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Titlebook: Consequences of Microbial Interactions with Hydrocarbons, Oils, and Lipids: Production of Fuels and ; Sang Yup Lee Living reference work 2

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Advanced Biodiesel and Biojet Fuels from Lignocellulosic Biomass,ic biomass is considered as a promising resource for the future bioindustry. The plant cell wall is a polymer network comprised largely of the sugar polymers such as cellulose and hemicellulose, and the polyphenolic lignin, and considerable efforts have been made toward the conversion of lignocellul
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Application of Microorganisms to the Processing and Upgrading of Crude Oil and Fractions,s of biotechnology in the oil and energy industry in the future can also be foreseen. The production of biofuels in large volumes is now a reality, although there are some concerns about the use of land, water, and crops to produce fuels. In the oil industry, biotechnology has found its place in bio
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Biodiesel from Microalgae,ch teams, companies, and governments all in the world, as consequence of a necessary reduction of CO. emissions and the need of renewable and affordable energy sources..However, several constraints strongly limit biodiesel production, and its use, basically, is as additive blended with petrodiesel..
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Biomethane as an Energy Source, use biogas as a transport fuel, it must undergo a costly conversion to biomethane (>95% methane). Biomethane can replace natural gas as a clean fuel in vehicles as it produces fewer harmful emissions than petrol, diesel, or LPG in spite of the considerable improvements made to these fuels in recent
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Bioplastics Biotechnology,ed polymers can be classified into three main groups. Bio-based polymers in the first group, e.g., polyhydroxyalkanoates (PHAs), are entirely synthesized by biological processes. Microbial host strains synthesize polymers using monomers produced by their inherent and recombinant metabolic pathways f
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