全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...
催化学报  2014 

Protoncatalysiswithactivecarbonsandpartiallypyrolyzedcarbonaceousmaterials

DOI: 10.1016/S1872-2067(14)60147-9, PP. 815-823

Keywords: Activecarbon,Oxidizedcarbon,Solidacidcatalyst,Quantumchemicalcalculation,Sulfonatedcarbonaceousmaterial,Phosphorylatedcarbon,Partiallypyrolisedorganiccompound,Catalyticconversionbiobasedraw,material

Full-Text   Cite this paper   Add to My Lib

Abstract:

?Thedevelopmentofenvironmentallyfriendlysolidacidcatalystsisaprioritytask.Highlyoxidizedactivatedcarbonandtheirion-substituted(saline)formsareeffectiveprotontransfercatalystsinesterification,hydrolysis,anddehydration,andthusarepromisingcandidatesassolidacidcatalysts.Computationsbytheabinitiomethodindicatedthecausefortheenchancedacidityofthecarboxylicgroupsattachedtothesurfaceofhighlyoxidizedcarbon.Thesynthesisofphosphorilatedcarbonwasconsidered,andtheprotontransferreactionscatalyzedbytheminrecentstudieswereanalyzed.Thedevelopmentofanamorphouscarbonacidcatalystcomprisingpolycycliccarbonaceous(graphene)sheetswith-SO3H,-COOHandphenolictypeOH-groupswascarriedout.Thesenewcatalystsweresynthesizedbypartialpyrolysisandsubsequentsulfonationofcarbohydrates,polymers,andotherorganiccompounds.Theirhighcatalyticactivitiesinprotontransferereactionsincludingtheprocessingofbio-basedrawmaterialswasdemonsrated.

References

[1]  Rideal E K, Wright W M. J Chem Soc, 1926, 129:1813
[2]  Garten V A, Weiss D E. Rev Pure Appl Chem, 1957, 7: 69
[3]  Bansal R C, Donnet J B, Stoekly F. Active Carbon. New York: Marcel Dekker, 1988. 482
[4]  Radowic L R, Rodriguez-Reinoso F. In: Thrower P A ed. Chemistry and Physics of Carbon. Vol 25. New York: Marcel Dekker, 1997. 243
[5]  Nikolaev V G, Strelko V V. Hemoadsorption on Active Carbon. Kiev: Naukova Dumka, 1979. 288
[6]  Puziy A M, Poddubnaya O I, Gawdzik B, Sobiesiak M, Tsyba M M. Adsorp Sci Technol, 2007, 25: 531
[7]  Puziy A M, Poddubnaya O I, Socha R P, Gurgul J, Wisniewski M. Carbon, 2008, 46: 2113
[8]  Villa A, Schiavoni M, Fulvio P F, Mahurin S M, Dai S, Mayes R T, Veith G M, Prati L. J Energy Chem, 2013, 22: 305
[9]  Khayoon M S, Hameed B H. Bioresour Technol, 2011, 102: 9229
[10]  Tarkovskaya I A. Oxidized Carbon. Kiev: Naukova dumka, 1981. 298
[11]  Strazhesko D N, Skripnik Z D, Chervyacova L L. Reports Acad Sci USSR, 1964, 155(1): 168
[12]  Budinova T, Razvigorova M, Petrov N, Minkova R, Taranjiska R. Carbon, 1998, 36: 899
[13]  Grunewald G C, Drago R S. J Am Chem Soc, 1991, 113: 1636
[14]  Szymanski G S, Rychlicki G, Terzyk A P. Carbon, 1994, 32: 265
[15]  Carrasco-Marin F, Mueden A, Moreno-Castilla C. J Phys Chem B, 1998, 102: 9239
[16]  Zawadzki J, Wisniewski M, Weber J, Heintz O, Azambre B. Carbon, 2001, 39: 187
[17]  Clark J H. Acc Chem Res, 2002, 35: 791
[18]  Gregor H P, Hamilton M J, Becher J, Bernstein F. J Phys Chem, 1955, 59: 874
[19]  Dunning T H Jr. J Chem Phys, 1989, 90: 1007
[20]  Stavitskaya S S, Davydov V I, Korvyakov S G. Ukrain Chem J, 1992, 58: 165
[21]  Ryabov S I, Shostka G D, Lukichev B G, Strelko V V, Spiridonov V N, Kartel N T, Scherbitsky A B. Intern Urology Nephrology, 1984, 16: 345
[22]  Onda A, Ochi T, Yanagisava K. Top Catal, 2009, 52: 801
[23]  Qi X H, Guo H X, Li L Y, Smith R L Jr. ChemSucChem, 2012, 5: 2215
[24]  Onda A, Ochi T, Yanagisawa K. Creen Chem, 2008, 10: 1033
[25]  Koutinas A A, Wang R, Webb C. Biotechnol Bioeng, 2004, 85: 524
[26]  Lee D. Molecules, 2013, 18: 8168
[27]  Suganuma S, Nakajima K, Kinato M, Yamaguchi D, Kato H, Hayashi S, Hara M. J Am Chem Soc, 2008, 130: 12787
[28]  Tanabe K, H?lderich W F. Appl Catal A, 1999, 181: 399
[29]  Serp P, Figueiredo J L ed. Carbon Materials for Catalysis. New Jersey: John Wiley & Sons. Inc, 2009. 579
[30]  Puziy A M, Poddubnaya O I, Kochcin Yu N, Vlasenko N V, Tsyba M M. Carbon, 2010, 48: 706
[31]  Hara M, Yoshida T, Takagaki A, Takata T, Kondo J N, Hayashi S, Domen K. Angew Chem Int Ed, 2004, 43: 2955
[32]  Toda M, Takagaki A, Okamura M, Kondo J N, Hayashi S, Domen K, Hara M. Nature, 2005, 438: 178
[33]  Nakajima K, Hara M. ACS Catal, 2012, 2: 1296
[34]  Emrani J, Shahbazi A. J Biotechnol Biomater, 2012, 2: 124
[35]  Clark J H, Budarin V, Dugmore T, Luque R, Macquarrie D J, Strelko V. Catal Commun, 2008, 9: 1709
[36]  Budarin V, Clark J H, Hardy J J E, Luque R, Milkowski K, Taveren S J, Wilson A J. Angew Chem Int Ed, 2006, 45: 3782
[37]  Strazhesko D N, Tovbina Z M, Stavitskaya S S. Ukrain Chim J, 1974, 40: 354
[38]  Tarkovskaya I A, Stavitskaya S S, Strelko V V. Ukrain Chim J, 1983, 49: 16
[39]  Stavitskaya S S, Davydov V I, Strelko V V. Proc Europ Carbon Conferenc “Carbon-96”. New Casle, UK, 1996, 2: 699
[40]  Strelko V V, Stavitskaya S S, Strelko V V Jr, Streat M. Theor Experim Chem, 1998, 34(1): 27
[41]  Contescu A, Contescu C, Putyera K, Schwarz J A. Carbon, 1997, 35: 83
[42]  Lahaye J, Nanse G, Bagreev A, Sterlko V. Carbon, 1999, 37: 585
[43]  Strelko V V. J Energy Chem, 2013, 22: 174
[44]  Strelko V V ed. Selective Sorption and Catalysis on Active Carbon and Inorganic Ion Exangers (Russ). Kiev: Naukova dumka, 2008. 304
[45]  Korvyakov S G, Stavitskaya S S, Davydov V I. Ukrain Chem J, 1993, 59: 926
[46]  Strelko V V, Korovin Yu F, Kartel N T, Shcherbitskii A B. Russ J Appl Chem, 1984, 57: 1225
[47]  Fedorishin A S, Strelko V V, Stavitskaya S S, Yakovlev V I, Tsyba N N, Mil'grandt V G. Russ J Appl Chem, 2010, 83: 281
[48]  Wand L, Zang J, Zhu L F, Meng X J, Xiao F S. J Energ Chem, 2013, 22: 241
[49]  Wang J J, Xu W J, Ren J W, Lin X H, Lu G Z, Wang Y Q. Green Chem, 2011, 13: 2678

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133