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Applications of lignin-derived catalysts for green synthesis
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  • 英文篇名:Applications of lignin-derived catalysts for green synthesis
  • 作者:Yuting ; Zhu ; Zhijing ; Li ; Jinzhu ; Chen
  • 英文作者:Yuting Zhu;Zhijing Li;Jinzhu Chen;Key Laboratory of Renewable Energy, Guangzhou Institute of Energy Conversion, Chinese Academy of Sciences;University of Chinese Academy of Sciences;Guangdong Engineering and Technology Research Centre of Graphene-Based Materials and Products, Department of Chemistry, College of Chemistry and Materials Science, Jinan University;Key Laboratory of Biomass Chemical Engineering of Ministry of Education, Department of Chemical and Biological Engineering, Zhejiang University;
  • 英文关键词:Catalyst;;Green chemistry;;Lignin;;Pretreatment;;Synthesis
  • 中文刊名:GENE
  • 英文刊名:绿色能源与环境(英文)
  • 机构:Key Laboratory of Renewable Energy, Guangzhou Institute of Energy Conversion, Chinese Academy of Sciences;University of Chinese Academy of Sciences;Guangdong Engineering and Technology Research Centre of Graphene-Based Materials and Products, Department of Chemistry, College of Chemistry and Materials Science, Jinan University;Key Laboratory of Biomass Chemical Engineering of Ministry of Education, Department of Chemical and Biological Engineering, Zhejiang University;
  • 出版日期:2019-07-15
  • 出版单位:Green Energy & Environment
  • 年:2019
  • 期:v.4
  • 基金:financial support from National Natural Science Foundation of China (U1810111);; Natural Science Foundation of Guangdong Province, China (2018B030311010);; Key Laboratory of Biomass Chemical Engineering of Ministry of Education, Zhejiang University (2018BCE002);; the Fundamental Research Funds for the Central Universities (21617431)
  • 语种:英文;
  • 页:GENE201903003
  • 页数:35
  • CN:03
  • ISSN:10-1418/TK
  • 分类号:11-45
摘要
This review intends to introduce the application of lignin-derived catalyst for green organic synthesis over latest two decades and aims to present a renewable alternative for conventional catalyst for future industry application. The structure of lignin is initially introduced in this review. Then, various pretreatment and activation technologies of lignin are systematically presented, which includes physical activation for the formation of well-developed porosity and chemical activation to introduce catalytic active sites. Finally, the catalytic performances of various lignin-derived catalysts are rationally assessed and compared with conventional catalysts, which involves lignin-derived solid acids for hydrolysis, hydration, dehydration(trans)esterification, multi-component reaction and condensation, lignin-derived solid base for Knoevenagel reaction, lignin-derived electro-catalysts for electro-oxidation, oxygen reduction reaction, and lignin-derived supported transition metal catalysts for hydrogenation, oxidation, coupling reaction, tandem reaction, condensation reaction, ring-opening reaction, Friedel-Crafts-type reaction,Fischer–Tropsch synthesis, click reaction, Glaser reaction, cycloaddition and(trans)esterification. The above lignin-derived catalysts thus successfully promote the transformations of organic compounds, carbon dioxide, biomass-based cellulose, saccharide and vegetable oil into valuable chemicals and fuels. At the end of this review, some perspectives are given on the current issues and tendency on the lignin-derived catalysts for green chemistry.
        This review intends to introduce the application of lignin-derived catalyst for green organic synthesis over latest two decades and aims to present a renewable alternative for conventional catalyst for future industry application. The structure of lignin is initially introduced in this review. Then, various pretreatment and activation technologies of lignin are systematically presented, which includes physical activation for the formation of well-developed porosity and chemical activation to introduce catalytic active sites. Finally, the catalytic performances of various lignin-derived catalysts are rationally assessed and compared with conventional catalysts, which involves lignin-derived solid acids for hydrolysis, hydration, dehydration(trans)esterification, multi-component reaction and condensation, lignin-derived solid base for Knoevenagel reaction, lignin-derived electro-catalysts for electro-oxidation, oxygen reduction reaction, and lignin-derived supported transition metal catalysts for hydrogenation, oxidation, coupling reaction, tandem reaction, condensation reaction, ring-opening reaction, Friedel-Crafts-type reaction,Fischer–Tropsch synthesis, click reaction, Glaser reaction, cycloaddition and(trans)esterification. The above lignin-derived catalysts thus successfully promote the transformations of organic compounds, carbon dioxide, biomass-based cellulose, saccharide and vegetable oil into valuable chemicals and fuels. At the end of this review, some perspectives are given on the current issues and tendency on the lignin-derived catalysts for green chemistry.
引文
[1]B.M.Upton,A.M.Kasko,Chem.Rev.116(2016)2275-2306.
    [2]A.Eudes,Y.Liang,P.Mitra,D.Loque,Curr.Opin.Biotechnol.26(2014)189-198.
    [3]N.Mahmood,Z.S.Yuan,J.Schmidt,C.B.Xu,Renew.Sustain.Energy Rev.60(2016)317-329.
    [4]C.O.Tuck,E.Perez,I.T.Horvath,R.A.Sheldon,M.Poliakoff,Science337(2012)695-699.
    [5]L.da Costa Sousa,S.P.Chundawat,V.Balan,B.E.Dale,Curr.Opin.Biotechnol.20(2009)339-347.
    [6]P.N.R.Vennestr?m,C.M.Osmundsen,C.H.Christensen,E.Taarning,Angew.Chem.Int.Ed.50(2011)10502-10509.
    [7]M.D.K€ark€as,B.S.Matsuura,T.M.Monos,G.Magallanes,C.R.J.Stephenson,Org.Biomol.Chem.14(2016)1853-1914.
    [8]Y.B.Qin,M.T.Zhu,K.Liu,X.M.Bao,J.Q.Lin,Biotechnol.J.1(2006)1235-1240.
    [9]J.Zakzeski,P.C.A.Bruijnincx,A.L.Jongerius,B.M.Weckhuysen,Chem.Rev.110(2010)3552-3599.
    [10]Y.P.Wang,L.L.Dai,L.L.Fan,S.Q.Shan,Y.H.Liu,R.Ruan,J.Anal.Appl.Pyrolysis 119(2016)104-113.
    [11]R.J.A.Gosselink,E.de Jong,B.Guran,A.Ab€acherli,Ind.Crops Prod.20(2004)121-129.
    [12]F.-X.Collard,J.Blin,Renew.Sustain.Energy Rev.38(2014)594-608.
    [13]Z.Ma,V.Custodis,P.Hemberger,C.B€ahrle,F.Vogel,G.Jeschk,J.A.van Bokhoven,Chimia 69(2015)597-602.
    [14]L.Chen,X.N.Ye,F.X.Luo,J.G.Shao,Q.Lu,Y.Fang,X.H.Wang,H.P.Chen,J.Anal.Appl.Pyrolysis 115(2015)103-111.
    [15]J.B.Huang,C.He,J.Anal.Appl.Pyrolysis 113(2015)655-664.
    [16]A.Dieguez-Alonso,A.Anca-Couce,N.Zobel,F.Behrendt,Fuel 153(2015)102-109.
    [17]Q.Liu,S.R.Wang,Y.Zheng,Z.Y.Luo,K.F.Cen,J.Anal.Appl.Pyrolysis 82(2008)170-177.
    [18]J.M.Lu,M.Wang,X.C.Zhang,A.Heyden,F.Wang,ACS Catal.6(2016)5589-5598.
    [19]S.K.Hanson,R.T.Baker,Acc.Chem.Res.48(2015)2037-2048.
    [20]R.ten Have,P.J.M.Teunissen,Chem.Rev.101(2001)3397-3414.
    [21]H.E.Schoemaker,P.J.Harvey,R.M.Bowen,J.M.Palmer,FEBS Lett.183(1985)7-12.
    [22]M.St€ocker,Angew.Chem.Int.Ed.47(2008)9200-9211.
    [23]J.J.Bozell,G.R.Petersen,Green Chem.12(2010)539-554.
    [24]P.Azadi,O.R.Inderwildi,R.Farnood,D.A.King,Renew.Sustain.Energy Rev.21(2013)506-523.
    [25]A.J.Ragauskas,G.T.Beckham,M.J.Biddy,R.Chandra,F.Chen,M.F.Davis,B.H.Davison,R.A.Dixon,P.Gilna,M.Keller,P.Langan,A.K.Naskar,J.N.Saddler,T.J.Tschaplinski,G.A.Tuskan,C.E.Wyman,Science 344(2014)1246843.
    [26]C.Z.Li,X.C.Zhao,A.Q.Wang,G.W.Huber,T.Zhang,Chem.Rev.115(2015)11559-11624.
    [27]V.S.Sikarwar,M.Zhao,P.Clough,J.Yao,X.Zhong,M.Z.Memon,N.Shah,E.J.Anthony,P.S.Fennell,Energy Environ.Sci.10(2016)2939-3977.
    [28]S.R.Collinson,W.Thielemans,Coord.Chem.Rev.254(2010)1854-1870.
    [29]R.H.Narron,H.Kim,H.M.Chang,H.Jameel,S.Park,Curr.Opin.Biotechnol.38(2016)39-46.
    [30]T.D.Bugg,R.Rahmanpour,Curr.Opin.Chem.Biol.29(2015)10-17.
    [31]A.K.S.Kameshwar,W.S.Qin,Int.J.Biol.Sci.12(2016)156-171.
    [32]G.T.Beckham,C.W.Johnson,E.M.Karp,D.Salvachu′a,D.R.Vardon,Curr.Opin.Biotechnol.42(2016)40-53.
    [33]L.Pollegioni,F.Tonin,E.Rosini,FEBS J.282(2015)1190-1213.
    [34]C.R.Poovaiah,M.Nageswara-Rao,J.R.Soneji,H.L.Baxter,C.N.Stewart Jr,Plant Biotechnol.J.12(2014)1163-1173.
    [35]W.Zhang,J.Z.Chen,R.L.Liu,S.P.Wang,L.M.Chen,K.G.Li,ACSSustain.Chem.Eng.2(2014)683-691.
    [36]C.P.Xu,R.A.D.Arancon,J.Labidi,R.Luque,Chem.Soc.Rev.43(2014)7485-7500.
    [37]P.J.M.Carrott Suhas,M.M.L.Ribeiro Carrott,Bioresour.Technol.98(2007)2301-2312.
    [38]S.Chatterjee,T.Saito,ChemSusChem 8(2015)3941-3958.
    [39]M.M.Titirici,R.J.White,N.Brun,V.L.Budarin,D.S.Su,F.del Monte,J.H.Clark,M.J.MacLachlan,Chem.Soc.Rev.44(2015)250-290.
    [40]C.Wang,S.S.Kelley,R.A.Venditti,ChemSusChem 9(2016)770-783.
    [41]Y.L.Gu,F.Jer^ome,Chem.Soc.Rev.42(2013)9550-9570.
    [42]C.Amen-Chen,H.Pakdel,C.Roy,Bioresour.Technol.79(2001)277-299.
    [43]R.S.Ma,Y.Xu,X.Zhang,ChemSusChem 8(2015)24-51.
    [44]J.M.Dias,M.C.Alvim-Ferraz,M.F.Almeida,J.Rivera-Utrilla,M.Sanchez-Polo,J.Environ.Manag.85(2007)833-846.
    [45]M.Danish,T.Ahmad,Renew.Sustain.Energy Rev.87(2018)1-21.
    [46]W.J.Liu,H.Jiang,H.Q.Yu,Green Chem.17(2015)4888-4907.
    [47]P.Gupta,S.Paul,Catal.Today 236(2014)153-170.
    [48]E.Lam,J.H.T.Luong,ACS Catal.4(2014)3393-3410.
    [49]F.M.Gírio,C.Fonseca,F.Carvalheiro,L.C.Duarte,S.Marques,R.Bogel-?ukasik,Bioresour.Technol.101(2010)4775-4800.
    [50]X.F.Xie,B.Goodell,D.J.Zhang,D.C.Nagle,Y.H.Qian,M.L.Peterson,J.Jellison,Bioresour.Technol.100(2009)1797-1802.
    [51]A.L.Tarasov,L.M.Kustov,A.A.Bogolyubov,A.S.Kiselyov,V.V.Semenov,Appl.Catal.A:Gen.366(2009)227-231.
    [52]J.C.del Río,J.Rencoret,P.Prinsen,A.T.Martínez,J.Ralph,A.Gutierrez,J.Agric.Food Chem.60(2012)5922-5935.
    [53]X.Y.Wang,R.Rinaldi,ChemSusChem 5(2012)1455-1466.
    [54]J.Ralph,K.Lundquist,G.Brunow,F.Lu,H.Kim,P.F.Schatz,J.M.Marita,R.D.Hatfield,S.A.Ralph,J.H.Christensen,W.Boerjan,Phytochemistry Rev.3(2004)29-60.
    [55]C.G.Boeriu,D.Bravo,R.J.A.Gosselink,J.E.G.van Dam,Ind.Crops Prod.20(2004)205-218.
    [56]F.S.Chakar,A.J.Ragauskas,Ind.Crops Prod.20(2004)131-141.
    [57]H.Wikberg,T.Ohra-aho,F.Pileidis,M.-M.Titirici,ACS Sustain.Chem.Eng.3(2015)2737-2745.
    [58]J.C.Río,J.Rencoret,G.Marques,A.Gutierrez,D.Ibarra,J.I.Santos,J.Jimenez-Barbero,L.M.Zhang,A.T.Martínez,J.Agric.Food Chem.56(2008)9525-9534.
    [59]W.G.Forsythe,M.D.Garrett,C.Hardacre,M.Nieuwenhuyzen,G.N.Sheldrake,Green Chem.15(2013)3031-3038.
    [60]J.Banoub,G.H.Delmas Jr.,N.Joly,G.Mackenzie,N.Cachet,B.Benjelloun-Mlayah,M.Delmas,J.Mass Spectrom.50(2015)5-48.
    [61]V.K.Thakur,M.K.Thakur,Int.J.Biol.Macromol.72(2015)834-847.
    [62]H.Werhan,N.Assmann,P.R.von Rohr,Chem.Eng.Process 73(2013)29-37.
    [63]J.Rodríguez-Mirasol,T.Cordero,J.J.Rodríguez,Energy Fuels 7(1993)133-138.
    [64]S.Meyer,B.Glaser,P.Quicker,Environ.Sci.Technol.45(2011)9473-9483.
    [65]J.Guo,A.C.Lua,J.Anal.Appl.Pyrolysis 46(1998)113-125.
    [66]R.K.Sharma,J.B.Wooten,V.L.Baliga,X.Lin,W.G.Chan,M.R.Hajaligol,Fuel 83(2004)1469-1482.
    [67]Q.Bu,H.W.Lei,L.Wang,Y.Wei,L.Zhu,X.S.Zhang,Y.P.Liu,G.Yadavalli,J.Tang,Bioresour.Technol.162(2014)142-147.
    [68]S.Farag,L.Kouisni,J.Chaouki,Energy Fuels 28(2014)1406-1417.
    [69]M.E.Zakrzewska,E.Bogel-?ukasik,R.Bogel-?ukasik,Chem.Rev.111(2011)397-417.
    [70]C.M.Fierro,J.Gorka,J.A.Zazo,J.J.Rodriguez,J.Ludwinowicz,M.Jaroniec,Carbon 62(2013)233-239.
    [71]S.M.Kang,X.L.Li,J.Fan,J.Chang,Ind.Eng.Chem.Res.51(2012)9023-9031.
    [72]J.Hu,D.K.Shen,S.L.Wu,H.Y.Zhang,R.Xiao,J.Anal.Appl.Pyrolysis 106(2014)118-124.
    [73]O.N.Baklanova,G.V.Plaksin,V.A.Drozdov,V.K.Duplyakin,N.V.Chesnokov,B.N.Kuznetsov,Carbon 41(2003)1793-1800.
    [74]J.Li,A.R.P.van Heiningen,Ind.Eng.Chem.Res.29(1990)1776-1785.
    [75]P.J.M.Carrott,Suhas,M.M.L.Ribeiro Carrott,C.I.Guerrero,L.A.Delgado,J.Anal.Appl.Pyrolysis 82(2008)264-271.
    [76]P.J.M.Carrott Suhas,M.M.L.Ribeiro Carrott,Carbon 47(2009)1012-1017.
    [77]D.Saha,Y.C.Li,Z.H.Bi,J.H.Chen,J.K.Keum,D.K.Hensley,H.A.Grappe,H.M.Meyer III,S.Dai,M.P.Paranthaman,A.K.Naskar,Langmuir 30(2014)900-910.
    [78]M.J.Valero-Romero,E.M.Marquez-Franco,J.Bedia,J.RodríguezMirasol,T.Cordero,Microporous Mesoporous Mater.196(2014)68-78.
    [79]D.Lozano-Castello,J.M.Calo,D.Cazorla-Amoros,A.Linares-Solano,Carbon 45(2007)2529-2536.
    [80]S.-H.Yoon,S.Lim,Y.Song,Y.Ota,W.Qiao,A.Tanaka,I.Mochida,Carbon 42(2004)1723-1729.
    [81]M.Z.Figueroa-Torres,A.Robau-Sanchez,L.De la Torre-Saenz,A.Aguilar-Elguezabal,Microporous Mesoporous Mater.98(2007)89-93.
    [82]M.Jorda-Beneyto,D.Lozano-Castello,F.Suarez-García,D.CazorlaAmoros,A.Linares-Solano,Microporous Mesoporous Mater.112(2008)235-242.
    [83]X.F.Li,Y.Zuo,Y.Zhang,Y.Fu,Q.X.Guo,Fuel 113(2013)435-442.
    [84]J.C.Wang,S.Kaskel,J.Mater.Chem.22(2012)23710-23725.
    [85]M.Armandi,B.Bonelli,F.Geobaldo,E.Garrone,Microporous Mesoporous Mater.132(2010)414-420.
    [86]J.Hayashi,A.Kazehaya,K.Muroyama,A.P.Watkinson,Carbon 38(2000)1873-1878.
    [87]J.Hayashi,K.Muroyama,V.G.Gomes,A.P.Watkinson,Carbon 40(2002)617-636.
    [88]V.Fierro,V.Torne-Fernandez,A.Celzard,Microporous Mesoporous Mater.101(2007)419-431.
    [89]S.X.Hu,Y.-L.Hsieh,J.Mater.Chem.A 1(2013)11279-11288.
    [90]A.T.Xie,J.D.Dai,X.Chen,P.Ma,J.S.He,C.X.Li,Z.P.Zhou,Y.S.Yan,Chem.Eng.J.304(2016)609-620.
    [91]K.Babe?,K.Jurewicz,Carbon 46(2008)1948-1956.
    [92]M.Sevilla,A.B.Fuertes,R.Mokaya,Energy Environ.Sci.4(2011)1400-1410.
    [93]G.Chieffi,N.Fechler,D.Esposito,RSC Adv.5(2015)63691-63696.
    [94]A.M.Dehkhoda,N.Ellis,Catal.Today 207(2013)86-92.
    [95]V.D.Mitchell,C.M.Taylor,S.Bauer,Bioenerg.Res.7(2013)654-669.
    [96]F.L.Pua,Z.Fang,S.Zakaria,F.Guo,C.H.Chia,Biotechnol.Biofuels 4(2011)56-64.
    [97]F.Guo,Z.L.Xiu,Z.X.Liang,Appl.Energy 98(2012)47-52.
    [98]F.B.Liang,Y.L.Song,C.P.Huang,J.Zhang,B.H.Chen,Catal.Commun.40(2013)93-97.
    [99]M.M.Zainol,N.A.S.Amin,M.Asmadi,Bioresour.Technol.190(2015)44-50.
    [100]F.Guo,Z.Fang,T.J.Zhou,Bioresour.Technol.112(2012)313-318.
    [101]S.M.Kang,J.Ye,Y.Zhang,J.Chang,RSC Adv.3(2013)7360-7366.
    [102]L.Hu,X.Tang,Z.Wu,L.Lin,J.X.Xu,N.Xu,B.L.Dai,Chem.Eng.J.263(2015)299-308.
    [103]X.C.Zhang,Z.Zhang,F.Wang,Y.H.Wang,Q.Song,J.Xu,J.Mol.Catal.Chem.377(2013)102-107.
    [104]W.Namchot,N.Panyacharay,W.Jonglertjunya,C.Sakdaronnarong,Fuel 116(2014)608-616.
    [105]S.X.Hu,F.Jiang,Y.-L.Hsieh,ACS Sustain.Chem.Eng.3(2015)2566-2574.
    [106]M.Jagtoyen,F.Derbyshire,Carbon 36(1998)1085-1097.
    [107]J.M.Rosas,J.Bedia,J.Rodríguez-Mirasol,T.Cordero,Ind.Eng.Chem.Res.47(2008)1288-1296.
    [108]T.Vernersson,P.R.Bonelli,E.G.Cerrella,A.L.Cukierman,Bioresour.Technol.83(2002)95-104.
    [109]M.S.Solum,R.J.Pugmire,M.Jagtoyen,F.Derbyshire,Carbon 33(1995)1247-1254.
    [110]J.Bedia,J.M.Rosas,J.Marquez,J.Rodríguez-Mirasol,T.Cordero,Carbon 47(2009)286-294.
    [111]E.Gonzalez-Serrano,T.Cordero,J.Rodriguez-Mirasol,L.Cotoruelo,J.J.Rodriguez,Water Res.38(2004)3043-3050.
    [112]M.Graglia,J.Pampel,T.Hantke,T.P.Fellinger,D.Esposito,ACS Nano10(2016)4364-4371.
    [113]N.Tsubouchi,M.Nishio,Y.Mochizuki,Appl.Surf.Sci.371(2016)301-306.
    [114]E.Gonzalez-Serrano,T.Cordero,J.Rodríguez-Mirasol,J.J.Rodríguez,Ind.Eng.Chem.Res.36(1997)4832-4838.
    [115]Z.S.Ma,H.Y.Zhang,Z.Z.Yang,Y.F.Zhang,B.Yu,Z.M.Liu,J.Mater.Chem.A 2(2014)19324-19329.
    [116]Z.G.Ma,H.Y.Zhang,Z.Z.Yang,G.P.Ji,B.Yu,X.W.Liu,Z.M.Liu,Green Chem.18(2015)1976-1982.
    [117]C.Y.Wu,W.Chen,L.X.Zhong,X.W.Peng,R.C.Sun,J.J.Fang,S.B.Zheng,J.Agric.Food Chem.62(2014)7430-7435.
    [118]S.H.Sun,R.X.Bai,Y.L.Gu,Chem.Eur J.20(2014)549-558.
    [119]H.B.Xie,Z.K.Zhao,Q.Wang,ChemSusChem 5(2012)901-905.
    [120]Q.Chen,W.Huang,P.Chen,C.Peng,H.B.Xie,Z.K.Zhao,M.Sohail,M.Bao,ChemCatChem 7(2015)1083-1089.
    [121]J.K.Brennan,T.J.Bandosz,Kendall T.Thomson,K.E.Gubbins,Colloids Surf.A 187-188(2001)539-568.
    [122]S.Suganuma,K.Nakajima,M.Kitano,D.Yamaguchi,H.Kato,S.Hayashi,M.Hara,J.Am.Chem.Soc.130(2008)12787-12793.
    [123]D.Yamaguchi,M.Kitano,S.Suganuma,K.Nakajima,H.Kato,M.Hara,J.Phys.Chem.C 113(2009)3181-3188.
    [124]J.F.Pang,A.Q.Wang,M.Y.Zheng,T.Zhang,Chem.Commun.46(2010)6935-6937.
    [125]D.M.Lai,L.Deng,Q.X.Guo,Y.Fu,Energy Environ.Sci.4(2011)3552-3557.
    [126]J.Hegner,K.C.Pereira,B.DeBoef,B.L.Lucht,Tetrahedron Lett.51(2010)2356-2358.
    [127]H.L.Cai,C.Z.Li,A.Q.Wang,G.L.Xu,T.Zhang,Appl.Catal.B 123-124(2012)333-338.
    [128]P.Gallezot,Catal.Today 121(2007)76-91.
    [129]F.L.Yang,Q.H.Liu,X.F.Bai,Y.G.Du,Bioresour.Technol.102(2011)3424-3429.
    [130]R.Behling,S.Valange,G.Chatel,Green Chem.18(2016)1839-1854.
    [131]S.De,S.Dutta,B.Saha,Green Chem.13(2011)2859-2868.
    [132]L.Wang,J.Zhang,L.F.Zhu,X.J.Meng,F.S.Xiao,J.Energy Chem.22(2013)241-244.
    [133]J.Z.Chen,K.G.Li,L.M.Chen,R.L.Liu,X.Huang,D.Q.Ye,Green Chem.16(2014)2490-2499.
    [134]H.P.Yan,Y.Yang,D.M.Tong,X.Xiang,C.W.Hu,Catal.Commun.10(2009)1558-1563.
    [135]T.Parsell,S.Yohe,J.Degenstein,T.Jarrell,I.Klein,E.Gencer,B.Hewetson,M.Hurt,J.I.Kim,H.Choudhari,B.Saha,R.Meilan,N.Mosier,F.Ribeiro,W.N.Delgass,C.Chapple,H.I.Kentt€amaa,R.Agrawal,M.M.Abu-Omar,Green Chem.17(2015)1492-1499.
    [136]A.M.Dehkhoda,A.H.West,N.Ellis,Appl.Catal.A 382(2010)197-204.
    [137]K.Nakajima,M.Hara,ACS Catal.2(2012)1296-1304.
    [138]H.F.Lu,Y.Y.Liu,H.Zhou,Y.Yang,M.Y.Chen,B.Liang,Comput.Chem.Eng.33(2009)1091-1096.
    [139]A.K.Tiwari,A.Kumar,H.Raheman,Bioresour.Technol.31(2007)569-575.
    [140]K.F.Yee,J.C.S.Wu,K.T.Lee,Biomass Bioenergy 35(2011)1739-1746.
    [141]F.Guo,Z.Fang,X.F.Tian,Y.D.Long,L.Q.Jiang,Bioresour.Technol.102(2011)6469-6472.
    [142]Q.Shu,Z.Nawaz,J.X.Gao,Y.H.Liao,Q.Zhang,D.Z.Wang,J.F.Wang,Bioresour.Technol.101(2010)5374-5384.
    [143]F.Su,Y.H.Guo,Green Chem.5(2014)69-92.
    [144]M.Okamura,A.Takagaki,M.Toda,J.N.Kondo,K.Domen,T.Tatsumi,M.Hara,S.Hayashi,Chem.Mater.18(2006)3039-3045.
    [145]M.Hara,T.Yoshida,A.Takagaki,T.Takata,J.N.Kondo,S.Hayashi,K.Domen,Angew.Chem.Int.Ed.116(2004)3015-3018.
    [146]W.Chen,X.W.Peng,L.X.Zhong,Y.Li,R.C.Sun,ACS Sustain.Chem.Eng.3(2015)1366-1373.
    [147]J.J.Li,L.M.Lu,W.K.Su,Tetrahedron Lett.51(2010)2434-2437.
    [148]J.J.Li,W.Y.Tang,L.M.Lu,W.K.Su,Tetrahedron Lett.49(2008)7117-7120.
    [149]J.M.Khurana,D.Magoo,Tetrahedron Lett.50(2009)4777-4780.
    [150]B.Das,K.Laxminarayana,M.Krishnaiah,Y.Srinivas,Synlett(2007)3107-3112.
    [151]G.C.Nandi,S.Samai,R.Kumar,M.S.Singh,Tetrahedron 65(2009)7129-7134.
    [152]Q.Zhang,H.Su,J.Luo,Y.Y.Wei,Green Chem.14(2012)201-208.
    [153]G.Milczarek,Langmuir 25(2009)10345-10353.
    [154]M.H.Li,A.Taheri,M.Liu,S.H.Sun,Y.L.Gu,Adv.Synth.Catal.356(2014)537-556.
    [155]P.P.Ghosh,A.R.Das,J.Org.Chem.78(2013)6170-6181.
    [156]M.J.Earle,K.R.Seddon,Pure Appl.Chem.72(2000)1391-1398.
    [157]N.-E.El Mansouri,J.Salvado,Ind.Crops Prod.26(2007)116-124.
    [158]Y.X.Yang,K.Chiang,N.Burke,Catal.Today 178(2011)197-205.
    [159]G.Peng,F.Gramm,C.Ludwig,F.Vogel,Catal.Sci.Technol.5(2015)3658-3666.
    [160]T.Ji,L.Chen,M.Schmitz,F.S.Bao,J.H.Zhu,Green Chem.17(2015)2515-2523.
    [161]J.A.Zazo,J.Bedia,C.M.Fierro,G.Pliego,J.A.Casas,J.J.Rodriguez,Catal.Today 187(2012)115-121.
    [162]Q.G.Yan,C.X.Wan,J.Liu,J.S.Gao,F.Yu,J.L.Zhang,Z.Y.Cai,Green Chem.15(2013)1631-1640.
    [163]Z.H.Min,J.Y.Lin,P.Yimsiri,M.Asadullah,C.Z.Li,Fuel 116(2014)19-24.
    [164]Z.H.Min,S.Zhang,P.Yimsiri,Y.Wang,M.Asadullah,C.Z.Li,Fuel106(2013)858-863.
    [165]M.B.Marulasiddeshwara,P.Raghavendra Kumar,Int.J.Biol.Macromol.83(2016)326-334.
    [166]F.J.García-Mateos,T.Cordero-Lanzac,R.Berenguer,E.Morallon,D.Cazorla-Amoros,J.Rodríguez-Mirasol,T.Cordero,Appl.Catal.B211(2017)18-30.
    [167]S.Domínguez-Domínguez,J.Arias-Pardilla,A.Berenguer-Murcia,E.Morallon,D.Cazorla-Amoros,J.Appl.Electrochem.38(2008)259-268.
    [168]Y.H.Li,L.Han,B.G.An,Y.Y.Wang,L.Wang,X.T.Yin,J.L.Lu,J.Mater.Sci.Mater.Electron.27(2016)6208-6215.
    [169]J.Bedia,J.M.Rosas,J.Rodríguez-Mirasol,T.Cordero,Appl.Catal.B94(2010)8-18.
    [170]R.S.G.Ferreira,P.G.P.de Oliveira,F.B.Noronha,Appl.Catal.B 50(2004)243-249.
    [171]S.Morales-Torres,A.F.Perez-Cadenas,F.Kapteijn,F.Carrasco-Marín,F.J.Maldonado-Hodar,J.A.Moulijn,Appl.Catal.B:Environ.89(2009)411-419.
    [172]E.Guillen,R.Rico,J.M.Lopez-Romero,J.Bedia,J.M.Rosas,J.Rodríguez-Mirasol,T.Cordero,Appl.Catal.A 368(2009)113-120.
    [173]R.Franzen,Can.J.Chem.78(2000)957-962.
    [174]F.Coccia,L.Tonucci,N.d'Alessandro,P.D'Ambrosio,M.Bressan,Inorg.Chim.Acta 399(2013)12-18.
    [175]R.Martin,S.L.Buchwald,Acc.Chem.Res.41(2008)1461-1473.
    [176]R.Chinchilla,C.Najera,Chem.Soc.Rev.40(2011)5084-5121.
    [177]B.D.Mather,K.Viswanathan,K.M.Miller,T.E.Long,Prog.Polym.Sci.31(2006)487-531.
    [178]M.Rueping,B.J.Nachtsheim,Beilstein J.Org.Chem.6(2010)6.
    [179]S.C.Tang,S.C.Vongehr,X.K.Meng,J.Mater.Chem.20(2010)5436-5445.
    [180]B.Ma,M.Wang,D.Tian,Y.Y.Pei,L.J.Yuan,RSC Adv.5(2015)41639-41645.
    [181]J.R.Chiou,B.H.Lai,K.C.Hsu,D.H.Chen,J.Hazard Mater.248-249(2013)394-400.
    [182]Y.Shi,X.L.Zhang,G.Feng,X.S.Chen,Z.H.Lu,Ceram.Int.41(2015)14660-14667.
    [183]A.A.Ismail,A.Hakki,D.W.Bahnemann,J.Mol.Catal.Chem.358(2012)145-151.
    [184]M.Liang,R.X.Su,W.Qi,Y.J.Yu,L.B.Wang,Z.M.He,J.Mater.Sci.49(2013)1639-1647.
    [185]J.A.Zazo,J.A.Casas,A.F.Mohedano,J.J.Rodríguez,Appl.Catal.B 65(2006)261-268.
    [186]B.Sun,K.Xu,L.Nguyen,M.H.Qiao,F.F.Tao,ChemCatChem 4(2012)1498-1511.
    [187]Z.L.Wu,H.B.Xie,X.Yu,E.H.Liu,ChemCatChem 5(2013)1328-1333.
    [188]D.W.Chen,F.B.Liang,D.X.Feng,F.L.Du,G.Zhao,H.Z.Liu,M.Xian,Catal.Commun.84(2016)159-162.
    [189]T.Renders,S.Van den Bosch,S.-F.Koelewijn,W.Schutyser,B.F.Sels,Energy Environ.Sci.10(2017)1551-1557.

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