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[×ÊÔ´] [Sept. 3th, 2009 updated]ÉúÎïÖʵĶàÏà´ß»¯×ª»¯--ÎÒÃǵÄÌôÕ½ºÍδÀ´

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The Transformation of Biomass into Chemicals



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Biodiesel£ºA Realistic Fuel Alternative for Diesel Engines
Ayhan Demirbas
© 2008 by Springer

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Biofuels£º Securing the Planet¡¯s Future Energy Needs
Ayhan Demirbas
© 2009 by Springer

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BIOFUELS: Biotechnology, Chemistry, and Sustainable Development
DAVID M. MOUSDALE
© 2008 by Taylor & Francis Group, LLC CRC

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Catalysis for Renewables: From Feedstock to Energy Production
Gabriele Centi and Rutger A. van Santen
8 2007 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim

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Handbook of Alternative Fuel Technologies
Sunggyu Lee, James G. Speight, Sudarshan K. Loyalka
© 2007 by Taylor & Francis Group, LLC CRC

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Handbook of Plant-Based Biofuels
Ashok Pandey
© 2009 by Taylor & Francis Group, LLC CRC

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Synthetic Fuels Handbook: properties, process, and performance
James G. Speight, Ph.D., D.Sc.
© 2008 by The McGraw-Hill Companies, Inc.

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The Biodiesel Handbook
Gerhard Knothe, Jon Van Gerpen and J¨¹rgen Krahl
© 2005 by AOCS Press.

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Molecular Catalysts for Energy Conversion (Springer Series in materials science 111)
Tatsuhiro Okada, Masao Kaneko
© Springer-Verlag Berlin Heidelberg 2009

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´ß»¯´ÔÊéÉæ¼°ÉúÎïÖÊ´ß»¯×ª»¯µÄÇëµã»÷²¢Í¨¹ýÁ´½ÓÏÂÔØ£º
[´ß»¯¾ÞÖø/Wiley¾«Æ·]Handbook of Heterogeneous Catalysis (8 Volumes, 2nd Edition)
P. Gallezot, A. Kiennemann, in Handbook of Heterogeneous Catalysis, ed. G. Ertl, H. Kn€ozinger, F. Sch€uth, J. Weitkamp, Wiley-VCH, Weinheim, 2008, vol. 5, p. 2447.

ÁìÓòÁì¾üÈËÎProf. Dr. Dumesic£»Prof. Dr. Huber£»Prof. Dr. Corma

Prof. Dr. DumesicÈËÎï½éÉÜÌû×ÓÇëµã»÷Here
Dumesic½ÌÊÚÑо¿ÍŶӼò½éÁí¼û£º
http://www.sciencenet.cn/bbs/showpost.aspx?id=52047

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Nature 2002, 418: 964; Angew Chem IE 2003, 42: 4068; J Catal 2003, 215: 344; Appl Catal B 2003, 43: 13; Catal Lett 2003, 88: 1
Science 2003, 300: 2075; Angew Chem IE 2004, 43: 1549; J Phys Chem B 2005, 109: 2074
Science 2005, 308: 1446; Angew Chem IE 2006, 45: 3982; Appl Catal B 2006, 62: 226
Science (Review) 2006, 311: 484; Science  2006, 312: 1933; Green Chem 2007, 9: 342
Nature 2007, 447: 982; J Mol Catal A 2008, 296: 18; Top Catal 2009, 52: 297
Science 2008, 322: 417; J Catal 2009, 262: 134
Appl Catal B 2002, 39: 353
Chem Commun 2004, 36
J Catal 2004, 222: 180; J Catal 2005, 231: 67; Ind Eng Chem Res 2004, 43: 3105
Appl Catal B 2006, 66: 111
ChemSusChem 2008, 1: 725
ChemSusChem 2008, 1:  417
ChemSusChem 2009, 2: 581; Green Chem In Press
Green Chem 2007, 9: 1073; J Catal 2007, 247: 298; J Catal 2008, 260: 164; Appl Catal B 2009, 90: 693
Catal Commun 2009, 10: 1743
numerous in press articles by Dumesic in: J Catal and Catal Today, et al

Reviews by Prof. Dumesic:
Appl Catal B 2005, 56: 171
Catal Today 2006, 111: 119
Catal Today 2007, 123: 59
Angew Chem Int Ed  2007, 46: 7164

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Prof. Dr. DumesicÉúÎïÖÊת»¯ÀûÓ÷½ÏòËÄ´óµÜ×Ó(ÿÈ˶¼ÓÐNature/Science>1ƪ)²©Ê¿ÂÛÎÄ£º

Dr. Rupalir Davda: 2004 Hydrogen production by aqueous-phase reforming of oxygenated hydrocarbons over supported metal catalysts
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Dr. John William Shabaker: 2004 Hydrogen production by aqueous phase reforming of light oxygenated hydrocarbons
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Prof. Dr. George Willis Huber: 2005 Renewable hydrogen and liquid alkanes from aqueous-phase processing of biomass-derived carbohydrates
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Dr. Juben Nemchand Chheda: 2007 Liquid-phase catalytic processing of biomass-derived carbohydrates to intermediate Furan compounds and liquid alkanes fuel
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Î÷°àÑÀValencia´óѧAvelino Corma Can¨®s ½ÌÊÚ

      Avelino Corma Can¨®s ½ÌÊÚÊǹú¼ÊѧÊõ½ç¹«ÈϵIJÄÁÏ¿ÆÑ§Óë¼¼ÊõÁìÓòºÍ¶àÏà´ß»¯ÁìÓòµÄÖøÃû¿ÆÑ§¼Ò£¬ Î÷°àÑÀ»Ê¼Ò¹¤³ÌԺԺʿ¡¢ÃÀ¹ú¹¤³ÌԺԺʿ¡£ÏÖÈιú¼Ê·Ö×ÓɸЭ»áÖ÷ϯºÍ¹ú¼Ê´ß»¯Ð­»áÀíÊ»ḱÖ÷ϯµÈÖ°Îñ¡£ËûÔÚ¸ÃÁìÓòÒÔ¹²Í¬×÷ÕßÉí·Ý·¢±í´óÔ¼500ƪÂÛÎĺÍ100ƪרÀû£¬ÊÇ¶àÆª×ÛÊöºÍÊé¼®µÄ×÷Õߣ¬Èδ߻¯¡¢ÎïÀí»¯Ñ§¡¢²ÄÁÏ»¯Ñ§µÈÁìÓòÐí¶àÖØÒªÆÚ¿¯µÄ±àί¡£
      Avelino Corma Can¨®s ½ÌÊÚÔÚ²ÄÁϺϳɺʹ߻¯ÁìÓòµÄ¾Þ´ó³É¾ÍΪËûÓ®µÃÁ˺ܸߵÄÉùÍûºÍÐí¶à½±Ïî £¬ÏȺó»ñ¶Å°îвÄÁϽ±¡¢Î÷°àÑÀ¹ú¼ÒLeonardo Torres Quevedo¿Æ¼¼½±¡¢Premio Iberdrola de Qu¨ªmica½±¡¢±±ÃÀ´ß»¯Ñ§»á F. Ciapetta ½±¡¢Î÷±±´óѧIpatieffÑݽ²½±¡¢Rey Jaime I м¼Êõ½±¡¢±±ÃÀ´ß»¯Ñ§»áÓ¦Óô߻¯½±Eugene J. Houdry½±¡¢¹ú¼Ê·Ö×ÓɸЭ»áBreck ½±¡¢Î÷°àÑÀ»Ê¼Ò»¯Ñ§»á½ð½±¡¢Ä«Î÷¸ç¹ú¼Ò¿ÆÑ§¼¼Êõ½±ºÍ·¨¹ú»¯Ñ§»áµÄPaul Sabatier ½±µÈ¶à¸öÖØÒª½±Ïî¡£

      Avelino Corma Canos was born in Monco´far, Spain, in 1951. He studied chemistry at the Universidad de Valencia (1967-1973) and received his Ph.D. at the Universidad Complutense de Madrid in 1976. He was a postdoctoral researcher in the Department of Chemical Engineering at the Queen¡¯s University (Canada, 1977-1979). He has been director of the Instituto de Tecnologı´a Quı´mica (UPV-CSIC) at the Universidad Polite´cnica de Valencia since 1990. His current research field is catalysis, covering aspects of synthesis, characterization, and reactivity in acid-base and redox catalysis. Avelino Corma is coauthor of more than 600 articles and 100 patents on these subjects. He is a member of the editorial boards of the most important journals in the field of catalysis, physical chemistry, and materials chemistry.

Chem Rev ·¢¹ý10ƪÒÔÉÏ×ÛÊöµÄ´óÅ££º
Angew Chem IE 2007, 46: 7184
Chem Rev 2006, 106: 4044
Chem Rev 2007, 107: 2411

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J Catal 2004, 221: 474
J Catal 2007, 247: 307
J Catal 2008, 257: 163
J Catal 2008, 257: 403
J Catal 2009, 265: 109
ChemSusChem 2008, 1:  739
ChemSusChem 2008, 1:  85
ChemSusChem 2009, 2:  500

George W. Huber is the John and Elizabeth Armstrong Professional Development Professor of Chemical Engineering at University of Massachusetts-Amherst. His research focus is on Breaking the Chemical and Engineering Barriers to Lignocellulosic Biofuels. His discovery of Raney¨CNiSn catalyst for hydrogen production from biomass-derived oxygenates was named as one of top 50 technology breakthroughs of 2003 by Scientific America. George is currently working with numerous overnmental and industrial institutions to help make cellulosic biofuels a reality. George did a post-doctoral stay with Avelino Corma at the Technical Chemical Institute at the Polytechnical University of Valencia, Spain (UPV-CSIC) where he studied biofuels production using petroleum refining technologies. He obtained his PhD in Chemical Engineering from University of Wisconsin-Madison (2005) where he helped develop aqueous-phase catalytic processes for biofuels production under the guidance of James A. Dumesic. He obtained his BS (1999) and MS (2000) degrees from Brigham Young University.

ÔÚÍÑÀë¶÷ʦDumesicºÍ²©Ê¿ºóµ¼Ê¦Cormaºóµ¥¸ÉµÄHuberËù·¢µÄÎÄÕ£º
ChemSusChem 2008, 1: 397
Energy Environ Sci 2009, 2: 68
numerous in press articles by Huber in: Green Chem, et al

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PS£ºÎÒÔÚ¡°»¯Ñ§¼Ò¡±·¢Ìûºó£¬Óöµ½ÁËÒ»¸öPMÎҵĵ¹úÂíÆÕÌ¿ËùProf. Ferdi Schueth×éÀïµÄѧÉú,Õâ¸ö½ÌÊÚÃû×ÖÏë±Ø×ö´ß»¯×ö²ÄÁϵͼÊÇÈçÀ×¹á¶ú£¬¸½´Ë½ÌÊڵĹØÓÚÉúÎïÖÊת»¯µÄһƪAngew ºÍEESÐÂÔÓÖ¾·¢µÄ×ÛÊö£¬Çë³æÓÑ×ÔÐÐÏÂÔØ£¬ÎÒ¿´ºóÆÄÓиÐÊÜ£¬´ó¼Ò¾ÍÊÇ´ó¼Ò£¡Ï²»µ½µÄÇëPMÎÒ£¡RCSÊý¾Ý¿âµÄEnergy Environ. Sci., 2009, 2, 610¨C626Õâ¸öÊǹØÓÚÉúÎïÖÊת»¯ÐèҪʲôÑùµÄ´ß»¯²ÄÁϼ°ÆäÈçºÎÉè¼ÆµÄһƪչÍûʽµÄ×ÛÊö£¬R. Rinaldi, R. Palkovits and F. Sch€uth, Angew. Chem., Int. Ed.,
2008, 47, 8047

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Springer;
Wiley(Angew Chem Int Ed, Biof Biop Bior, ChemSusChem)

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louis.troy

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