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常州大学导师教师师资介绍简介-孙运兰导师简介

/2021-04-03


姓名 孙运兰
性别 女
职称 教授/博导
专业 能源与动力工程
单位 石油工程学院
政治面貌
九三学社
所属学位点研究方向
动力工程及工程热物理
1、燃烧污染物减排与控制;
2、高能燃料燃烧特性与机理;
3、固体废弃物综合利用。
联系方式
教书育人:
ylsun@cczu.edu.cn
入选江苏省“六大人才高峰”、安徽省学术技术带头人、省高校优秀支持计划,省级资源共享课程《工程热力学》主讲教师,荣获省级教学成果三等奖,省多媒体教学课件比赛二等奖。
近年来,主持省级质量工程 2 项,省级重大教学研究项目 1 项,一般项目 1 项,发表教学研
究论文 9 篇。
指导中国大学生创业计划竞赛获国家级银奖 1 次,安徽省金奖 1 次,全国节能减排大赛三等
奖 2 次,“互联网+”大学生创新创业大赛二等奖 1 次,指导国家级大学生创新创业项目 6
项。主讲本科课程:《工程燃烧学》、《工程热力学》、《能源与动力工程专业英语》等;研究生课程:《研究生专业英语》、《纳米微米尺度传热》等。
累计指导研究生 30 余人,毕业 19 人,考取 985 等院校博士 8 人。
科研成果:
近年来,主持国家自然科学基金项目 4 项、省自然科学基金项目 1 项,省教育厅基金项目 1
项,高校优秀青年人才支持计划重点项目 1 项,省学术技术带头人及后备人选科研活动经费资助
项目 1 项,产学研结合项目多项,主研参与国家安全重大基础研究项目 973 子课题项目、国家科技部国家重点研发计划、武器装备预研基金等各类项目多项。发表学术期刊论文 80 余篇,被 SCI收录 52
篇,申请各类专利 50 余件,授权 32 件,其中发明专利授权 13 件。
学术兼职:国家自然科学基金委通讯评议专家;教育部学位中心-学位论文评审专家;科技部重点研发计划评审专家;《洁净煤技术》和《安徽工业大学学报》自然科学版编委;《Combustion &
Flame》、《Energy & Fuels》、《Applied Energy》、《Journal of Thermal Analysis and Calorimetry》、
《International Journal of Hydrogen Energy》、《Journal of Energetic Material》、《New Journal of
Chemistry》、《中国电机工程学报》等国内外期刊审稿人。
一、 科学研究项目
1. 主持国家自然科学基金面上项目(No: 52076016).
2. 主持国家自然科学基金面上项目(No: 51676001)
3. 主持国家自然科学基金面上项目(No: 51376007)
4. 主持国家自然科学基金青年项目(No:50806001)
5. 主持江苏省“六大人才高峰”高层次人才选拔培养资助项目(No:JNHB-097)
6. 主持安徽省自然科学基金项目(No: 1208085ME70)
7. 主持安徽省教育研究基金项目(No:KJ2008B184)
8. 主持安徽中烟工业公司科技计划项目。
9. 主持 2016 年高校优秀青年人才支持计划重点项目 (No:gxyqZD2016074)
10. 主持 2017 年安徽省学术技术带头人及后备人选科研活动经费资助项目(No:2017H131)。
11. 主研国家科技部国家重点研发计划项目(No:2016YFB0601500)子课题。
12. 主研国家自然科学基金项目(No:51306001)
13. 主研国家自然科学基金项目(No:51206001)
14. 主研安徽省自然科学基金项目(No:1608085ME104)
15. 主研武器装备预研基金(国防重点实验室基金)项目(No:9140C3503150706)
16. 主研国家安全重大基础研究项目 973 子课题项目(No:51337-02-03-02)
17. 主研国家自然科学基金项目(No:50476025)
18. 主研国家自然科学基金项目(No:50176047)
二、学术期刊论文
1. Adsorption mechanism of NH3, NO, and O2 molecules over FexOy/AC catalyst surface: a DFT-D3
study. New Journal of Chemistry 2021.
2. Effects of alkali metal poisoning and cobalt modification on the NH3 adsorption
behavior on the MnxOy/Ni (111) surface: A DFT-D study. Applied Surface Science Vol.509, 144901,
2020.
3. Effects of Mn, Fe, and Ce doping on the adsorption property of gas molecules and oxidation
of SO2 on the NiO (100) surface. Computational Materials Science, Vol.180, 109717, 2020.
4. Density functional theory study on the reaction mechanism of selective catalytic reduction
of NO by NH3 over the γ-Fe2O3 (001) surface. Computational and Theoretical Chemistry Vol.1192,
113052, 2020.
5. Adsorption properties of NH3, NO, and O2 molecules over the FeO (100) and oxygen-defected
FeO
(100) surfaces: a density functional theory study. Molecular Physics, e1836413, 2020.
6. Heterogeneous condensation for electric arc furnaces fine particles removal. Powder
Technology, Vol.374, 323-329, 2020.
7. Heavy metal poisoning resistance of a Co-modified 3Mn10Fe/Ni low-temperature SCR
deNOx catalyst. Environmental Science and Pollution Research. Vol.24, No.31, 24584–24592, 2020.
8. Reaction characteristics of micron-sized Al powder with adding Al/CuO nano-thermite
in heated steam. Energy Sources, Part A: Recovery, Utilization, and Environmental Effects. 2020.
9. Potassium fluoride improving the ignition and combustion performance of micron-sized
aluminum particles in high temperature water vapor, Energy Sources Part A-Recovery
Utilization and Environmental Effects, 2019.
10. Promoting Eciency of Na2CO3 on the Hydrogen Production of Micrometer-Aluminum/Water
Reaction, Journal of Chemical Engineering of Japan, Vol. 52, No. 6, 586–592, 2019.
11. Enhancing ignition and combustion characteristics of micron-sized aluminum powder in steam by
adding sodium fluoride, Combustion and Flame, Vol.205, 68-79, 2019.
12. Enhancing low-temperature SCR denitrification and alkali metal poisoning
resistance of 3Mn10Fe/Ni catalyst by adding Co. Catalysis Science & Technology, Vol.9,
No.12, 3214–3225, 2019.
13. Effects of Ammonium Perchlorate Particle Size on the Aluminum Agglomeration in
Primary
Combustion of the Ammonium Perchlorate/Aluminum Binary Mixture with a High Aluminum
Content, Energy & Fuels, Vol.33, No.9, 9302-9308, 2019.
14. Ignition and Combustion Characteristics of Heptane-Based Nanofluid Fuel Droplets,
Energy & Fuels, Vol.33, No.10, 10282?10289, 2019.
15. Adsorption mechanism of NH3, NO, and O2 molecules over MnxOy/Ni (111) surface: a
density functional theory study, Journal of Materials Science. Vol. 54, No. 23, 14414-14430, 2019.
16. Investigation of low-temperature selective catalytic reduction of NOx with
ammonia over Cr-promoted Fe/AC catalysts, Environmental Science and Pollution Research,
Vol.23, No.32, 33067–33075, 2019.
17. Novel Natural Manganese Ore NH3-SCR Catalyst with Superior Alkaline Resistance Performance at
the Low Temperature, Canadian Journal of Chemical Engineering. Vol. 97, 911-916, 2019.
18. Promotional effect of Mn modification on DeNOx performanceof Fe/nickel foam catalyst
at low temperature. Environmental Science and Pollution Research. Vol.26, No.10, 10117-10126,
2019.
19. Mechanistic insight into the selective catalytic reduction of NO by NH3 over
α?Fe2O3 (001): A density?functional theory study, Catalysis Science & Technology. Vol. 9, No. 1,
116-124, 2019.
20. Effects of Carbon Dioxide and Water Vapor Addition on Benzene and PAH Formation in a Laminar
Premixed CH4/O2/Ar Flame. Combustion Science and Technology, Vol.191, No.10, 1866-1897,
2019.
21. Thermal Reaction Characteristics of Nano/micron-sized Aluminum mixtures in Carbon Dioxide,
Russian Journal of Physical Chemistry B. Vol. 12, No. 3, 438-447, 2018.
22. Effect of Mn addition on the Low-Temperature NH3-SCR of NOx over Fe2O3/Activated
Coke Catalysts: Experiment and Mechanism. Asia-Pacific Journal of Chemical
Engineering,Vol.13, No.5, e2231, 2018.
23. De-NOx performance and mechanism of Mn based low-temperature SCR catalysts
supported on foamed metal nickel. Journal of the Brazilian Chemical Society, Vol. 29, No. 8,
1680-1689, 2018.
24. Combustion characteristics of nano-aluminum cloud in different atmospheres, Industrial
& Engineering Chemistry Research. Vol. 57, No.1, 129-138, 2018.
25. Study of the Alkali–metal Poisoning Resistance of a Co–modified Mn/Ni–Foam Catalyst
in Low–temperature Flue Gas SCR DeNOx, Journal of Materials Science. Vol.53,
No. 13, 9674-9689, 2018.
26. Investigation of Low-Temperature Selective Catalytic Reduction of NOx with Ammonia
over Mn-Modified Fe2O3/AC Catalysts. Journal of the Brazilian Chemical Society, Vol. 29,
No. 1, 79-87, 2018.
27. Adsorption properties of NO, NH3, and O2 over β?MnO2(110) surface,Journal of
Materials Science. Vol.53, No. 16, 11500–11511, 2018.
28. In situ electrodeposition of mesoporous aligned α-Fe2O3 nanoflakes for
highly sensitive nonenzymatic H2O2 sensor. Applied Surface Science. No.31, 302-306, 2018.
29. Hydrogen generation by means of the combustion of aluminum powder/sodium
borohydride in
steam. International Journal of Hydrogen Energy. Vol 42, No. 6, 3804–3812, 2017.
30. Performance study of modified calcium magnesium acetate (MCMA) in the process of
high temperature CO2 capture and the application of spent MCMA for sequential SO2
removal, Asia‐pacific Journal of Chemical Engineering. Vol. 12, No. 4, 595-604, 2017.
31. The effects of different additives on the ignition and combustion characteristics
of micron-sized aluminum powder in steam, Energy & Fuels, Vol.31, No.8, 8674?8684, 2017.
32. The effect of NiCl2 and Na2CO3 on hydrogen production by Al/H2O system. International Journal
of Hydrogen Energy. Vol 42, No. 6, 3586–3592, 2017.
33. The effects of additives on the combustion characteristics of aluminum powder in
steam, RSC Advances, Vol.7, No. 10, 5725–5732, 2017.
34. Natural manganese ore catalyst for low-temperature selective catalytic reduction of NO with
NH3 in coke-oven flue gas. Environmental Science and Pollution Research. Vol.24, No.31,
24584–24592, 2017.
35. Effects of Additives on the Hydrogen Generation of Al–H2O Reaction at Low
Temperature.
International Journal of Energy Research. Vol. 41, No.14, 2020–2033, 2017.
36. Numerical simulation of the combustion of nano-aluminum in carbon dioxide. Acta Astronautica,
Vol. 139, 428-434, 2017.
37. Thermal Reaction Mechanisms of Nano- and Micro-scale Aluminum Powders in Carbon Dioxide at
Low Heating Rate. Journal of Thermal Analysis and Calorimetry. Vol. 124, No. 3,
1727-1734, 2016.
38. Oxidation Kinetics of Nano-aluminum in a Carbon Dioxide Environment, Progress in
Reaction Kinetics and Mechanism, Vol.41, No.1, 14-22, 2016.
39. Thermal Reaction Characterization of Micron-Sized Aluminum Powders in CO2. Russian Journal of
Physical Chemistry B. Vol. 10, No. 4, 644–650, 2016.
三、授权发明专利情况
1. 一种可视化实验用燃料液滴点火测温装置,授权时间: 2021.01.05,中国,专利号: ZL 201810377478.4
2. 一种 Mn-Fe-Al-Si 低温 SCR 催化剂及其制备方法和应用方法,授权时间:2020.05.05,中国,专利号:ZL 201710164763.3
3. 一种泡沫金属镍负载锰基低温 SCR 催化剂及其制备方法,授权时间:2020.05.05,中国,专利号:ZL 201710330563.0
4. 一种金属/水反应制氢收集方法,授权时间:2020.05.05,中国,专利号:ZL 201710701838.7
5. 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 , 2019.11.08, 中国, ZL201810506812.1
6. 一种金属/水反应制氢实验装置及收集方法, 2017.09.15, 中国, ZL201510358861.1
7. 一种高倍率钠离子电池复合正极材料及其制备方法, 2017.07.11, 中国, ZL201410485776.7
8. 一种可拆卸式固体燃料悬浮燃烧实验测试装置及测试方法 , 2016.04.13, 中国,
ZL201510089962.3
9. 一种应用于固体燃料燃烧机理研究的可视装置, 2016.08.24, 中国, ZL201410326059.X
10.新型实验用点火测温装置, 2013.12.11, 中国, ZL201110110037.6
11.一种可用于海水淡化的风力发电兼水流发电式浮标,专利号:ZL 201610538304.2,授权时间 2019.10.01
12.一种基于路灯主体进行水循环净化空气和水培植物方法,授权时间:2020.05.05,专利号:ZL 201711177789.8
13.一种高倍率橄榄石型磷酸盐纳米薄片正极材料及其制备方法,专利号:ZL 201610264108.0,授权时间:2018.05.18
四、指导研究生获国家奖学金情况
1. 2015 研究生国家奖学金 孙 蓉
2. 2016 研究生国家奖学金 孙 蓉
3. 2017 研究生国家奖学金 王启昌
4. 2018 研究生国家奖学金 尹寿来
5. 2019 研究生国家奖学金 石 伟
五、指导研究生深造读博情况
1. 美国普渡大学 党洪昌、戈婷婷
2. 东南大学 孙 蓉、王启昌、李国波
3. 南京航空航天大学 李 凡
4. 南京理工大学 陈九玉、石伟
5. 上海交通大学 方祺隆
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