TÀI L IU THAM KHO Ả

Một phần của tài liệu Luận văn: “ NGHIÊN CỨU CÔNG NGHỆ VÀ THIẾT BỊ LIÊN TỤC XỬ LÝ RƠM RẠ BẰNG HƠI NƯỚC ĐỂ LÊN MEN ETHANOL” ppt (Trang 29)

[1] Tr n Di u Lý. 2008. ầ ệ Nghiên c u s n xu t ethanol nhiên li u t r m rứ ả ệ ừ ơ . Đ tài t t nghi pề ố ệ

đ i h c, khoa K thu t hóa h c, Đ i h c Bách Khoa Thành ph H Chí Minh.ạ ọ ỹ ậ ọ ạ ọ ố ồ

[2] Nguy n Xuân B o. 2008. ễ ả Nghiên c u s n xu t ethanol nhiên li u t v tr uứ ệ ừ ỏ ấ . Đ tài t tề ố

nghi p đ i h c, khoa K thu t hóa h c, Đ i h c Bách Khoa Thành ph H Chí Minh.ệ ạ ọ ỹ ậ ọ ạ ọ ố ồ

[3] Ngô Đình Minh Hi p. 2008. ệ Nghiên c u s n xu t ethanol nhiên li u t r m rứ ệ ừ ơ . Đ tàiề

th c s , khoa K thu t hóa h c, Đ i h c Bách Khoa Thành ph H Chí Minh.ạ ỹ ỹ ậ ọ ạ ọ ố ồ

[4] http://vi.wikipedia.org

[5] J. N. de Vasconcelos et al. 2004. Continuos ethanol production using yeast immobilized on sugar-cane stalks. Brazilian Journal of Chemical Engineering. 357-365

[6] http://faostat.fao.org/

[7] http://www.vietnamships.com/news/?id=2066 [8] http://en.wikipedia.org/wiki/Vietnam

[9] D.R. Cohn, L. Bromberg, J.B. Heywood Efficiency Improvements Associated with Ethanol- Fueled Spark-Ignition Engines

[10] Smith, William. D. “Price Quadruples for Iranian Crude Oil at Auction”, New York Times 12 Dec 1973.

[11] Lovins. A.B. (2005). Winning the Oil Endgame, p. 105.

[12] Yukihiko Matsumuraa, Tomoaki Minowab, Hiromi Yamamoto, Amount, availability, and potential use of rice straw (agricultural residue) biomass as an energy resource in Japan, 2005 [13] Keikhosro Karimi a,b, Giti Emtiazi c, Mohammad J. Taherzadeh d, Ethanol production from dilute-acid pretreated rice straw by simultaneous saccharification and fermentation with Mucor indicus,Rhizopus oryzae, and Saccharomyces cerevisiae, 2006

[14] Keikhosro Karimia, Shauker Kheradmandiniaa, Mohammad J. Taherzadehb, Conversion of rice straw to sugars by dilute-acid hydrolysis, 2004

[15] Yoshitoshi Nakamura, Tatsuro Sawada1, Eiichi Inoue, Enhanced ethanol production from enzymatically treated steam-exploded rice straw using extractive fermentation , 2001

[16] Mohammet Moniuzaman, Effect of Steam Explosion on the Physicochemical Properties and Enzymatic Saccharification of Rice Straw, 1996

[17] Haagensen F., Ahring B.K., Enzymatic hydrolysis and glucose fermentation of wet oxidized sugarcane bagasse and rice straw for bioethanol production, Environment Microbiology & Biotechnology Research Group, Technical University of Denmark.

[18] Seungdo Kim, Bruce E. Dale, Global potential bioethanol production from wasted crops, Science Direct, Biomass and Bioenergy 26, 2004, p.361-375.

[19] Jeibing li, Gunnar Henriksson, Goran Gellerstedt, Lignin depolymerization/ repolymerization and its critical role for deligninfication of aspen wood by steam exposion, Science Direct, Bioresource Technology 98, 2007, p. 3061-3068 .

[20] Muhammad Ibrahim Rajoka, The enzymatic hydrolysis and fermentation of pretreated wheat straw and bagasse to ethanol, ATDF Journal Volume 2, Issue 2, p.29-35

[21] Ghasem Najafpour, Habibollah Younesi, Ku Syahidah Ku Ismail, Ethanol fermentation in an immobilized cell reactor, Science Direct, Bioresource Technology 92, 2004, p.251-260. [22] Luiz Pereira Ramous, The chemistry involved in the steam treatment of lignocellulosic materials, Quin. Nova, 2003.

[23] Karin Ohgren, Oskar Bengtsson, Marie F.Gorwa-Grauslund, Simultaneous saccharification and co-fermentation of glucose and xylose in steam-pretreated corn stover at high fiber content with Saccharomyces cerevisiae TMB3400, Science Direct.

[24] Jesper Norgard, Ethanol production from biomass – optimization of simultaneous saccharification and fermentation with respect to stirring and heating, Department of Chemical engineering, Lund Institute of Technology.

Một phần của tài liệu Luận văn: “ NGHIÊN CỨU CÔNG NGHỆ VÀ THIẾT BỊ LIÊN TỤC XỬ LÝ RƠM RẠ BẰNG HƠI NƯỚC ĐỂ LÊN MEN ETHANOL” ppt (Trang 29)