Reaction network flux analysis: Optimization‐based evaluation of reaction pathways for biorenewables processing
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[1] Rafiqul Gani,et al. SEPARATION PROCESS DESIGN AND SYNTHESIS BASED ON THERMODYNAMIC INSIGHTS , 1995 .
[2] Martyn Poliakoff,et al. Sustainable technology: Green chemistry , 2007, Nature.
[3] François Maréchal,et al. Methodology for the optimal thermo-economic, multi-objective design of thermochemical fuel production from biomass , 2009, Comput. Chem. Eng..
[4] Mahmoud M. El-Halwagi,et al. A property-based approach to the synthesis of material conservation networks with economic and environmental objectives , 2011 .
[5] B. Palsson,et al. The underlying pathway structure of biochemical reaction networks. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[6] M. Karelson,et al. Quantum-Chemical Descriptors in QSAR/QSPR Studies. , 1996, Chemical reviews.
[7] Wolfgang Marquardt,et al. Towards an integrated design of biofuels and their production pathways , 2010, Comput. Chem. Eng..
[8] Hans Mooibroek,et al. Bio-refinery as the bio-inspired process to bulk chemicals. , 2007, Macromolecular bioscience.
[9] Joseph J. Bozell,et al. Connecting Biomass and Petroleum Processing with a Chemical Bridge , 2010, Science.
[10] Jean-Paul Lange,et al. Fuels and Chemicals Manufacturing; Guidelines for Understanding and Minimizing the Production Costs , 2001 .
[11] Jim Pfaendtner,et al. Lexicography of kinetic modeling of complex reaction networks , 2005 .
[12] GARRET SWART,et al. Finding the Convex Hull Facet by Facet , 1985, J. Algorithms.
[13] I. Grossmann,et al. Recursive MILP model for finding all the alternate optima in LP models for metabolic networks , 2000 .
[14] E. Maginn,et al. Historical Perspective and Current Outlook for Molecular Dynamics As a Chemical Engineering Tool , 2010 .
[15] Wolfgang Marquardt,et al. Targeted QSPR for the prediction of the laminar burning velocity of biofuels , 2010, Comput. Chem. Eng..
[16] T. H. Matheiss,et al. A Survey and Comparison of Methods for Finding All Vertices of Convex Polyhedral Sets , 1980, Math. Oper. Res..
[17] K. Joback,et al. ESTIMATION OF PURE-COMPONENT PROPERTIES FROM GROUP-CONTRIBUTIONS , 1987 .
[18] Vassily Hatzimanikatis,et al. Computational framework for predictive biodegradation , 2009, Biotechnology and bioengineering.
[19] Jean-Paul Lange,et al. Valeric biofuels: a platform of cellulosic transportation fuels. , 2010, Angewandte Chemie.
[20] Anders Hammer Strømman,et al. Production of Biofuels and Biochemicals from Lignocellulosic Biomass: Estimation of Maximum Theoretical Yields and Efficiencies Using Matrix Algebra , 2010 .
[21] Wolfgang Marquardt,et al. Selective and flexible transformation of biomass-derived platform chemicals by a multifunctional catalytic system. , 2010, Angewandte Chemie.
[22] D. Bonvin,et al. Towards Design of Reaction Paths , 1994 .
[23] Prodromos Daoutidis,et al. Continuous production of 5-hydroxymethylfurfural from fructose: a design case study , 2010 .
[24] Steffen Klamt,et al. Two approaches for metabolic pathway analysis? , 2003, Trends in biotechnology.
[25] Linda J. Broadbelt,et al. Computational discovery of biochemical routes to specialty chemicals , 2004 .
[26] D. Fell,et al. A general definition of metabolic pathways useful for systematic organization and analysis of complex metabolic networks , 2000, Nature Biotechnology.
[27] R. Heinrich,et al. Metabolic Pathway Analysis: Basic Concepts and Scientific Applications in the Post‐genomic Era , 1999, Biotechnology progress.
[28] Konrad Hungerbühler,et al. Decision framework for chemical process design including different stages of environmental, health, and safety assessment , 2008 .
[29] K. Vorlop,et al. Biotechnological production of itaconic acid , 2001, Applied Microbiology and Biotechnology.
[30] M. Huijbregts,et al. Cumulative energy demand as predictor for the environmental burden of commodity production. , 2010, Environmental science & technology.
[31] I. Grossmann,et al. Optimization of Energy and Water Consumption in Corn-Based Ethanol Plants , 2010 .
[32] Jorge A. Marrero,et al. Group-contribution based estimation of pure component properties , 2001 .
[33] Roumiana P. Stateva,et al. Structurally "Targeted" Quantitative Structure -Property Relationship Method for Property Prediction , 2006 .
[34] Mathis Wackernagel,et al. The Ecological Footprint: an Indicator of Progress Toward Regional Sustainability , 1998 .
[35] A. Corma,et al. Chemical routes for the transformation of biomass into chemicals. , 2007, Chemical reviews.
[36] Wolfgang Marquardt,et al. Separation of butanol from acetone-butanol-ethanol fermentation by a hybrid extraction-distillation process , 2011, Comput. Chem. Eng..
[37] Frank Taylor,et al. Determining the Cost of Producing Ethanol from Corn Starch and Lignocellulosic Feedstocks , 2000 .
[38] B. G. Hermann,et al. Today’s and tomorrow’s bio-based bulk chemicals from white biotechnology , 2007, Applied biochemistry and biotechnology.
[39] Wolfgang Marquardt,et al. The biorenewables opportunity ‐ toward next generation process and product systems , 2010 .
[40] A. Corma,et al. Synthesis of transportation fuels from biomass: chemistry, catalysts, and engineering. , 2006, Chemical reviews.
[41] Joshua D. Moore,et al. Molecular Modeling of Matter: Impact and Prospects in Engineering , 2010 .