Tik:Publications: Difference between revisions
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==Journal Publications== | ==Journal Publications== | ||
#'''Sathitsuksanoh N.''', Holtman K, Yelle D., Morgan t., Stavila V.,Pelton J., Blanch H., Simmons B., and George A. 2014. Lignin fate and characterization during ionic liquid biomass pretreatment for renewable chemicals and fuels production. '''''Green Chem.''''' DOI: 10.1039/c3gc42295j | |||
#'''Sathitsuksanoh N.''', Xu B., Zhao B., Zhang YHP. 2013. Overcoming biomass recalcitrance by combining genetically modified switchgrass and cellulose solvent-based lignocellulose pretreatment. '''''PLOS One.''''' 8(9): e73523 | |||
#Shi J., Gladden J.M., '''Sathitsuksanoh N.''', Kambam P., Sandoval L., Mitra D., Zhang S., George A., Singer S.W., Simmons B.A. and Singh S. 2013. One-pot ionic liquid pretreatment and saccharification of switchgrass. '''''Green Chem.''''' 15, 2579-2589 | |||
#Müller J., MacEachran D., Burd H., '''Sathitsuksanoh N.''', Bi C., Yeh Y.C., Lee TS., Hillson N., Chhabra S., Singer S., and Beller H. 2013. Engineering of Ralstonia eutropha H16 for Autotrophic and Heterotrophic Production of Methyl Ketones. '''''Appl. Environ. Microbiol.''''' 79 (14):4433-9 | |||
#You C., Chen HG., Myung S.,'''Sathitsuksanoh N.''', Ma H., Zhang XZ., Li J., Zhang YHP. 2013. Enzymatic Transformation of Non-Food Cellulosic Materials to Value-Added Amylose. '''''PNAS.''''' 110 (18): 7182-7187 | |||
#Sun N., Liu H., '''Sathitsuksanoh N.''', Sawant M., Bonito A., Tran K.,Stavila V., George A., Sale K., Singh S., Simmons B. and Holmes B. 2013. Acid Catalyzed Hydrolysis of Switchgrass in Ionic Liquid and Separation of Sugars Using Liquid-Liquid Extraction. '''''Biotechnol. Biofuels.''''' 6: 39 | |||
#Groff D., George A., Sun N., '''Sathitsuksanoh N.''', Bokinsky G., Simmons B., Holmes B., Keasling J. 2013. Acid Enhanced Ionic Liquid Pretreatment of Biomass. '''''Green Chem.''''' 15, 1264-1267 | |||
#Xu B., '''Sathitsuksanoh N.''', Tang Y., Udvardi M., Zhang J., Shen Z., Balota M., Harich K., Zhang YHP, Zhao B. 2012. Over-expressing LOV1 induced erect leaf, altered cell wall content and increased water use efficiency in switchgrass. '''''PLOS One.''''' 7(12): e47399 | |||
#Hastrup AC, Howell C., Larsen FH, '''Sathitsuksanoh N.''', Goodell B., and Jellison J. 2012. Differences in crystalline cellulose modification due to degradation by brown and white rot fungi. '''''Fungal Biol.''''' 116(10): 1052-1063 | |||
#'''Sathitsuksanoh N.''', Zhu Z., Zhang YHP. 2012. Cellulose Solvent-Based Pretreatment for Corn Stover and Avicel: Concentrated Phosphoric Acid versus Ionic Liquid [BMIM]Cl. '''''Cellulose.''''' 19(4) 1161-1172 | |||
#'''Sathitsuksanoh N.''', Zhu Z., and Zhang YHP. 2012. Cellulose solvent- and organic solvent-based lignocellulose fractionation enabled efficient sugar release from a variety of lignocellulosic feedstocks. '''''Biores. Technol.''''' 117: 228-233 | |||
#You C., Zhang XZ., '''Sathitsuksanoh N.''', Lynd LR., Zhang YHP. 2012. Ex vivo cellulosome-microbe complexes expedite microbial cellulose utilization rate greatly especially on low-accessibility recalcitrant cellulose. '''''Appl. Environ. Microbiol.''''' 78(5):1437-1444 | |||
#Xue B., Escamilla-Treviño L.L., '''Sathitsuksanoh N.''', Shen Z., Shen H., Zhang YHP, Dixon R., Zhao B., 2011. Silencing of 4-Coumarate: Coenzyme A ligase in switchgrass leads to reduced lignin content and improved fermentable sugar yields for biofuel production. '''''New Phytologist''''' (in press) | #Xue B., Escamilla-Treviño L.L., '''Sathitsuksanoh N.''', Shen Z., Shen H., Zhang YHP, Dixon R., Zhao B., 2011. Silencing of 4-Coumarate: Coenzyme A ligase in switchgrass leads to reduced lignin content and improved fermentable sugar yields for biofuel production. '''''New Phytologist''''' (in press) | ||
#Zhang XZ, '''Sathitsuksanoh N.''', Zhu ZG, Zhang YHP., 2011. One-Step Production of Lactate from Cellulose as Sole Carbon Source without Any Other Organic Nutrient by Recombinant Cellulolytic Bacillus subtilis. '''''Metabolic Engineering''''' (in press) | #Zhang XZ, '''Sathitsuksanoh N.''', Zhu ZG, Zhang YHP., 2011. One-Step Production of Lactate from Cellulose as Sole Carbon Source without Any Other Organic Nutrient by Recombinant Cellulolytic Bacillus subtilis. '''''Metabolic Engineering''''' (in press) | ||
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==Book Chapters== | ==Book Chapters== | ||
#'''Sathitsuksanoh N.''', George A., and Zhang YHP. 2013. New lignocellulose pretreatments by using cellulose solvents: a review. '''''Journal of Chemical Technology and Biotechnology''''' 88(2): 169-180 | |||
#Rollin J., Sathitsuksanoh N., Zhu Z., Zhang YHP. 2011. Chapter X. Cellulose Solvent- and Organic Solvent-based Lignocellulose Fractionation (COSLIF). '''''Wiley Encyclopedia of Energy: Science, Technology, and Applications.''''' John Wiley & Sons. pp.xxxx-xxxx. | #Rollin J., '''Sathitsuksanoh N.''', Zhu Z., Zhang YHP. 2011. Chapter X. Cellulose Solvent- and Organic Solvent-based Lignocellulose Fractionation (COSLIF). '''''Wiley Encyclopedia of Energy: Science, Technology, and Applications.''''' John Wiley & Sons. pp.xxxx-xxxx. | ||
#'''Sathitsuksanoh N'''., Zhu Z., Rollin J., and Zhang P. 2010. Chapter 16. Lignocellulose fractionation by using cellulose solvent and organic solvent in Bioalcohol production: '''''Biochemical conversion of lignocellulosic biomass''''' (ed. by Waldron, K.). Woodhead Publishing Ltd. pp.122-140. | #'''Sathitsuksanoh N'''., Zhu Z., Rollin J., and Zhang P. 2010. Chapter 16. Lignocellulose fractionation by using cellulose solvent and organic solvent in Bioalcohol production: '''''Biochemical conversion of lignocellulosic biomass''''' (ed. by Waldron, K.). Woodhead Publishing Ltd. pp.122-140. | ||
#Zhang YHP., Zhu Z., Rollin J., and '''Sathitsuksanoh N.''' 2009. Chapter 20. Advances in cellulose solvent- and organic solvent-based lignocellulose fractionation (COSLIF) in Cellulose Solvents. '''''ACS Symposium Series 1033'''''. Oxford University Press. pp.365-397. | #Zhang YHP., Zhu Z., Rollin J., and '''Sathitsuksanoh N.''' 2009. Chapter 20. Advances in cellulose solvent- and organic solvent-based lignocellulose fractionation (COSLIF) in Cellulose Solvents. '''''ACS Symposium Series 1033'''''. Oxford University Press. pp.365-397. | ||
#Lu Y., '''Sathitsuksanoh N.''', Yang H.Y., Chang B.K., Queen A.P., and Tatarchuk B.J. 2005. Chapter 25. Microfibrous Entrapped ZnO/Support Sorbents for High Contacting Efficiency H2S Removal from Reformate Streams in PEMFC Applications in Microreactor Technology and Process Intensification (ed. by Holladay, J.D. and Wang, Y.). '''''ACS Symposium Series 914.''''' Oxford University Press. pp.406-422. | #Lu Y., '''Sathitsuksanoh N.''', Yang H.Y., Chang B.K., Queen A.P., and Tatarchuk B.J. 2005. Chapter 25. Microfibrous Entrapped ZnO/Support Sorbents for High Contacting Efficiency H2S Removal from Reformate Streams in PEMFC Applications in Microreactor Technology and Process Intensification (ed. by Holladay, J.D. and Wang, Y.). '''''ACS Symposium Series 914.''''' Oxford University Press. pp.406-422. |
Latest revision as of 22:40, 15 February 2014
Journal Publications
Book Chapters
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