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1.
Bioresour Technol ; 289: 121699, 2019 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-31323726

RESUMEN

In this work, we propose a Mixed Integer Nonlinear Programming (MINLP) model to determine the optimal design of a poly(hydroxyalkanoate)s (PHAs) production plant configuration. The superstructure based optimization model considers different carbon sources as raw material: glycerol (crude and purified), corn starch, cassava starch, sugarcane sucrose and sugarcane molasses. The PHA extraction section includes four alternatives: the use of enzyme, solvent, surfactant-NaOCl or surfactant-chelate. Model constraints include detailed capital cost for equipment, mass and energy balances, product specifications and operating bounds on process units. The resulting MINLP model maximizes the project net present value (NPV) as objective function and it is implemented in an equation oriented environment. Optimization results show the sugarcane-enzyme option as the most promising alternative (NPV = 75.01 million USD) for PHAs production with an energy consumption of 22.56 MJ/kg PHA and a production cost of 3.02 USD/kg PHA. Furthermore, an economic sensitivity analysis is performed.


Asunto(s)
Polihidroxialcanoatos/biosíntesis , Carbono/metabolismo , Glicerol/metabolismo , Melaza , Almidón/metabolismo
2.
Biotechnol Bioeng ; 116(8): 2061-2073, 2019 08.
Artículo en Inglés | MEDLINE | ID: mdl-31034583

RESUMEN

Cyanobacteria have been considered as promising candidates for sustainable bioproduction from inexpensive raw materials, as they grow on light, carbon dioxide, and minimal inorganic nutrients. In this study, we present a genome-scale metabolic network model for Synechocystis sp. PCC 6803 and study the optimal design of the strain for ethanol production by using a mixed integer linear problem reformulation of a bilevel programming problem that identifies gene knockouts which lead to coupling between growth and product synthesis. Five mutants were found, where the in silico model predicts coupling between biomass growth and ethanol production in photoautotrophic conditions. The best mutant gives an in silico ethanol production of 1.054 mmol·gDW -1 ·h -1 .


Asunto(s)
Biocombustibles , Etanol/metabolismo , Synechocystis/genética , Synechocystis/metabolismo , Técnicas de Inactivación de Genes , Microbiología Industrial , Redes y Vías Metabólicas , Microorganismos Modificados Genéticamente , Modelos Biológicos
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