中文
Announcement
More
Progress in Chemistry 2009, Vol. 21 Issue (10): 2028-2036 Previous Articles   Next Articles

• Review •

Laccase-Catalyzed Oxidation of Organic Pollutants in Water

Li Yang; Jiang Guoxiang; Niu Junfeng**; Wang Ying; Hu Lijuan   

  1. (The State Key Laboratory of Water Environment Simulation, School of Environment, Beijing Normal University, Beijing 100875, China )
  • Received: Revised: Online: Published:
  • Contact: Niu Junfeng E-mail:junfengn@bnu.edu.cn
PDF ( 2957 ) Cited
Export

EndNote

Ris

BibTeX

Laccases are multi-coper proteins belonging to the small group of named blue enzymes. Laccase is a phenol oxidase that catalyzes oxidation of many organic pollutants. Laccase-catalyzed oxidation of organic pollutants in water have received much attention from researchers in recent years because of its substantial advantages such as low substrate specificity, low energy consumption, simpleness and environmentally friendly. In this paper, the latest developments in laccase-catalyzed degradation of organic pollutants in water were reviewed. The chemical composition, structure, catalytic degradation mechanism, immobilization, influence factors (pH values, temperature, metal ions, nutritional elements, organic solvents, concentration of laccase, initial concentration of substrate, etc.), degradation kinetics and application to treat organic pollutants in water are reviewed. Laccase uses molecular oxygen to oxidize various aromatic and non-aromatic compounds by a radical-catalyzed reaction mechanism with the concomitant reduction of oxygen to water. The main problems and the prospect of the application of laccase for organic wastewater treatment were presented.

Contents
1 Introduction
2 Structure and catalytic oxidation mechanisms of laccases
2.1 Chemical composition and structure of laccases
2.2 Catalytic oxidation mechanisms of laccases
3 Immobilization
3.1 Adsorption method
3.2 Entrapped method
3.3 Ionic exchanging method
3.4 Covalent method
3.5 Cross-linking method
4 Influence factors
4.1 pH values
4.2 Temperature
4.3 Metal ions
4.4 Other factors
5 Degradation kinetics
6 Application to treat organic pollutants in water
6.1 Degradation of organic pollutants by laccases
6.2 Laccase biosensors
6.3 Degradation of organic pollutants by laccase-sonic combination technology
7 Conclusion

CLC Number: 

[ 1 ]  Yoshida H. J . Chem. Soc. , 1883 , 43 : 472 —486
[ 2 ]  Bertrand G C R. Acad. Sci . Paris , 1985 , 120 : 266 —269
[ 3 ]  Tezuka K, Hayashi M, Ishikara H , et al . Biochem. Mol . Biol .Int . , 1993 , 29 : 395 —402
[ 4 ]  Soden DM, O’callaghan J , Dobson A D. Microbiology , 2002 , 148 :4003 —4014
[ 5 ]  Hood E E. Enzyme Microb. Technol . , 2002 , 30 : 279 —283
[ 6 ]  Wan Y Y, Du Y M, Tetsuo M. Chin. Chem. Lett . , 2008 , 19 :333 —336
[ 7 ]  Givaudan A , Effosse A , Faure D , et al . FEMS Microbiol . Lett . ,1993 , 108 : 205 —210
[ 8 ]  Alexandre G, Zhulin I B. Trends Biotechnol . , 2000 , 18 : 41 —42
[ 9 ]  Kramer KJ , Kanost M R , Hopkins TL , et al . Tetrahedron , 2001 ,57 : 385 —392
[10 ]  Ikehata K, Buchanan I D , Smith D W. J . Environ. Eng. Sci . ,2004 , 3 : 1 —19
[11 ]  Mayer A M, Staples R C. Phytochemistry , 2002 , 60 : 551 —565
[12 ]  Dodor D E , Hwang H M, Ekunwe S I N , et al . Enzyme Microb.Technol . , 2004 , 35 : 210 —217
[13 ]  Hu X K, Zhao X H , Hwang HM. Chemosphere , 2007 , 66 : 1618 —1626
[14 ]  Canas A I , Alcalde M, Plou F , et al . Environ. Sci . Technol . ,2007 , 41 : 2964 —2971
[15 ]  Koschorreck K, Richter S M, Swierczek A , et al . Arch. Biochem.Biophys. , 2008 , 474 : 213 —219
[16 ]  Keum Y S , Li Q X. Chemosphere , 2004 , 56 : 23 —30
[17 ]  Takagi S , Shirota C , Sakaguchi K, et al . Chemosphere , 2007 , 67 :S54 —S57
[18 ]  Maruyama T, Komatsu C , Michi J , et al . Biotechnol . Prog. , 2006 ,22 : 426 —430
[19 ]  Bialk H M, Hedman C , Castillo A , et al . Environ. Sci . Technol . ,2007 , 41 : 3593 —3600
[20 ]  Jolivalt C , Brenon S , Caminade E , et al . J . Membr. Sci . , 2000 ,180 : 103 —113
[21 ]  Torres E , Bustos-Jaimes I , Borgne S L , et al . Appl . Catal . B-Environ. , 2003 , 46 : 1 —15
[22 ]  Hirai H , Nakanishi S , Nishida T. Chemosphere , 2004 , 55 : 641 —645
[23 ]  Maruyama T, Komatsu C , Michizoe J , et al . Process Biochem. ,2007 , 42 : 459 —461
[24 ]  Osma J F , Saravia V , Herrea J L T, et al . Chemosphere , 2007 , 67 :1677 —1680
[25 ]  Zhu Y, Kaskel S , Shi J , et al . Chem. Mater. , 2007 , 19 : 6408 —6413
[26 ]  Wang X K, Yao Z Y, Wang J G, et al . Ultrason. Sonochem. ,2008 , 15 : 43 —48
[27 ]  Niladevi K N , Jacob N , Prema P. Process Biochem. , 2008 , 43 :654 —660
[28 ]  Claus H. Micron. , 2004 , 35 : 93 —96
[29 ]  Mougin C , Jolivalt C , Briozzo P , et al . Environ. Chem. Lett . ,2003 , 1 : 145 —148
[30 ]  Svobodova K, Senholdt M, Novotny C , et al . Process Biochem. ,2007 , 42 : 1279 —1284
[31 ]  Matera I , Gullotto A , Tilli S , et al . Inorg. Chim. Acta , 2008 ,361 : 4129 —4137
[32 ]  Palmieri G, Cennamo G, Faraco V , et al . Enzyme Microb.Technol . , 2003 , 33 : 220 —230
[33 ]  Duran N , Rosa M A , D’Annibale A , et al . Enzyme Microb.Technol . , 2002 , 31 : 907 —931
[34 ]  Zoppellaro G, Sakurai T, Huang H. J . Biochem. , 2001 , 129 :949 —953
[35 ]  Torres J , Svistunenko D , Karlsson B , et al . J . Am. Chem. Soc. ,2002 , 124 : 963 —967
[36 ]  Pozdnyakova N N , Rodakiewicz-Nowak J , Turkovskaya O V , et al .Enzyme Microb. Technol . , 2006 , 39 : 1242 —1249
[37 ]  Matijosyte I , Arends I W C E , Sheldon R A , et al . Inorg. Chim.Acta , 2008 , 361 : 1202 —1206
[38 ]  Paice M G, Bourbonnais R , Reid I D , et al . J . Pulp Pap. Sci . ,1995 , 21 : 280 —284
[39 ]  Surma-Slusarska B , Leks-Stepien J . J . Wood Chem. Technol . ,2001 , 21 : 361 —370
[40 ]  Susla M, Novotny C , Svobodova K. Bioresour. Technol . , 2007 ,98 : 2109 —2115
[41 ]  Silva C , Silva C J , Zille A , et al . Enzyme Microb. Technol . ,2007 , 41 : 867 —875
[42 ]  Mazur M, Krysinski P , Michota-Kaminska A , et al .Bioelectrochemistry , 2007 , 71 : 15 —22
[43 ]  Rasera K, Ferla J , Dillon A J P , et al . Desalination , 2009 , 245 :657 —661
[44 ]  Aburto J , Ayala M, Bustos-Jaimes I , et al . Micropor. Mesopor.Mater. , 2005 , 83 : 193 —200
[45 ]  Kunamneni A , Ghazi I , Camarero S , et al . Process Biochem. ,2008 , 43 : 169 —178
[46 ]  Rekuc A , Jastrzembska B , Liesiene J , et al . Process Biochem. ,2009 , 57 : 216 —223
[47 ]  Wang Y, Zhao M, Zheng X H. J . Biotechnol . , 2008 , 136S:S356 —S401
[48 ]  Milstein O , Nicklas B , Huettermann A. Appl . Microbiol .Biotechnol . , 1989 , 31 : 70 —74
[49 ]  Susla M, Novotny C , Svobodova K. Bioresour. Technol . , 2007 ,98 : 2109 —2115
[50 ]  Wang P , Fan X R , Cui L , et al . J . Environ. Sci . , 2008 , 20 :1519 —1522
[51 ]  Rochefort D , Kouisni L , Gendron K. J . Electroanal . Chem. , 2008 ,617 : 53 —63
[52 ]  Osiadacz J , Al-Adhami  A J H , Bajraszewska D , et al . J .Biotechnol . , 1999 , 72 : 141 —149
[53 ]  Marquez L D S , Cabral B V , Freitas F F , et al . J . Mol . Catal . B :Enzym. , 2008 , 51 : 86 —92
[54 ]  Rekuc A , Kruczkiewicz P , Jastrzembska B , et al . Int . J . Biol .Macromol . , 2009 , 57 : 216 —223
[55 ]  Peralta-Zamora P , Pereira C M, Tiburtius E R L , et al . Appl .Catal . B-Environ. , 2003 , 42 : 131 —144
[56 ]  Wan Y Y, Du YM, Shi XW, et al . Process Biochem. , 2006 , 41 :1378 —1382
[57 ]  Kunamneni A , Ghazi I , Camarero S , et al . Process Biochem. ,2008 , 43 : 169 —178
[58 ]  Dodor D E , Hwang H M, Ekunwe S I N , et al . Enzyme Microb.Technol . , 2004 , 35 : 210 —217
[59 ]  Couto S R , Osma J F , Saravia V , et al . Appl . Catal . A-Gen. ,2007 , 329 : 156 —160
[60 ]  Bryjak J , Kruczkiewicz P , Rekuc A , et al . Biochem. Eng. J . ,2007 , 35 : 325 —332
[61 ]  D’Annibale A , Stazi S R , Vinciguerra V , et al . J . Biotechnol . ,2007 , 77 : 265 —273
[62 ]  Arica M Y, Altintas B , Bayramoˇglu G. Bioresour. Technol . , 2009 ,100 : 665 —669
[63 ]  Jiang D S , Long S Y, Huang J , et al . Biochem. Eng. J . , 2005 ,25 : 15 —23
[64 ]  Bryjak J , Kruczkiewicz P , Rekuc A , et al . Biochem. Eng. J . ,2007 , 35 : 325 —332
[65 ]  Rekuc A , Bryjak J , Szymanska K, et al . Process Biochem. , 2009 ,44 : 191 —198
[66 ]  Osiadacz J , Al2Adhami A J H , Bajraszewska D , et al . J .Biotechnol . , 1999 , 72 : 141 —149
[67 ]  Camarero S , Canas A I , Nousiainen P , et al . Environ. Sci .Technol . , 2008 , 42 : 6703 —6709
[68 ]  Russo M E , Giardina P , Marzocchella A , et al . Enzyme Microb.Technol . , 2008 , 42 : 521 —530
[69 ]  Couto S R , Osma J F , Saravia V , et al . Appl . Catal . A-Gen. ,2007 , 329 : 156 —160
[70 ]  Palmieri G, Giardina P , Sannia G. Biotechnol . Prog. , 2005 , 21 :1436 —1441
[71 ]  Pandya P H , Jasra R V , Newalker B L , et al . Micropor. Mesopor.Mater. , 2004 , 77 : 67 —77
[72 ]  Liu Z J , Deng J Q , Li D. Anal . Chim. Acta , 2000 , 407 : 87 —96
[73 ]  Zhang J B , Liu X P , Xu Z Q , et al . Int . Biodeterior. Biodegrad. ,2008 , 61 : 351 —356
[74 ]  Hublik G, Schinner F. Enzyme Microb. Technol . , 2000 , 407 :87 —96
[75 ]  Jordaan J , Leukes W D. Enzyme Microb. Technol . , 2003 , 33 :212 —219
[76 ]  Couto S R , Sanroman M, Gubitz G M. Chemosphere , 2005 , 58 :417 —422
[77 ]  Santos C , Fragoeiro S , Valentim H , et al . Sci . Hortic. , 2006 ,107 : 131 —136
[78 ]  Lorenzo M, Moldes D , Sanroman M A. Chemosphere , 2006 , 63 :912 —917
[79 ]  涂楚桥(Tu C Q) , 梁宏(Liang H) , 王光辉(Wang G H) . 光谱学与光谱分析( Spectroscopy and Spectral Analysis) , 2001 , 21 :524 —526
[80 ]  Galhaup C , Wagner H , Hinterstoisser B , et al . Enzyme Microb.Technol . , 2002 , 30 : 529 —536
[81 ]  彭立凤(Peng L F) . 化学进展(Progress in Chemistry) , 2000 , 12 :296 —304
[82 ]  Rodakiewcz-Nowak J , Jarosz-Wilkolazka A. J . Mol . Catal . B :Enzym. , 2007 , 44 : 53 —59
[83 ]  Farnet A M, Gil G, Ferre E. Chemosphere , 2008 , 70 : 895 —900
[84 ]  Cristovao R O , Tavares A P M, Ribeiro A S , et al . Bioresour.Technol . , 2008 , 99 : 4768 —4774
[85 ]  Auriol M, Filali-Meknassi Y, Tyagi R D , et al . Water Res. , 2007 ,41 : 3281 —3288
[86 ]  May S W, Li N N. Biochem. Biophys. Res. Commun. , 1972 , 47 :1179 —1185
[87 ]  Horndy W E , Lilly M D , Crock E M. Biochem. J . , 1968 , 107 :668 —673
[88 ]  Georgieva S , Godjevargova T, Portaccio M, et al . J . Mol . Catal .A: Chem. , 2008 , 55 : 177 —184
[89 ]  Casella L , Gullotti M, Monzani E , et al . J . Inorg. Biochem. ,2006 , 100 : 2127 —2139
[90 ]  Gianfreda L , Sannino F , Filazzola M T, et al . J . Mol . Catal . B :Enzym. , 1998 , 4 : 13 —23
[91 ]  Sadhasivam S , Savitha S , Swaminathan K, et al . Process Biochem. ,2008 , 43 : 736 —742
[92 ]  Setti L , Giuliani S , Spinozzi G, et al . Enzyme Microb. Technol . ,1999 , 25 : 285 —289
[93 ]  Trovaslet M, Enaud E , Guiavarc’h Y, et al . Enzyme Microb.Technol . , 2007 , 41 : 368 —376
[94 ]  Brandi P , DpAnnibale A , Galli C , et al . J . Mol . Catal . , 2006 ,41 : 61 —69
[95 ]  Rogalski J , Dawidowicz A , Jozwik E , et al . J . Mol . Catal . B :Enzym. , 1999 , 6 : 29 —39
[96 ]  Singh G, Capalash N , Goel R , et al . Enzyme Microb. Technol . ,2007 , 41 : 794 —799
[97 ]  Jiang X, Wang T. Environ. Sci . Technol . , 2007 , 41 : 4441 —4446
[98 ]  Pozdnyakova N N , Rodakiewicz-Nowak J , Turkovskaya O V , et al .Enzyme Microb. Technol . , 2006 , 39 : 1242 —1249
[99 ]  Cabana H , Jones J P , Agathos S N. J . Biotechnol . , 2007 , 132 :23 —31
[100 ] Kulys J , Krikstopaitis K, Ziemys A , et al . J . Mol . Catal . B :Enzym. , 2002 , 18 : 99 —108
[101 ] Yoshitsune S Y, Aye H N , Hong K J , et al . Enzyme Microb.Technol . , 2005 , 36 : 147 —152
[102 ] Pedroza A M, Mosqueda R , Alonso-Vante N , et al . Chemosphere ,2007 , 67 : 793 —801
[103 ] Karamyshev A V , Shleev S V , Koroleva O V , et al . Enzyme Microb.Technol . , 2003 , 33 : 556 —564
[104 ] Vasil′eva I S , Morozova O V , Shumakovich G P , et al . Synth.Met . , 2007 , 157 : 684 —689
[105 ] Suresh P S , Kumar A , Kumar R , et al . J . Mol . Graph. Model . ,2008 , 26 : 845 —849
[106 ] Pedroza A M, Mosqueda R , Alonso-Vante N , et al . Chemosphere ,2007 , 67 : 793 —801
[107 ] Michniewicz A , Ledakowicz S , Ullrich R , et al . Dyes Pigment . ,2008 , 77 : 295 —302
[108 ] Amitai G, Adani R , Sod-Moriah G, et al . FEBSLett . , 1998 , 438 :195 —200
[109 ] Collins P J , Koterman M J J , Field J A , et al . Appl . Environ.Microbiol . , 1996 , 62 : 4563 —4567
[110 ] Freire R S , Duran N , Kubota L T. Talanta , 2001 , 54 : 681 —686
[111 ] Michniewicz A , Ledakowicz S , Ullrich R , et al . Dyes Pigment . ,2008 , 77 : 295 —302
[112 ] Adewuyi Y G. Environ. Sci . Technol . , 2005 , 39 : 3409 —3420
[113 ] Xin Q , Zhang X W, Li ZJ , et al . Ultrason. Sonochem. , 2009 , 16 :1 —3
[114 ] Peller J , Wiest O , Kamat P V. Environ. Sci . Technol . , 2003 , 37 :1926 —1932
[115 ] 王颖(Wang Y) , 牛军峰(Niu J F) , 张哲 (Zhang Z Y) 等. 化学进展(Progress in Chemistry) , 2008 , 20 : 1621 —1620
[116 ] Basto C , Tzanov T, Cavaco-Paulo A. Ultrason. Sonochem. , 2007 ,14 : 350 —354
[117 ] Destaillats H , Hung HM, Hoffmann M R. Environ. Sci . Technol . ,2000 , 34 : 311 —317
[118 ] Basto C , Silva C J , Gubitz G, et al . Ultrason. Sonochem. , 2007 ,14 : 355 —362
[119 ] Haarstrick A , Kut O M, Heinzle E A. Environ. Sci . Technol . ,1996 , 30 : 817 —824
[120 ] Rehorek A , Tauber M, Gubitz G. Ultrason. Sonochem. , 2004 , 11 :177 —182
[121 ] Tauber MM, Gubitz GM, Rehorek A , et al . Bioresour. Technol . ,2008 , 99 : 4213 —4226
[122 ] Rehorek A , Hoffmann P , Kandelbauer A , et al . Chemosphere ,2007 , 67 : 1526 —1532

[1] Lan Mingyan, Zhang Xiuwu, Chu Hongyu, Wang Chongchen. MIL-101(Fe) and Its Composites for Catalytic Removal of Pollutants: Synthesis Strategies, Performances and Mechanisms [J]. Progress in Chemistry, 2023, 35(3): 458-474.
[2] Li Zhou, Abdelkrim Yasmine, Zhiguo Jiang, Zhongzhen Yu, Jin Qu. Microplastics: A Review on Biological Effects, Analysis and Degradation Methods [J]. Progress in Chemistry, 2022, 34(9): 1935-1946.
[3] Qi Qi, Peizhu Xu, Zhidong Tian, Wei Sun, Yangjie Liu, Xiang Hu. Recent Advances of the Electrode Materials for Sodium-Ion Capacitors [J]. Progress in Chemistry, 2022, 34(9): 2051-2062.
[4] Qianqian Fan, Lu Wen, Jianzhong Ma. Lead-Free Halide Perovskite Nanocrystals: A New Generation of Photocatalytic Materials [J]. Progress in Chemistry, 2022, 34(8): 1809-1814.
[5] Xin Pang, Shixiang Xue, Tong Zhou, Hudie Yuan, Chong Liu, Wanying Lei. Advances in Two-Dimensional Black Phosphorus-Based Nanostructures for Photocatalytic Applications [J]. Progress in Chemistry, 2022, 34(3): 630-642.
[6] Nan Wang, Yuqi Zhou, Ziye Jiang, Tianyu Lv, Jin Lin, Zhou Song, Lihua Zhu. Synergistically Consecutive Reduction and Oxidation of Per- and Poly-Halogenated Organic Pollutants [J]. Progress in Chemistry, 2022, 34(12): 2667-2685.
[7] Zhao Ding, Weijie Yang, Kaifu Huo, Leon Shaw. Thermodynamics and Kinetics Tuning of LiBH4 for Hydrogen Storage [J]. Progress in Chemistry, 2021, 33(9): 1586-1597.
[8] Xiaoping Chen, Qiaoshan Chen, Jinhong Bi. Photocatalytic Degradation of Polycyclic Aromatic Hydrocarbon in Soil [J]. Progress in Chemistry, 2021, 33(8): 1323-1330.
[9] Wenliang Han, Linyang Dong. Activation Methods of Advanced Oxidation Processes Based on Sulfate Radical and Their Applications in The Degradation of Organic Pollutants [J]. Progress in Chemistry, 2021, 33(8): 1426-1439.
[10] Xiaohong Yi, Chongchen Wang. Elimination of Emerging Organic Contaminants in Wastewater by Advanced Oxidation Process Over Iron-Based MOFs and Their Composites [J]. Progress in Chemistry, 2021, 33(3): 471-489.
[11] Hongfei Bi, Jinsong Liu, Zhengying Wu, He Suo, Xueliang Lv, Yunlong Fu. Modified Synthesis and Photocatalytic Properties of Indium Zinc Sulfide [J]. Progress in Chemistry, 2021, 33(12): 2334-2347.
[12] Yong Feng, Yu Li, Guangguo Ying. Micro-Interface Electron Transfer Oxidation Based on Persulfate Activation [J]. Progress in Chemistry, 2021, 33(11): 2138-2149.
[13] Lin Gu, Kai Zhang, Haixiang Yu, Guangxia Dong, Xingbo Qiao, Haifeng Wen. Synthesis of Sludge Carbon-Based Catalytic Materials and Their Application in Water Environment [J]. Progress in Chemistry, 2020, 32(9): 1412-1426.
[14] Chen Hou, Wenqiang Chen, Linhui Fu, Sufeng Zhang, Chen Liang. Covalent Organic Frameworks(COFs) Materials in Enzyme Immobilization and Mimic Enzymes [J]. Progress in Chemistry, 2020, 32(7): 895-905.
[15] Changfan Xu, Xin Fang, Jing Zhan, Jiaxi Chen, Feng Liang. Progress for Metal-CO2 Batteries: Mechanism and Advanced Materials [J]. Progress in Chemistry, 2020, 32(6): 836-850.