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Titlebook: Biotechnology for Environmental Management andResource Recovery; Ramesh Chander Kuhad,Ajay Singh Book 2013 Springer India 2013 Bioremediat

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Microorganisms and Enzymes Involved in Lignin Degradation Vis-à-vis Production of Nutritionally Richell wall consists of three major polymers: cellulose, hemicellulose, and lignin. Lignocellulose biomass, available in huge quantity, has attracted considerable attention as an alternate resource for pulp and paper, fuel alcohol, chemicals, and protein for food and feed using microbial bioconversion
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Rhizobacteria in Management of Agroecosystem. A promising approach has been employed to understand how natural selection regulates changes in mutualistic interactions. A descriptive knowledge of basic evolutionary processes can be employed to develop agricultural management practices that favor the most effective symbionts. Mutually beneficia
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Cellulases and Their Biotechnological Applicationsbe a feasible solution. The depolymerisation of cellulose by a group of enzyme cellulases could potentially lead to the development of various value-added products. Due to their immense potential, cellulases are involved in various industrial and biotechnological applications related to pulp and pap
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Microbial Pectinases and Their Applicationsars. Among them, pectinolytic enzymes are of great significance and are one of the most important enzymes of the commercial sector. Microbial pectinases can be produced from bacteria, actinomycetes, yeasts and fungi. Pectinases are being used in several conventional industrial processes, such as fru
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Biofuels: The Environment-Friendly Energy Carriersfor alternative and sustainable energy carriers such as biofuels. Worldwide, the laboratories are engaged in extensive research for the development of different biofuels such as bioethanol, biodiesel, biohydrogen, biogas and advanced bioalcohols. This chapter provides an overview of bioprocessing of
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