US 6177575B1
· Arduengo, III et al.
· 2001
[cited by applicant]
US 7985567B2
· Chou et al.
· 2011
[cited by applicant]
US 8420833B2
· Katz et al.
· 2013
[cited by applicant]
US 8852902B2
· Katz et al.
· 2014
[cited by applicant]
US 9109175B2
· Lee et al.
· 2015
[cited by applicant]
US 9200298B2
· Lee et al.
· 2015
[cited by applicant]
US 9322042B2
· Sapra et al.
· 2016
[cited by applicant]
US 9334514B2
· Fortman et al.
· 2016
[cited by applicant]
US 9376691B2
· Peralta-Yahya et al.
· 2016
[cited by applicant]
US 9376728B2
· Zhang et al.
· 2016
[cited by applicant]
US 9382553B2
· Kirby et al.
· 2016
[cited by applicant]
US 9624482B2
· Sapra et al.
· 2017
[cited by applicant]
US 9631210B2
· Chou et al.
· 2017
[cited by applicant]
US 9725749B2
· Chen et al.
· 2017
[cited by applicant]
US 9765044B2
· Socha et al.
· 2017
[cited by applicant]
US 9803182B2
· Gladden et al.
· 2017
[cited by applicant]
US 9862982B2
· Zhang et al.
· 2018
[cited by applicant]
US 9951345B2
· Steen et al.
· 2018
[cited by applicant]
US 20200216863A1
· Xu et al.
· 2020
[cited by applicant]
WO 2009006386A2
· 2009
[cited by applicant]
WO 2009006429A1
· 2009
[cited by applicant]
WO 2009006430A1
· 2009
[cited by applicant]
WO 2009134899A2
· 2009
[cited by applicant]
WO 2010124266A2
· 2010
[cited by applicant]
WO 2010127318A2
· 2010
[cited by applicant]
WO 2012050931A2
· 2012
[cited by applicant]
WO 2012058686A2
· 2012
[cited by applicant]
WO 2012064740A1
· 2012
[cited by applicant]
WO 2012071439A1
· 2012
[cited by applicant]
WO 2012135389A2
· 2012
[cited by applicant]
WO 2012151214A1
· 2012
[cited by applicant]
WO 2014093402A2
· 2014
[cited by applicant]
WO 2015013674A1
· 2015
[cited by applicant]
WO 2016070125A1
· 2016
[cited by applicant]
WO 2016105538A1
· 2016
[cited by applicant]
WO 2017087982A2
· 2017
[cited by applicant]
WO 2017091781A1
· 2017
[cited by applicant]
WO 2017214159A1
· 2017
[cited by applicant]
WO 2017214332A1
· 2017
[cited by applicant]
WO 2018119152A1
· 2018
[cited by applicant]
WO 2018200888A1
· 2018
[cited by applicant]
WO 2018204424A1
· 2018
[cited by applicant]
WO 2019050990A1
· 2019
[cited by applicant]
Trulea, A., et al. “Ensiling sweet sorghum and maize stalks as feedstock for renewable energy production.” Research Journal of Agricultural Science 45.3 (2013). (Year: 2013).
[cited by examiner]
Xu, Guo-Chao, et al. “Enhancing cellulose accessibility of corn stover by deep eutectic solvent pretreatment for butanol fermentation.” Bioresource technology 203 (2016): 364-369. (Year: 2016).
[cited by examiner]
Rooke, John A. and Hatfield, Ronald D., “Biochemistry of Ensiling” (2003). Publications from USDA-ARS / UNL Faculty. 1399. (Year: 2003).
[cited by examiner]
Sun et al., “One-Pot Integrated Biofuel Production Using Low-Cost Biocompatible Protic Ionic Liquids.” Green Chem. 19 (13), 3152-3163) (2017).
[cited by applicant]
Greaves et al. “Protic Ionic Liquids: Properties and Applications” Chem. Rev. 108(1):206-237 (2008).
[cited by applicant]
Chen et al. “Distillable Ionic Liquids: reversible Amide O Alkylation”, Angewandte Comm. 52:13392-13396 (2013).
[cited by applicant]
King et al. “Distillable Acid-Base Conjugate Ionic Liquids for Cellulose Dissolution and Processing”, Angewandte Comm. 50:6301-6305 (2011).
[cited by applicant]
Vijayaraghavan et al. “CO2-based Alkyl Carbamate Ionic Liquids as Distillable Extraction Solvents”, ACS Sustainable Chem. Engin. 2:31724-1728 (2014).
[cited by applicant]
Idris et al. “Distillable Protic Ionic Liquids for Keratin Dissolution and Recovery”, ACS Sustainable Chem. Engin. 2:1888-1894 (2014).
[cited by applicant]
Huber et al., “Synergies between Bio- and Oil Refineries for the Production of Fuels from Biomass” Angew Chem Int Ed Engl, 46, 7184-7201 (2007).
[cited by applicant]
Wyman et al., “Coordinated development of leading biomass pretreatment technologies” Bioresour. Technol., 96, 1959-1966 (2005).
[cited by applicant]
Elgharbawy et al., “Ionic liquid pretreatment as emerging approaches for enhanced enzymatic hydrolysis of lignocellulosic biomass” Biochem. Eng. J., 2016, 109, 252-267 (2016).
[cited by applicant]
Alonso et al., “Catalytic conversion of biomass to biofuels” Green Chem., 2010, 12, 1493 (2010).
[cited by applicant]
Lynd et al., “Biocommodity Engineering” Biootechnol. Prog., 15, 777-793 (1999).
[cited by applicant]
Wyman, Handbook on bioethanol: production and utilization, “Ethanol Production from Lignocellulosic Biomass: Overview”, Routledge, pp. 1-18 (2018).
[cited by applicant]
Kim, “Physico-Chemical Conversion of Lignocellulose: Inhibitor Effects and Detoxification Strategies: A Mini Review” Molecules, 2018, 23 (2018), 21 pages.
[cited by applicant]
Linden et al., “Physico-Chemical Conversion of Lignocellulose: Inhibitor Effects and Detoxification Strategies: A Mini Review” Biotechnol. Bioeng., 30, 860-867 (1987).
[cited by applicant]
Podkówka et al., “Chemical composition and quality of sweet sorghum and maize silages” J. Cent. Eur. Agric., 12, 294-303 (2011).
[cited by applicant]
Stefaniak et al., “Variation in Biomass Composition Components among Forage, Biomass, Sorghum-Sudangrass, and Sweet Sorghum Types”, Crop Sci., 52, 1949-1954 (2012).
[cited by applicant]
Chen et al., “Ensiling Agricultural Residues for Bioethanol Production” Appl. Biochem. Biotechnol., 143, 80-92 (2007).
[cited by applicant]
Oleskowicz-Popiel et al., “Ensiling e Wet-storage method for lignocellulosic biomassfor bioethanol production” Biomass and Bioenergy, 35, 2087-2092 (2011).
[cited by applicant]
Ambye-Jensen et al., “Ensiling of wheat straw decreases the required temperature in hydrothermal pretreatment” Biotechnol. Biofuels, 6, 116 (2013).
[cited by applicant]
Ambye-Jensen et al., “Combined ensiling and hydrothermal processing as efficient pretreatment of sugarcane bagasse for 2G bioethanol production” Biotechnol. Biofuels, 11, 336 (2018).
[cited by applicant]
Kawahata et al., “Yeast genes involved in response to lactic acid and acetic acid: acidic conditions caused by the organic acids in
[cited by applicant]
Ullah et al., “Quantitative Analysis of the Modes of Growth Inhibition by Weak Organic Acids in
[cited by applicant]
Sundstrom et al., “Demonstrating a separation-free process coupling ionic liquid pretreatment, saccharification, and fermentation with Rhodosporidium toruloides to produce advanced biofuels”, Green Chem., 20, 2870-2879 …
[cited by applicant]
Sun et al., “One-pot integrated biofuel production using low-cost biocompatible protic ionic liquids”, Green Chem., 19, 3152-3163 (2017).
[cited by applicant]
Rodriguez et al., “Conversion of depolymerized sugars and aromatics from engineered feedstocks by two oleaginous red yeasts” Bioresour. Technol., 86, 121365 (2019).
[cited by applicant]
Mansfield et al., “Whole plant cell wall characterization using solution-state 2D NMR”, Nat. Protoc., 7, 1579-1589 (2012).
[cited by applicant]
Baral et al., “Techno-economic analysis and life-cycle greenhouse gas mitigation cost of five routes to bio-jet fuel blendstocks”, Energy Environ. Sci., 12, 807-824 (2019).
[cited by applicant]
Neupane et al., “Life-Cycle Greenhouse Gas and Water Intensity of Cellulosic Biofuel Production Using Cholinium Lysinate Ionic Liquid Pretreatment”, Chem. Eng., 5, 10176-10185 (2017).
[cited by applicant]
Baral et al., “Greenhouse Gas Footprint, Water-Intensity, and Production Cost of Bio-Based Isopentenol as a Renewable Transportation Fuel”, ACS Sustain. Chem. Eng., 7, 15434-15444 (2019).
[cited by applicant]
Baral et al., “Probabilistic Lifecycle Assessment of Butanol Production from Corn Stover Using Different Pretreatment Methods”, Environ. Sci. Technol., 52, 14528-14537 (2018).
[cited by applicant]
Xu et al., “Transforming biomass conversion with ionic liquids: process intensification and the development of a high-gravity, one-pot process for the production of cellulosic ethanol”, Energy Environ. Sci., 9, 1042-104…
[cited by applicant]
Shi et al., “One-pot ionic liquid pretreatment and saccharification of switchgrass”, Green Chem., 15, 2579-2589 (2013).
[cited by applicant]
Xu et al., “Enzymatic hydrolysis and fermentability of corn stover pretreatedby lactic acid and/or acetic acid”, J Biotechnol., 2009, 139, 300-305 (2009).
[cited by applicant]
Johnson et al., “Natural acetylation impacts carbohydrate recovery during deconstruction of Populus trichocarpa wood”, Biotechnol. Biofuels, 10, 48 (2017), 12 pages.
[cited by applicant]
Sun et al., “Understanding pretreatment efficacy of four cholinium and imidazolium ionic liquids by chemistry and computation”, Green Chem., 16, 2546-2557 (2014).
[cited by applicant]
Papa et al., “Development of an integrated approach for a-pinene recovery and sugar production from loblolly pine using ionic liquids”, Green Chem., 19, 1117-1127 (2017).
[cited by applicant]
Masri et al.,“A sustainable, high-performance process for the economic production of waste-free microbial oils that can replace plant-based equivalents”, Energy Environ. Sci. 12, 2717-2732 (2019).
[cited by applicant]