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      Biobutanol production from sustainable biomass process of anaerobic ABE fermentation for industrial applications

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          Natural fiber reinforced polymer composites in industrial applications: feasibility of date palm fibers for sustainable automotive industry

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            Pretreatment methods of lignocellulosic biomass for anaerobic digestion

            Agricultural residues, such as lignocellulosic materials (LM), are the most attractive renewable bioenergy sources and are abundantly found in nature. Anaerobic digestion has been extensively studied for the effective utilization of LM for biogas production. Experimental investigation of physiochemical changes that occur during pretreatment is needed for developing mechanistic and effective models that can be employed for the rational design of pretreatment processes. Various-cutting edge pretreatment technologies (physical, chemical and biological) are being tested on the pilot scale. These different pretreatment methods are widely described in this paper, among them, microaerobic pretreatment (MP) has gained attention as a potential pretreatment method for the degradation of LM, which just requires a limited amount of oxygen (or air) supplied directly during the pretreatment step. MP involves microbial communities under mild conditions (temperature and pressure), uses fewer enzymes and less energy for methane production, and is probably the most promising and environmentally friendly technique in the long run. Moreover, it is technically and economically feasible to use microorganisms instead of expensive chemicals, biological enzymes or mechanical equipment. The information provided in this paper, will endow readers with the background knowledge necessary for finding a promising solution to methane production.
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              Hydrothermal carbonization of renewable waste biomass for solid biofuel production: A discussion on process mechanism, the influence of process parameters, environmental performance and fuel properties of hydrochar

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                Author and article information

                Journal
                Archives of Microbiology
                Arch Microbiol
                Springer Science and Business Media LLC
                0302-8933
                1432-072X
                November 2022
                October 17 2022
                November 2022
                : 204
                : 11
                Article
                10.1007/s00203-022-03284-z
                36251102
                a98c7b7f-c0dd-4621-9560-3de29359ed91
                © 2022

                https://www.springer.com/tdm

                https://www.springer.com/tdm

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