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Titlebook: Microbial Applications Vol.2; Biomedicine, Agricul Vipin Chandra Kalia Book 2017 Springer International Publishing AG 2017 Applied microbio

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Biological Routes for the Synthesis of Platform Chemicals from Biomass Feedstocksces as compared to fossil fuel-based methods. Technologies relying only on chemical catalytic routes have shown limitations in achieving the desired yield of a product molecule. Therefore, recent developments in research have emphasized the importance of integrating a biocatalytic route to a chemo-c
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Green Synthesis of Hydroxamic Acid and Its Potential Industrial Applicationss of several useful compounds. Generally, hydroxamic acids are synthesized through chemical route by N-alkylation of simple O-substituted hydroxylamine with a variety of alkylating agents. However, large-scale synthesis of hydroxamic acids by chemical route is not only expensive, but the product als
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Fungi Imperfecti Laccase: Biotechnological Potential and Perspectivesroduced by plant, bacteria, insects, and fungi. Among the fungi, laccase is produced by many sexually reproducing fungal species and occupied their position in established taxonomic classifications of fungi. In contrast, laccase is also produced by other asexually reproducing fungi. These are called
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Biosurfactants: A Multifunctional Microbial Metaboliteants have emerged as the most versatile product of the modern microbial biotechnology. Owing to its biodegradable nature, it has been considered as “green chemical.” Recently, increasing awareness toward sustainable ecosystem and environmental protection has resulted in a concerted research in biosu
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Microbial Synthesis of Polyhydroxyalkanoates: Diversification plastics, polyhydroxyalkanoates (PHAs) can be entirely synthesized by microorganisms via a series of enzymatic reactions from bio-renewable feedstocks. The bio-based PHA exhibits the similar physical properties to petroleum-based polymers. The PHA material properties strongly rely upon the number o
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Microbe-Derived Itaconic Acid: Novel Route to Biopolyamidescid is widely used for the production of resins, biofuel components, pharmaceutical products, artificial glass, plastics and in the textile industry and agriculture. Because many potentially useful substances can be prepared from this organic acid it can be considered a platform chemical. Using biot
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