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Titlebook: Laccases in Bioremediation and Waste Valorisation; Dietmar Schlosser Book 2020 Springer Nature Switzerland AG 2020 Bioremediation.Bacteria

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书目名称Laccases in Bioremediation and Waste Valorisation
编辑Dietmar Schlosser
视频video
概述Provides examples of novel applications for bacterial and fungal laccases in wastewater treatment.Highlights combined treatment with laccases and potentially collaborating enzymes.Shares practical tip
丛书名称Microbiology Monographs
图书封面Titlebook: Laccases in Bioremediation and Waste Valorisation;  Dietmar Schlosser Book 2020 Springer Nature Switzerland AG 2020 Bioremediation.Bacteria
描述.This Microbiology Monographs volume covers the latest advances in laccase applications in bioremediation and waste valorisation. The first three chapters provide a comprehensive introduction to fungal and bacterial laccases (the two most important enzyme groups from an application viewpoint) and their practical use in bioremediation and lignocellulosic waste valorisation. Subsequent chapters discuss possible combinations of laccases and further potentially collaborating enzymes, and offer in-depth insights into laccase immobilisation for wastewater treatment and environmental biosensor applications of laccases. Lastly, the book addresses the quest for enzymes with improved and better-fitting properties, covering laccase engineering by directed and computational evolution, and novel enzymes from extreme environments. As such, it is a fascinating read for microbiologists in both industry and academia. .
出版日期Book 2020
关键词Bioremediation; Bacterial Laccases; Fungal Laccases; Pharmaceutical Compounds; Water Contamination; Waste
版次1
doihttps://doi.org/10.1007/978-3-030-47906-0
isbn_softcover978-3-030-47908-4
isbn_ebook978-3-030-47906-0Series ISSN 1862-5576 Series E-ISSN 1862-5584
issn_series 1862-5576
copyrightSpringer Nature Switzerland AG 2020
The information of publication is updating

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https://doi.org/10.1007/978-3-030-47906-0Bioremediation; Bacterial Laccases; Fungal Laccases; Pharmaceutical Compounds; Water Contamination; Waste
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Fungal Laccases and Their Potential in Bioremediation Applications,anopollutants with structural similarities to lignin can also be degraded by these enzymes, i.e., laccases and class II heme peroxidases. Laccases belong to a superfamily of multicopper oxidases, which have been characterized in basidiomycete and ascomycete fungal species. Laccases catalyze one-elec
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Bacterial Laccases: Some Recent Advances and Applications,ion of molecular oxygen to water. Because of their high relative non-specific oxidation capacity particularly on phenols and aromatic amines as well as the lack of requirement for expensive organic cofactors, they have found application in a large number of biotechnological fields. The vast majority
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Old Enzymes at the Forefront of Lignocellulosic Waste Valorization,ds their exploitation in the valorization of lignocellulosic biomass in frame with the biorefinery concept. Biochemical conversion of lignocelluloses includes three major steps: pretreatment, enzymatic hydrolysis, and fermentation. Laccases find application in the pretreatment phase since they are e
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Immobilized Laccase: A Promising Bioremediation Tool for the Removal of Organic Contaminants in Wasquirement of cofactors, and the use of readily available oxygen as the final electron acceptor. However, the large-scale application of laccases in bioremediation necessitates immobilization/insolubilization of the biocatalysts to enhance their operational stability. With the burgeoning use of lacca
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