Biological Conversion of Sugars to Hydrocarbons Technology Pathway
暂无分享,去创建一个
Eric C. D. Tan | Mary J. Biddy | Susanne B. Jones | Eric C. D. Tan | Ling Tao | Ryan Davis | Mary Biddy | Ling Tao | Ryan Davis | S. Jones
[1] Richard L. Hawkins. Utilization of Xylose for Growth by the Eukaryotic Alga, Chlorella , 1999, Current Microbiology.
[2] Min Zhang,et al. Improved ethanol yield and reduced minimum ethanol selling price (MESP) by modifying low severity dilute acid pretreatment with deacetylation and mechanical refining: 2) Techno-economic analysis , 2012, Biotechnology for Biofuels.
[3] Harvey W Blanch,et al. Bioprocessing for biofuels. , 2012, Current opinion in biotechnology.
[4] E. Dedyukhina,et al. A review on microbial synthesis of hydrocarbons , 2006 .
[5] Jay D Keasling,et al. Metabolic engineering of microbial pathways for advanced biofuels production. , 2011, Current opinion in biotechnology.
[6] Jay D. Keasling,et al. Identification and microbial production of a terpene-based advanced biofuel , 2011, Nature communications.
[7] Ling Tao,et al. Improved ethanol yield and reduced Minimum Ethanol Selling Price (MESP) by modifying low severity dilute acid pretreatment with deacetylation and mechanical refining: 1) Experimental , 2012, Biotechnology for Biofuels.
[8] Ryan Davis,et al. Process Design and Economics for Biochemical Conversion of Lignocellulosic Biomass to Ethanol: Dilute-Acid Pretreatment and Enzymatic Hydrolysis of Corn Stover , 2011 .
[9] T. Foust,et al. Technoeconomic analysis of the dilute sulfuric acid and enzymatic hydrolysis process for the conversion of corn stover to ethanol , 2009 .
[10] Qingyu Wu,et al. Large‐scale biodiesel production from microalga Chlorella protothecoides through heterotrophic cultivation in bioreactors , 2007, Biotechnology and bioengineering.
[11] A. Schirmer,et al. Microbial Biosynthesis of Alkanes , 2010, Science.
[12] Y.‐H.P. Zhang,et al. Analysis of biofuels production from sugar based on three criteria: Thermodynamics, bioenergetics, and product separation , 2011 .
[13] Brian F Pfleger,et al. Microbial production of fatty acid-derived fuels and chemicals. , 2013, Current opinion in biotechnology.
[14] J. Keasling,et al. Microbial production of fatty-acid-derived fuels and chemicals from plant biomass , 2010, Nature.
[15] Andreas Schirmer,et al. New microbial fuels: a biotech perspective. , 2009, Current opinion in microbiology.
[16] 尼尔·斯蒂芬·伦宁格,et al. Fuel compositions comprising farnesane and farnesane derivatives and method of making and using same , 2007 .
[17] James M Clomburg,et al. Engineered reversal of the β-oxidation cycle for the synthesis of fuels and chemicals , 2011, Nature.
[18] S. Jonjić,et al. Modulation of natural killer cell activity by viruses. , 2010, Current opinion in microbiology.
[19] Tiangang Liu,et al. Genetic engineering of Escherichia coli for biofuel production. , 2010, Annual review of genetics.
[20] Gregory Stephanopoulos,et al. Xylose isomerase overexpression along with engineering of the pentose phosphate pathway and evolutionary engineering enable rapid xylose utilization and ethanol production by Saccharomyces cerevisiae. , 2012, Metabolic engineering.