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Titlebook: Microbial Biotechnology for Renewable and Sustainable Energy; Jitendra Kumar Saini,Rajesh K Sani Book 2022 The Editor(s) (if applicable) a

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Co-Digestion of Lignocellulosic Wastes with Food Waste for Sustainable Biogas Production,anic loading rates leads to the accumulation of higher volatile fatty acids, the process becomes unstable. This chapter provides state-of-the-art knowledge on the current status of mono-anaerobic digestion of LW and FW for sustainable biogas production, limitations such as pretreatment, low organic
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,Understanding the Potential Applications of Biofilms as Industrial “Cell Factories”,positioned them as “cell factories” for sustainable production of certain commercial value biofuels, organic acids, vitamins, amino acids, bioplastics, and also enzymes. Further, biofilms have proven themselves useful for the treatment of soil and water against recalcitrant organic pollutants and to
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Role of Metabolic Engineering and Synthetic Biology in the Development of Microbes for Biofuel Prodilarly, third-generation biofuels that are produced from microalgae also need much innovation before it can be commercially realized. In recent years, the rapid development in the field of metabolic engineering and synthetic biology for microorganisms like bacteria, yeast, cyanobacteria, fungi, and
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New Trends and Commercial Aspects of Enzymatic Saccharification of Lignocellulosic Biomass,quire the destruction of biomass. The relationship between the different types of biofuels is the search for the saccharification process, which is a process in which a polysaccharide is transformed into fermentable sugar. Enzymatic hydrolysis is a type of saccharification in which the process is ca
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