Item type | Home library | Class number | URL | Status | Date due | Barcode | |
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Electronic book | Hillingdon Hospitals Library Services (Hillingdon Hospitals NHS Foundation) Online | Link to resource | Available |
Chapter. 1. A diverse array of microbial taxa affianced in bioremediation to counteract environmental pollution.-Chapter. 2. Aerobic processes: best approach for the treatment of wheat starch effluents -- Chapter. 3. Banned pesticides with high persistence: the impact of their use in agriculture and their removal by microbial biodegradation -- Chapter. 4. Bioremediations for Oil Spills by Utilizing Microbes -- Chapter. 5. Genetically engineered microorganisms for bioremediation processes -- Chapter. 6. Microbial Modifications and Biochemical Pathway-mechanism for ecosystem decontamination -- Chapter. 7. Innovative biofilms mediated as empiricist of bioremediation for sustainable development -- Chapter. 8. Major groups of microorganisms employed in bioremediation -- Chapter. 9. Microbial Exploration and their Metabolic Capacity for detoxification and Restoration of Natural Ecosystems -- Chapter. 10. Microbes in Restoration of Polluted Ecosystems -- Chapter. 11. Microbial Biotechnology: Energy generation approach from the environmental waste -- Chapter. 12. Microbial degradation of industrial pollutants from different environment -- Chapter. 13. Microbial enzymes and their importance in the environmental decontamination -- Chapter. 14. Structural and Functional Dynamics of Bacterial-world for Sustainability -- Chapter. 15. Plant-Associated Bacteria in Ecosystems Functioning and Sustainability -- Chapter. 16. The science of microbial enzymes as detoxification tool for inorganic and organic pollutants.
Microbial bioremediation and biodegradation in environmental monitoring offers an environmentally friendly approach for the monitoring and effective removal of contaminants. Various aspects of microbial-mediated bioremediation take advantage of the microorganisms' ability to transform noxious compounds into utilizable intermediates and value-added products. Different microbial metabolites such as enzymes, biosurfactants, emulsifiers, organic acids, and solvents play significant roles in the decontamination of radioactive and heavy metals, chemical pesticides, and organic contaminants such as dyes and hydrocarbons in environmentally safe manners. Recent advancements in biochemical engineering, OMICS and genetic modification, and synthetic-biology pave ways for identifying indicator microbial strains, mechanisms of remediation, and the development of tailor-made microbe-metabolites for future applications. Microbial biotechnology in environmental monitoring and bioremediation thus represent a new way to rehabilitate and reconstruct "damaged" ecosystems. This work summarizes the latest research in the field of environmental bioremediation and offers fascinating insights on the behaviours of these unique microorganisms. It also presents exciting, new perspectives for the application of microbes in environmental protection. It is suitable for students, scholars, researchers and organizations involved in environmental protection.
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