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Microbiome-Assisted Bioremediation

Rehabilitating Agricultural Soils

Specificaties
Paperback, blz. | Engels
Elsevier Science | e druk, 2024
ISBN13: 9780443219115
Rubricering
Elsevier Science e druk, 2024 9780443219115
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Samenvatting

Microbiome-Assisted Bioremediation: Rehabilitating Agricultural Soils provides a complete reference on the opportunities, technologies, and challenges of remediating contaminated soils through use of microbial means. Environmental pollution and human exposure associated with heavy metals are attributed to anthropogenic activities such as mining, industrial wastes, and metal containing compounds in domestic and agricultural systems. Addressing the foundational aspects of microbe-based approaches, this book provides a valuable gateway resource for those entering the field, as well as providing in-depth insights into the various tools and techniques for real-world application.

Microbial remediation has appeared as a promising approach to lessen the heavy metal concentration in the environment due to their sequestration and transforming ability of xenobiotic compounds. Microbial bioremediation is an efficient, economical, and environmentally-friendly procedure that reduces the cost of the cleanup process associated with heavy and toxic metal contamination.

Specificaties

ISBN13:9780443219115
Taal:Engels
Bindwijze:Paperback

Inhoudsopgave

<p>1. Bioremediation: An emerging Technology for remediation of pesticides<br>2. Bioremediation techniques- classification, principles, advantages, limitations and prospects<br>3. Processes and Mechanism involved in effective bioremediation of xenobiotic substances from agricultural fields<br>4. Omics and other biotechnological tools in microbial bioremediation<br>5. Metagenomics and microbial degradation/detoxification of heavy metals<br>6. In silico studies for the bioremediation of heavy metals from contaminated sites<br>7. Biodegradation of plastics- an overview<br>8. The potential role of Microbial metabolomics in bioremediation of chemical pesticides<br>9. Application of GMOs for biodegradation and detoxification of oil and hydrocarbon pollutants in soil<br>10. Heavy Metals in Soils and the Remediation Potential of Plant Microbiome<br>11. Recent Developments in Microbe–Plant Based Bioremediation<br>12. Phosphate-solubilizing bacteria-assisted phytoremediation of metalliferous soils<br>13. Genetic diversity and characterization of metal-resistant endophytic bacteria from contaminated sites<br>14. Potential use of Microalgal metallothioneins and phytochelatins in bioremediation<br>15. Nanoremediation and role in environmental cleanup<br>16. Microbial surfactants -Potential commercial applications<br>17. Emerging strategies for engineering microbial communities to augment bioremediation<br>18. Applications of Plant Biomass from Phytoremediation of Potential Toxic-Metal-Polluted Soils<br>19. Halo-tolerance plant growth promoting rhizobacteria for improving productivity and remediation of saline soils<br>20. Assessment of soil fertility and solid waste utilization: A comprehensive approach</p>
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        Microbiome-Assisted Bioremediation