瑞新能源 博士后

2015.3—2017.12  东南大学,动力工程及工程热物理专业 博士研究生

2012.9—2014.12  东南大学,热能专业 硕士研究生

2008.9—2012.06  安徽工业大学,热能专业 大学本科

研究方向

   燃烧污染物(颗粒物)控制;生物质炭制备及利用;室内空气净化

科研项目

1. 国家自然科学基金青年项目52406121,2025.01-2027.12(主持)

2. 安徽省高校科研计划重点项目2024AH050142,2025.01-2026.12(主持)

3. 安徽省自然科学基金面上项目2308085ME189,2023.04-2026.04(主持)

4. 安徽省高校科研计划重点项目KJ2020A0267,2021.01-2022.12(主持)

5. 冶金过程节能与污染物控制教育厅工程中心开放基金GKF20-4,2021.01-2022.12(主持)

6. 中国博士后科学基金面上项目2019M661688,2019.12-2021.12(主持)

7. 安徽省自然科学基金青年项目1908085QE235,2019.07-2021.06(主持)

8. 安徽工业大学青年基金RD18100238,2018.07-2020.07(主持)

9. 冶金减排与资源综合利用教育部重点实验室开放基金资助项目JKF18-03,2019.01-2020.12. (主持)

10. 能源高效清洁利用湖南省高校重点实验室开放基金资助项目2015NGQ003,2015.01-2016.12. (主持)

11. 国家自然基金面上项目52176148,2022.01-2025.12 (参与)

12. 国家自然基金面上项目51576043,2016.01-2019.12 (参与)

13. 国家重点基础研究计划(973)项目子课题2013CB228504,2013.01-2017.12(参与)

教研项目

1. 省级教改项目“双碳”战略下能源动力类交叉创新型人才培养模式探索(2023jyxm0275)

2. 省级线下课程《热工基础》(2022xxkc010)

3. 校级课程思政示范课程《热工基础》(XJ2021110)

4. 校级教育教学研究一般项目(2019jy28)

代表性论文专著

[1] Xu J, Xie Y, Yao Q, Lv L, Chu H. Advances in sustainable nano-biochar: precursors, synthesis methods and applications[J]. Nanoscale, 2024, 16(32): 15009–15032.

[2] Xu J, Zhang Z, Lv L, Zhang Y, Xie Y, Chu H. Molecular dynamics study of water molecules nucleation for fine particle removal: effects of wettability and aggregation modes and comparison with experiment[J]. Particuology, 2024, 91: 106–117.

[3] Xu J, X. Bao, G. Chen, L. Lv, A novel process for ultra-low emission of flue gas by adding waste heat steam, Separation and Purification Technology. 335 (2024) 126158. https://doi.org/10.1016/j.seppur.2023.126158.

[4] Xu J, Zhang Y, Zhang J, Liu H, Shao Q, Chu H. Progress in the heterogeneous condensation of water vapor for PM2.5 removal[J]. Powder Technology, 2023, 427: 118701.

[5] Lv L, Wu X, Xu J, Zhang J, Qian L. Effects of particle’s surface properties and aggregation modes on water vapor competition in heterogeneous nucleation of water vapor on the particles[J]. Process Safety and Environmental Protection, 2023, 176: 968–976.

[6] Chu H, Liu Y, Xu N, Xu J*. Concentration, sources, influencing factors and hazards of heavy metals in indoor and outdoor dust: a review[J]. Environmental Chemistry Letters, 2023, 21(2): 1203–1230.

[7] Xu J, Liu H, Sun Y, Chu H, Lv L, Zheng Z, Wu Y. Promotion of catalytic performance of mn–ce/biochar catalysts in scr reaction by ultrasonic treatment[J]. Journal of the Energy Institute, 2022, 102: 350–361.

[8] Lv, L., Dai, A., Ye, X., Yin, J., Xu, J., & Zhang, J. Visualization and Numerical Investigations on Heterogeneous Nucleation of Water Vapor on the Surface of SiO2, Fe2O3 and CaSO4 Particles. Aerosol Science and Technology,2022,56(5):461-472.

[9] Zhou X, Sun Y, Zhu B, Chen J, Xu J, Yu H, Xu M. Influencing mechanism of alkali metals on the adsorption property of NH3, NO, O2 and dehydrogenation reaction of NH3 on the β-MnO2 (110) surface: A DFT + U study[J]. Fuel, 2022, 318(14): 123470. IF6.609

[10] Xu J Liu HSun Yet al. Enhancing low-temperature SCR de-NOx Mn-Ce catalyst based on rice husks char by KOH and H3PO4 activation[J]. Journal of Chemical Technology & Biotechnology. 2021.

[11] Lv LZhang JXu Jet al. Effects of Surface Topography of SiO2 Particles on the Heterogeneous Condensation Process Observed by Environmental Scanning Electron Microscopy[J]. Aerosol Science and Technology. 2021,55(8):920-929.  IF2.908

[12] Xu J Zhang JLong H. Direct observation of heterogeneous condensation on micron particles with uniform surface. Powder Technology. 2020376: 199-208.

[13] Xu J Zhang X Sun Y et al. Improvement of low-temperature NH3-SCR catalytic activity over Mn-Ce oxide catalysts supported on sewage sludge char activated with KOH and H3PO4[J]. Korean Journal of Chemical Engineering 202037(12):2152-2160.

[14]Xu J Zhao HSun Yet al. Heterogeneous condensation for electric arc furnaces fine particles removal[J]. Powder Technology. 2020374: 323-329.

[15] Lv LZhang JXu Jet al. Heterogeneous Condensation Process Observed by Environmental Scanning Electron Microscopy (ESEM): On Smooth Single Aerosol Particle. Aerosol Science and Technology. 2020,54(12):1515-1526.

[16] Xu JLv LZhang JXu J. Microscopic visualization of heterogeneous nucleation process on smooth spherical particle: Method and results[J]. Chemical Engineering Science. 2020213: 115411. (SCI二区top) IF4.311

[17]. Zhu BZi ZSun YFang QXu J et al. Enhancing low-temperature SCR de-NO x and alkali metal poisoning resistance of a 3Mn10Fe/Ni catalyst by adding Co. Catalysis Science & Technology 20199 (12) 3214-3225.

[18] Yu YXu J Zhang Jet al. Study on Effects of Different Carrier Gases on Characteristics of the Supersaturated Environment in the One-/Multi-section Growth Tube[J]. Energy & Fuels 201832(4).

[19] Xu J Yu YZhang Jet al. Effects of chemical composition and carbon residue on removal of coal-fired particles by vapor condensation[J]. Powder Technology. 2018336: 332-338.

[20] Xu J Yu YYin Yet al. Heterogeneous condensation coupled with partial gas circulation for fine particles abatement[J]. Chemical Engineering Journal. 2017330: 979-986.

[21] Xu J Yu YZhang Jet al. Heterogeneous condensation of water vapor on particles at high concentration[J]. Powder Technology. 2017305: 71-77.

[22] Xu JYu YZhang J. Heterogeneous Condensation on Fine Particles of Water Vapor in a Moderated Growth Tube[J]. Energy Procedia. 2017118: 201-209.

[23] Xu JZhang JYu Yet al. Characteristics of vapor condensation on coal-fired fine particles[J]. Energy & Fuels. 201630(3): 1822-1828.


专利及软件著作权

[1]. 一种纳米生物质炭和酸水解下种子诱导合成纳米生物质炭的方法.202310475185.0(授权)

[2]. 一种水基管道过滤器及室内空气净化方法. 2021106551794(授权)

[3]. 一种室内空气过滤系统202110655259X(授权)

[4]. 一种疏水性生物质炭低温SCR催化剂的制备方法.201910966050.8(授权)

[5]. 一种研究蒸气在细颗粒表面核化特性的实验方法. 202010341254.5(授权)

[6]. 一种水汽相变耦合低低温电除尘脱除细颗粒的系统和方法. 发明专利, ZL201810506812.1.(授权)

[7]. 一种基于水汽相变耦合电聚并的除尘预处理装置和方法.发明专利, ZL201610248972.1.(授权

[8]. 一种回流混合促进水汽凝结脱除烟气细颗粒的装置及方法.发明专利, ZL201510657008.X. (授权)

荣誉奖励

1.安徽省教学成果二等奖2023

2.安徽省大学生生态环境创新创业大赛一等奖指导老师,2023

3.工业炉窑烟气多污染超净排放关键技术及应用,上海市科技进步二等奖,2022

4.安徽省教学成果三等奖2022

5.安徽省教学成果三等奖2021

6.安徽工业大学校级教坛新秀2021

7.全国大学生节能减排社会实践与科技竞赛国家一等奖指导老师2020

8.“挑战杯”全国大学生创业计划竞赛安徽省赛银奖指导老师2020

9.博士研究生国家奖学金2017



 

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