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副教授

孙艳

  • 职称:副研究员,硕导
  • 出生年月:
  • 专业:物理化学
  • Email:sunyan2011@tju.edu.cn
  • 课题组网址:
​研究方向

研究方向: 吸附科学和清洁能源技术领域的应用基础研究

研究内容: 超临界温度条件下气体吸附理论研究,纳米吸附材料的制备和功能研究,洁净气体燃料的存储,气体的分离与纯化

学习和工作经历

2011.7-今 天津大学理学院,教师

2001.5-2011.7 天津大学化工学院,教师

2004.3-2007.6 天津大学化工学院,获博士学位

1998.9-2001.3 天津大学理学院,获硕士学位

1994.9-1998.6 天津师范大学,获学士学位

负责的项目

◆“纳米空间内烟气深度脱硫脱硝研究”,天津市自然科学基金重点项目(10JCZDJC23900),2010.4-2013.3,经费20万元。

◆“吸附法脱除天然气中重烃”,大连欧科膜技术工程有限公司,2011-2012,经费8万元。

◆负责完成“硝苯地平杂质”等 5项横向课题,共计42.5万元。

参加的项目

1.“氧化铁/一氧化碳循环分解水制氢基础研究”,(国家自然科学基金面上项目21076142,2011.1-2013.12)

2.吸附剂纳米孔结构及表面性质对甲烷水合物生成及存储增强作用研究 (国家自然科学基金50376047,

2004.1-2006.12)

3.微量硫化氢在涂层吸附剂表面上的吸/脱平衡研究(国家自然科学基金20273046, 2003.1-2003.12)

4.新型气体吸附材料和吸附过程基础研究 (国家自然科学基金重点项目20336020, 2004.1-2008.12)

5.以天然气净化存储为目标的有序介孔硅基材料的合成、修饰及功能研究(国家自然科学基金90510013,

2006.1-2008.12)

6.反应/吸附法深度脱除燃油中噻吩和苯并噻吩类硫化物(2国家自然科学基金0776099, 2008.1-2010.12)

7.利用二氧化碳置换的变压吸附富集煤层气甲烷(国家自然科学基金91010005,2010.1-2010.12)

8.超级活性炭吸附储放氢的基础研究 (973项目TG2000026404, 2000-2005)

9.吸收、吸附和膜分离CO2的基础研究(973项目2006CB705807-4, 2006-2010)

10.以CO2/CH4分离为目标的新型吸附剂研究 (天津市自然科学基金07JCYBJC00800,2007-2010)

荣誉奖励

1. 周理,周亚平,孙艳,苏伟,白书培,李明,冯奎,陈平. 超临界温度吸附理论和氢气与天然气存储基础研究. 2008年天津市自然科学奖一等奖。

2. 周理,周亚平,孙艳. 超临界气体的吸附及代油燃料工程基础研究. 2003年教育部提名国家科学技术奖自然科学奖2等奖。

著作:

孙艳,苏伟,周理. 《氢燃料》,化学工业出版社,2005年, ISBN:7-5025-6511-6/TK 20

专利:

1. 周理,孙艳,周亚平. 水增强活性炭储存低碳烃(如天然气、煤层气)方法,ZL01141967

2. 周理,刘聪敏,周亚平,孙艳,苏伟. 含二氧化碳置换的变压吸附浓缩煤层气甲烷方法,200910068582.6

代表性论文:

1.Sun Y, Liu CM, Su W, Zhou YP, Zhou L. Principles of methane adsorption and natural gas storage. Adsorption Journal

of the International Adsorption Society,2009, 15(2):133-137.

2.Sun Y, Xue QM, Zhou YP, Zhou L. Sorption equilibria of CO2/CH4 mixture on activated carbon in presence of

water. J. Colloid Interface Sci., 2008,322(1):22-26.

3.Sun Y, Wang YX, Zhang Y, Zhou YP, Zhou L. CO2 Sorption in activated carbon in the presence of water.

Chem. Phys. Lett., 2007, 437 (1-3):14-16.

4.Sun Y, Liu XW, Su W, Zhou YP, Zhou L. Studies on ordered mesoporous materials for potential environmental

and clean energy. Appl. Surf. Sci., 2007, 253(1-3):5650-5655.

5.Sun Y, Zhou L, Su W, Zhou YP. Impact of supercritical adsorption mechanism on research of hydrogen carrier.

Chin. Sci. Bull., 2007, 52(8):1146-1152.

6.Sun Y, Wang X Y, Zhu J, Su W. (R)-Methyl 2-(2-chlorophenyl)-2-(phenylsulfonyloxy)acetate, Acta Crystallogr.

Sect. E:Struct. Rep. Online, 2007, 63(Part5): O2378-O2379.

7.Sun Y , Zhou YP, Zhou L, Gao XP, Yuan HT. Storage of hydrogen-methane mixture in the complex sorbent of

activated carbon-TiMn1.5 alloy. Chem. Phys. Lett., 2002, 357( 3-4): 287-292.

8.孙艳,周理. 气体在多孔材料中的储存. 油气储运, 2009, 28(2):16-19.

9.孙艳,刘聪敏,苏伟,周亚平,周理. 水存在条件下CO2在多壁碳纳米管上的吸入平衡研究. 离子

交换与吸附,2008,24(6):551-556.

10.孙艳,刘聪敏,苏伟,周亚平,周理. 活性炭上天然气湿储方法研究. 天然气化工, 2008,33(1):37-42.

11.孙艳,刘聪敏,苏伟,周亚平,周理. 天然气在炭材料上湿储研究进展. 炭素技术,2007,26(153):31-34.

12.Zhou L, Sun Y, Zhou YP. Storage of hydrogen on carbon materials: Experiments and analyses. Chem. Eng. Commun.,

2006, 193 (5): 564-579.

13.Zhou L, Sun Y, Su W, et al. Natural gas storage in wet active carbons - A report on research progress. Chin.

J. Chem. Eng., 2005,13 (6): 824-829.

14.Zhou L, Sun Y, Yang ZG, et al. Hydrogen and methane sorption in dry and water-loaded multiwall carbon nanotubes.

J. Colloid Interface Sci., 2005, 289 (2): 347-351.

15.Zhou L, Sun Y, Su W. Studies on the chemical principle and capacity of carbon nanotubes as energy storage materials.

Prog. Chem., 2005, 17 (4): 660-665.

16.Zhou L, Sun Y, Zhou YP. Enhancement of the methane storage on activated carbon by pre-adsorbed Water. AICHE J.,

2002, 48 (10): 2412-2416.

17.Zhou L, Sun Y, Zhou YP. An Experimental study on the adsorption behavior of gases crossing the critical temperature.

Chin. J. Chem. Eng., 2002, 10(3):259-262.

18.Zhou L, Liu XW, Sun Y, Li JW, Zhou YP, Methane sorption in ordered mesoporous silica SBA-15 in the presence of

water. J Phys Chem B, 2005, 109(48):22710-22714.

19.Zhou L, Li M, Sun Y, Zhou YP. Effect of moisture in microporous activated carbon on the adsorption of methane.

Carbon, 2001, 39, 773-776.

20.Zhou L Zhou YP, Sun Y, Studies on the mechanism and capacity of hydrogen uptake by physisorption-based materials.

Int. J. Hydrogen Energy, 2006,31(2):259-264.

21.Zhou L, Zhou YP, Sun Y, A comparative study of hydrogen adsorption on superactivated carbon versus carbon nanotubes

. Int. J. Hydrogen Energy, 2004, 29 (5):475-479.

22.Zhou L, Zhou YP, Sun Y, Enhanced storage of hydrogen at the temperature of liquid nitrogen. Int. J. Hydrogen Energy,

2004, 29(3):319-322.

23.Zhou YP, Feng K, Sun Y, Zhou L,Adsorption of hydrogen on multiwalled carbon nanotubes at 77 K. Chem. Phys.

Lett. 2003, 380(5-6): 526-529

24.Zhou L, Liu XW, Sun Y, et al, Methane sorption in ordered mesoporous silica SBA-15 in the presence of water.

J. Phys. Chem. B, 2005,109(48): 22710-22714.

25.Wu JQ, Zhou L , Sun Y, et al, Measurement and prediction of adsorption equilibrium for a H2/N2/CH4/CO2 mixture.

AICHE J., 2007,53(5): 1178-1191.

26.zhou YP, Feng K, Sun Y, Zhou L, A brief review on the study of hydrogen storage in terms of carbon nanotubes.

Prog. Chem.(Chinese), 2003,15 (5):345-350.

27.Liu CM, Zhou YP, Sun Y, et al. Enrichment of coal-bed methane by PSA complemented with CO2 displacement.

AICHE J.,2011,57(3):645-654.

28.Zhou L, Liu J, Su W, Sun Y, Zhou YP, Progress in studies of natural gas storage with wet adsorbents. Energy &

Fuels, 2010, 24:3789-3795.

29.Wang SQ, Zhou L, Su W, Sun Y, Zhou YP , Deep desulfurization of transportation fuels by characteristic reaction

resided in adsorbents. AICHE J., 2009 , 55( 7 ): 1872-1881

30.Liu XW, Zhou L, Fu X, Sun Y, Su W, Zhou YP, Adsorption and regeneration study of the mesoporous adsorbent

SBA-15 adapted to the capture/separation of CO2 and CH4. Chem. Eng. Sci., 2007, 62(4): 1101-1110

31.Liu XW, Zhou L, Chang H, Sun Y, Zhou YP, Methane sorption on large-pore MCM-41 in the presence of water.

J. Porous Media, 2006, 9(8): 769-777

32.Zhou L, Liu XW, Li JW, Sun Y, Zhou YP. Sorption/desorption equilibrium of methane in silica gel with pre-adsorption

of water. Collodis Surf. A, 2006, 273(1-3): 117-120


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