光催化还原CO2的研究现状和发展前景 - 范文中心

光催化还原CO2的研究现状和发展前景

10/13

0253-9837(2011)10-1565-08

10.3724/SP.J.1088.2011.10509

光催化还原CO2的研究现状和发展前景

吴聪萍

周勇a邹志刚b

南京大学环境材料与再生能源研究中心,江苏南京210093

摘要:综述了光催化还原CO2的研究进展,并重点介绍了本课题组在光催化还原CO2为碳氢燃料方面的研究工作,通过该途径可降低CO2在大气中的排放浓度,还可将CO2转化为烷烃、醇或其它有机物质,从而实现碳材料的再循环使用.最后展望了该研究领域的前景.

光催化;二氧化碳;还原;碳氢化合物

O643

2011-08-26

<收稿日期>=2011-05-09

基金来源:国家重点基础研究发展计划(973计划,2007CB613305,2011CB933300,2011 CB933303);中国科技部-日本科学技术振兴机构国际合作(2009DFA61090);中国国家自然科学基金-日本学术振兴会国际合作(20811140087);国家自然科学基金(50732004,20971048).

Research Progress in Photocatalytic Conversion of CO2 to Hydrocarbons

OU ZhigangWU CongpingZHOU YongZ

1566

    1567

1568

    1569

1570

 @@1.  Singh D, Croiset E, Douglas P L, Douglas M A. Energy 

    Converse Manage, 2003, 44:3073

@@2. Rao A B, Rubin E S. Environ Sci Technol, 2002, 36:4467 @@3.  White C M, Strazisar B R, Granite E J, Hoffman J S,

    Pennline H W. JAir Waste Manage Assoc, 2003, 53:645

@@4. Voormeij D A, Simandl G J. Geosci Canada, 2004, 31:11

 @@5.  Indrakanti V P, Kubicki J D, Schobert H H. Energy Envir 

    Sci, 2009, 2:745

 @@6. Roy S C, Varghese O K, Paulose M, Grimes C A. ACS 

    Nano, 2010, 4:1259

 @@7. Palmisano G, García-López E, MarciG, Loddo V, Yurdakal  

    S, Augugliaro V, Palmisano L. Chem Commun, 2010, 46:

    7074

 @@8. Hoffmann M R, Moss J A, Baum M M. Dalton Trans,

    2011, 40:5151

 @@9. Halmann M. Nature, 1978, 275:115

@@10. Inoue T, Fujishima A, Konishi S, Honda K. Nature, 1979,

    277:637

@@11.  Halmann M, Ulman M, Aurian-Blajeni B. Solar Energy,

     1983, 31:429

@@12. Anpo M, Yamashita H, Ichihashi Y, Fujii Y, Honda M. J 

    Phys Chem B, 1997, 101:2632

@@13. Ikeue K, Yamashita H, Anpo M, Takewaki T. J Phys Chem 

    B, 2001, 105:8350

@@14. Ikeue K, Nozaki S, Ogawa M, Anpo M. Catal Today, 2002,

    74:241

@@15. Yamashita H, Ikeue K, Takewaki T, Anpo M. Top Catal,

    2002, 18:95

@@16. Dimitrijevic N M, Vijayan B K, Poluektov O G, Rajh T,    Gray K A, He H, Zapol P. J Am Chem Soc, 2011,133:3964

@@17. Ishitani O, Inoue H, Suzuki Y, Ibusuki T. J Photochem 

    Photobiol A, 1993, 72:269

@@18. Tseng I H, Wu J C S, Chou H Y. J Catal, 2004, 221:432

@@19. Liu B J, Torimoto T, Matsumoto H, Yoneyama H. J 

    Photochem Photobiol A, 1997, 10g: 187

@@20. Varghese O K, Paulose M, LaTempa T J, Grimes C A.

    Nano Lett, 2009, 9:731

@@21.  Wang C, Thompson R L, Baltrus J, Matranga C. J Phys 

     Chem Lett, 2010, 1:48

@@22. Woolerton T W, Sheard S, Reisner E, Pierce E, Ragsdale S 

     W, Armstrong F A. J Am Chem Soc, 2010, 132:2132@@23.徐用军,周定,姜琳琳,李向久,刘崇微,刘金尧.哈尔    滨工业大学学报(Xu Y J,Zhou D,Jiang L L,Li X J,Liu 

Ch W. Liu J Y. J Harbin Inst Technol), 2000, 32:104

@@24.陈崧哲,钟顺和,肖秀芬.催化学报(Chen S Zh,Zhong Sh H, Xiao X F. Chin J Catal), 2003, 24:67

@@25.赵春,钟顺和.应用化学(Zhao Ch,Zhong Sh H.Chin J 

    Appl Chem), 2005, 22:349

@@26. Liu Y Y, Huang B B, Dai Y, Zhang X Y, Qin X Y, Jiang M 

     H, Whangbo M H. Catal Commun, 2009, 11:210

@@27. Yang C C, Yu Y H, van der Linden B, Wu J C S, Mul G. J 

    Am Chem Soc, 2010, 132:8398

@@28. Zhao Z H, Fan J M, Wang Z Z. J Clean Prod, 2007, 15:

     1894

@@29. Zhao Z H, Fan J M, Xie M M, Wang Z Z. J Clean Prod,

     2009, 17:1025

@@30. Ozcan O, Yukruk F, Akkaya E U, Uner A D. Appl Catal B,

     2007, 71:291

@@31.  Nguyen T V, Wu J C S, Chiou C H. Catal Commun, 2008,

     9:2073

@@32. Cao L, Sahu S, Anilkumar P, Bunker C E, Xu J, Shiral 

     Fernando K A, Wang P, Guliants E A, Tackett K N, Sun Y 

     P. JAm Chem Soc, 2011,133:4754

@@33.  Zou Z, Ye J H, Sayama K, Arakawa H. Nature, 2001, 414:

     625

@@34. Vijayakumar K M, Lichtin N N. J Catal, 1984, 90:173@@35. Matsumoto Y, Obata M, Hombo J. J Phys Chem, 1994, 98:

     2950

@@36. Pan P W, Chen Y W. Catal Commun, 2007, 8:1546@@37. Nguyen T V, Wu J C S. Appl Catal A, 2008, 335:112

@@38. Xi G C, Ouyang S X, Ye J H. Chem Eur J, 2011, 17:9057

@@39. Liu Q, Zhou Y, Kou J H, Chen X Y, Tian Z P, Gao J, Yan S 

     C, Zou Z G. J Am Chem Soc, 2010, 132:14385

@@40. Yan S C, Wan L J, Li Z S, Zou Z G. Chem Commun, 2011,

     47:5632

@@41.  Gao F, Chen X Y, Yin K B, Dong S, Ren Z F, Yuan F, Yu 

     T, Zou Z G, Liu J M. Adv Mater, 2007, 19:2889

@@42. Lü J, Kako T, Li Z S, Zou Z G, Ye J H. J Phys Chem C,

     2010, 114:6157

@@43.  Kou J H, Gao J, Li Z S, Zou Z G. Curr Org Chem, 2010,

     14:728

@@44. Fan X X, Gao J, Wang Y, Li Z S, Zou Z G. J Mater Chem,

     2010, 20:2865

@@45. Lü J, Kako T, Zou Z G, Ye J H. J Mater Res, 2010, 25:159@ @ 4 6 .  0L3ü 21J0,7

 Kako T, Zou Z G, Ye J H. Appl Phys Lett, 2009, 95:

@@47. Kudo A, Hijii S. Chem Lett, 1999: 1103

@@48. Tang J W, Zou Z G, Ye J H. Catal Lett, 2004, 92:53

@@49. Liu Y Y, Huang B B, Dai Y, Zhang X Y, Qin X Y, Jiang M 

     H, Whangbo M H. Catal Commun, 2009, 11:210@@50. Zou X D, Conradsson T, Klingstedt M, Dadaehov M S,

     O'Keeffe M. Nature, 2005, 437:716

@@51. Zhou Y, Zhu H, Chen Z, Chen M, Xu Y, Zhang H, Zhao D.

    Angew Chem, Int Ed, 2001, 40:2166

@@52. Liu G, Zheng S, Yang G. Angew Chem, Int Ed, 2007, 46:

    2827

@@53. Lin Z E, Yang G Y. Eur J Inorg Chem, 2010, 19:2895 and the 

    references therein

@@54. Sato J, Kobayashi H, lkarashi K, Saito N, Nishiyama H, Inoue 

    Y. J Phys Chem B, 2004, 108:4369

@@55. Huang J H, Cui Y J, Wang X C. Environ Sci Technol, 2010,

    44:3500

@@56. Ma B J, Wen F Y, Jiang H F, Yang J H, Ying P L, Li C. Catal 

    Lett, 2010, 134:78

@@57. Xia Y N, Yang P D, Sun Y G, Wu Y Y, Mayers B, Gates B,

    Yin Y D, Kim F, Yan Y Q. Adv Mater, 2003, 15:353

@@58. Kim S S, Park J Y, Kim H S, Na H G, Yang J C, Shim S H,

     Lee C, Park D, Nam D, Cheong H, Kim H W. J Phys D, 2011,

     44:025502

@@59. Li L, Lee P S, Yan C, Zhai T, Fang X, Liao M, Koide Y,

     Bando Y, Golberg D. Adv Mater, 2010, 22:5145

@@60. Su Y, Li S, Xu L, Chen Y Q, Zhou Q T, Peng B, Yin S, Meng 

     X, Liang X M, Feng Y. Nanotechnology, 2006, 17:6007

@@61.  Yan C, Zhang T, Lee P S. Cryst Growth Des, 2008,8:3144@@62. Zhan J H, Bando Y, Hu J Q, Yin L W, Yuan X L, Sekiguchi T,

     Golberg D. Angew Chem, Int Ed, 2006, 45:228

@@63. Yan C, Singh N, Lee P S. Cryst Growth Des, 2009, 9:3697

@@64. Yan C, Lee P S. J Phys Chem C, 2009, 113:14135

@@65.  Li C, Bando Y, Liao M Y, Koide Y, Goiberg D. Appl Phys 

     Lett, 2010, 97:161102

@@66. Yan C, Singh N, Lee P S. Appl Phys Lett, 2010, 96:053108@@67. Tsai M Y, Yu C Y, Wang C C, Perng T P. Cryst Growth Des,

     2008, 8:2264

@@68. Huang J H, Ding K N, Hou Y D, Wang X C, Fu X Z. Chem

     SusChem, 2008, 1:1011

@@69. Huang J H, Wang X C, Hou Y D, Chen X F, Wu L, Fu X Z.

     Environ Sci Technol, 2008, 42:7387

@@70. Song R Q, Xu A W, Yu S H. J Am Chem Soc, 2007, 129:4152

@@71.  Wan Y, Zhao D Y. Chem Rev, 2007, 107:2821

@@72. Yah S C, Ouyang S X, Gao J, Yang M, Feng J Y, Fan X X,     Wan L J, Li Z S, Ye J H, Zhou Y, Zou Z G. Angew Chem, Int 

    Ed, 2010, 49:6400

@@73. Pichon A. Energy materials: A stretch to save the world.    http://www.nature.com/nchina/2010/101103/full/nchina.2010.

     126.html

光催化还原CO2的研究现状和发展前景

作者:作者单位:刊名:英文刊名:年,卷(期):被引用次数:

吴聪萍, 周勇, 邹志刚, WU Congping, ZHOU Yong, ZOU Zhigang南京大学环境材料与再生能源研究中心,江苏南京,210093催化学报

Chinese Journal of Catalysis2011,32(10)2次

1.Singh D;Croiset E;Douglas P L;Douglas M A 查看详情 20032.Rao A B;Rubin E S 查看详情 2002

3.White C M;Strazisar B R;Granite E J;Hoffman J S Pennline H W 查看详情 20034.Voormeij D A;Simandl G J 查看详情 2004

5.Indrakanti V P;Kubicki J D;Schobert H H 查看详情 20096.Roy S C;Varghese O K;Paulose M;Grimes C A 查看详情 2010

7.Palmisano G;García-López E;MarciG;Loddo V Yurdakal S Augugliaro V Palmisano L 查看详情 20108.Hoffmann M R;Moss J A;Baum M M 查看详情 20119.Halmann M 查看详情[外文期刊] 1978

10.Inoue T;Fujishima A;Konishi S;Honda K 查看详情 197911.Halmann M;Ulman M;Aurian-Blajeni B 查看详情 1983

12.Anpo M;Yamashita H;Ichihashi Y;Fujii Y Honda M 查看详情[外文期刊] 199713.Ikeue K;Yamashita H;Anpo M;Takewaki T 查看详情 200114.Ikeue K;Nozaki S;Ogawa M;Anpo M 查看详情[外文期刊] 2002

15.Yamashita H;Ikeue K;Takewaki T;Anpo M Degradation of propanol diluted in water under visible light irradiationusing metal ion-implanted titanium dioxide photocatalysts[外文期刊] 2002(1/3)

16.Dimitrijevic N M;Vijayan B K;Poluektov O G;Rajh T Gray K A He H Zapol P 查看详情 201117.Ishitani O;Inoue H;Suzuki Y;Ibusuki T 查看详情 1993

18.Tseng I H;Wu J C S;Chou H Y Effects of sol-gel procedures on the photocatalysis of Cu/TiO_2 in CO_2photoreduction[外文期刊] 2004(2)

19.Liu B J;Torimoto T;Matsumoto H;Yoneyama H 查看详情[外文期刊] 1997

20.Varghese O K;Paulose M;LaTempa T J;Grimes C A Long vertically aligned titania nanotubes on transparentconducting oxide for highly efficient solar cells[外文期刊] 2009(9)21.Wang C;Thompson R L;Baltrus J;Matranga C 查看详情 2010

22.Woolerton T W;Sheard S;Reisner E;Pierce E Ragsdale S W Armstrong F A 查看详情 201023.徐用军;周定;姜琳琳;李向久,刘崇微,刘金尧 查看详情 200024.陈崧哲;钟顺和;肖秀芬 查看详情 200325.赵春;钟顺和 查看详情 2005

26.Liu Y Y;Huang B B;Dai Y;Zhang X Y Qin X Y Jiang M H Whangbo M H Can superhydrophobic surfaces repel hot water?[外文期刊] 2009(31)

27.Yang C C;Yu Y H;van der Linden B;Wu J C S Mul G 查看详情[外文期刊] 2010

28.Zhao Z H;Fan J M;Wang Z Z Photo-catalytic CO_2 reduction using sol-gel derived titania-supported zinc-phthalocyanine[外文期刊] 2007(18)

29.Zhao Z H;Fan J M;Xie M M;Wang Z Z 查看详情[外文期刊] 200930.Ozcan O;Yukruk F;Akkaya E U;Uner A D 查看详情 2007

31.Nguyen T V;Wu J C S;Chiou C H 查看详情[外文期刊] 2008

32.Cao L;Sahu S;Anilkumar P;Bunker C E Xu J Shiral Fernando K A Wang P Guliants E A Tackett K N Sun Y P 查看详情2011

33.Zou Z;Ye J H;Sayama K;Arakawa H 查看详情 200134.Vijayakumar K M;Lichtin N N 查看详情 198435.Matsumoto Y;Obata M;Hombo J 查看详情 1994

36.Pan P W;Chen Y W Photocatalytic reduction of carbon dioxide on NiO/InTaO4 under visible light irradiation[外文期刊] 2007(10)

37.Nguyen T V;Wu J C S 查看详情[外文期刊] 200838.Xi G C;Ouyang S X;Ye J H 查看详情 2011

39.Liu Q;Zhou Y;Kou J H;Chen X Y Tian Z P Gao J Yan S C Zou Z G 查看详情 201040.Yan S C;Wan L J;Li Z S;Zou Z G 查看详情 2011

41.Gao F;Chen X Y;Yin K B;Dong S Ren Z F Yuan F Yu T Zou Z G Liu J M 查看详情[外文期刊] 200742.Lü J;Kako T;Li Z S;Zou Z G Ye J H 查看详情 201043.Kou J H;Gao J;Li Z S;Zou Z G 查看详情 201044.Fan X X;Gao J;Wang Y;Li Z S Zou Z G 查看详情 201045.Lü J;Kako T;Zou Z G;Ye J H 查看详情 201046.Lü J;Kako T;Zou Z G;Ye J H 查看详情 2009

47.Kudo A;Hijii S Photocatalytic H-2 evolution under visible light irradiation on Zn1-xCuxS solid solution[外文期刊] 1999(4)

48.Tang J W;Zou Z G;Ye J H Photocatalytic decomposition of organic contaminants by Bi_2WO_6 under visible lightirradiation[外文期刊] 2004(1/2)

49.Liu Y Y;Huang B B;Dai Y;Zhang X Y Qin X Y Jiang M H Whangbo M H Can superhydrophobic surfaces repel hot water?[外文期刊] 2009(31)

50.Zou X D;Conradsson T;Klingstedt M;Dadaehov M S O'Keeffe M 查看详情[外文期刊] 2005

51.Zhou Y;Zhu H;Chen Z;Chen M,Xu Y,Zhang H,Zhao D Giant magnetoimpedance in layered FeSiB/Cu/FeSiB films[外文期刊]2001(3)

52.Liu G;Zheng S;Yang G 查看详情[外文期刊] 200753.Lin Z E;Yang G Y 查看详情 2010

54.Sato J;Kobayashi H;lkarashi K;Saito N Nishiyama H Inoue Y 查看详情 200455.Huang J H;Cui Y J;Wang X C 查看详情[外文期刊] 2010

56.Ma B J;Wen F Y;Jiang H F;Yang J H Ying P L Li C 查看详情[外文期刊] 2010

57.Xia Y N;Yang P D;Sun Y G;Wu Y Y Mayers B Gates B Yin Y D Kim F Yan Y Q 查看详情[外文期刊] 200358.Kim S S;Park J Y;Kim H S;Na H G Yang J C Shim S H Lee C Park D Nam D Cheong H Kim H W 查看详情 201159.Li L;Lee P S;Yan C;Zhai T Fang X Liao M Koide Y Bando Y Golberg D 查看详情 2010

60.Su Y;Li S;Xu L;Chen Y Q Zhou Q T Peng B Yin S Meng X Liang X M Feng Y Tungsten-containing MCF silica as activeand recyclable catalysts for liquid-phase oxidation of 1, 3-butanediol to 4-hydroxy-2-butanone[外文期刊] 2006(0)61.Yan C;Zhang T;Lee P S Single crystalline semi-nanotubes of indium germanate[外文期刊] 2008(9)62.Zhan J H;Bando Y;Hu J Q;Yin L W,Yuan X L,Sekiguchi T,Golberg D 查看详情 200663.Yan C;Singh N;Lee P S 查看详情[外文期刊] 200964.Yan C;Lee P S 查看详情[外文期刊] 2009

65.Li C;Bando Y;Liao M Y;Koide Y Goiberg D 查看详情[外文期刊] 2010

66.Yan C;Singh N;Lee P S 查看详情[外文期刊] 2010

67.Tsai M Y;Yu C Y;Wang C C;Perng T P Water-driven formation of luminescent Zn2GeO4 nanorods from Zn-containing Genanoparticles[外文期刊] 2008(7)

68.Huang J H;Ding K N;Hou Y D;Wang X C Fu X Z Selective catalytic reduction of NO with NH3 at low temperatures overiron and manganese oxides supported on mesoporous silica[外文期刊] 2008(3/4)

69.Huang J H;Wang X C;Hou Y D;Chen X F Wu L Fu X Z Selective catalytic reduction of NO with NH3 at low temperaturesover iron and manganese oxides supported on mesoporous silica[外文期刊] 2008(3/4)

70.Song R Q;Xu A W;Yu S H 查看详情 2007

71.Wan Y;Zhao D Y Department of Inorganic and Analytical Chemistry, The Hebrew University of Jerusalem, Jerusalem91904, Israel[外文期刊] 2007(7)

72.Yah S C;Ouyang S X;Gao J;Yang M,Feng J Y,Fan X X,Wan L J,Li Z S,Ye J H,Zhou Y,Zou Z G 查看详情 2010

73.Pichon A Energy materials:A stretch to save the world

1.李娜.张立新.黄云杰.张朝艳.王亚蕾.张嘉 还原氧化石墨烯-TiO2纳米管复合光催化剂的制备及其对CO2的光催化还原性能[期刊论文]-化工环保 2015(2)

2.姚吉.张逸帆.何逸云.王菲.王燕刚 光催化剂还原CO2反应的研究进展和前景[期刊论文]-中国化工贸易 2014(9)

3.熊卓.赵永椿.张军营.郑楚光 Ti基CO2光催化还原及其影响因素研究进展[期刊论文]-化工进展 2013(5)

4.王文珍.张生琦.倪炳华.屈撑囤.黄风林.黄俊.王丽莎 CO2的绿色利用技术研究进展[期刊论文]-化工进展 2013(6)

引用本文格式:吴聪萍.周勇.邹志刚.WU Congping.ZHOU Yong.ZOU Zhigang 光催化还原CO2的研究现状和发展前景[期刊论文]-催化学报 2011(10)


相关内容

  • 甲烷化催化剂及反应机理的研究进展_胡大成
    第11卷第5期 过 程 工 程 学 报 Vol.11 No.5 2011 年10 月 The Chinese Journal of Process Engineering Oct. 2011 甲烷化催化剂及反应机理的研究进展 胡大成 1,2 ...
  • [天然气化工工艺学]复习资料
    <天然气化工工艺学>复习资料 考试时间:11 月 9 日,14:30-16:10 考试 地点:明德楼 B303.B307.A304.A312 考 试题型:名词解释.填空.选择.问答 说明: 1. 本资料根据上课 PPT 及教材归 ...
  • 有机人名反应机理
    人名反应 1.2.3.4.5.6.7.8.9.10.11.12.13.14.15.16.17.18.19.20.21.22.23.24.25.26.27.28.29.30.31.32.33.34.35.36.37.38.39.40.41. ...
  • 我国污染土壤修复技术及产业现状_赵金艳
    台 53 赵金艳,李 莹,李珊珊,张 爽 (北京机电院高技术股份有限公司,北京 100027) 摘 要:分析了我国土壤污染现状.土壤修复技术及产业现状,以及我国土壤修复相关政策及标准.提出目前国内土地污染面积不断扩大,土壤污染日益严重,而与 ...
  • 有关线粒体内酶系统的特点与最新研究及进展
    有关线粒体内酶系统的特点与最新研究进展 一. 线粒体内酶系统的组成与相关功能 1. 外膜 a. 单胺氧化酶 磷脂的合成 单胺氧化酶(monoamine oxidase)缩写MAO ,为催化单胺氧化脱氨反应的酶,也有称为含黄素胺氧化酶的. 单 ...
  • 关于TiO2复合的原理和掺杂的原理
    TiO 2复合 对TiO 2的复合一般可分为半导体复合,表面光敏化和贵金属沉积三种类型.复合作用能实现对TiO 2中光生电子-空穴的分离,同时复合物也增加对可见光的吸收. (1) 半导体复合 将TiO 2与其它能带结构不同的半导体进行复合, ...
  • 21章氧化磷酸化和光合磷酸化
    第21章 氧化磷酸化和光合磷酸化作用 基本要求: 1.熟悉氧化-还原电势的基本概念. 2.掌握呼吸链的结构和有关抑制剂.(重点.难点) 3.掌握氧化磷酸化作用的机制.(重点.难点) 4.掌握光合作用和光合磷酸化作用的机制 .(重点.难点) ...
  • 中国精细化工的现状和发展前景展望
    科技信息○科教前沿○ SCIENCE&TECHNOLOGYINFORMATION2011年第23期 中国精细化工的现状和发展前景展望 李小强1李留刚2关民普2 (1.河南省环境工程评估中心河南郑州450000:2.河南省正大环境科技 ...
  • 高三题型专练题型四 氧化还原反应
    题型四 氧化还原反应 高考真题 1.(2016课标Ⅰ)NaClO 2是一种重要的杀菌消毒剂, 也常用来漂白织物等, 其一种生产工艺如下: 回答下列问题: (1)NaClO2中Cl 的化合价为_______. (2)写出"反应&qu ...