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Bioremediation of Toxic Metal(loid)s

Bioremediation of Toxic Metal(loid)s

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This book provides an in-depth analysis of the latest research and developments in the field of bioremediation of toxic metal(loid)s, covering various biological agents and technologies.

Format: Hardback
Length: 418 pages
Publication date: 30 November 2022
Publisher: Taylor & Francis Ltd


This comprehensive book caters to the diverse needs of researchers, students, and industry professionals engaged in the field of bioremediation of toxic metal(loid)s. It provides a thorough exploration of the latest developments and cutting-edge advancements in this field. The book offers a comprehensive overview of various bioremediation technologies, employing a diverse range of biological agents such as plants, bacteria, algae, and fungi, to effectively clean up toxic metal(loid)s from the environment.

The book begins by introducing the fundamental principles and mechanisms of bioremediation, including the bioavailability and toxicity of metal(loid)s, as well as the environmental factors that influence their remediation. It then delves into the various biological agents used in bioremediation, highlighting their unique characteristics, advantages, and limitations.

Chapter 1 provides an in-depth examination of plant-based bioremediation, exploring the use of various plant species for the removal of toxic metal(loid)s from contaminated soils and water. The chapter discusses the mechanisms by which plants absorb and accumulate metal(loid)s, as well as the strategies employed to enhance their bioremediation efficiency. It also highlights the importance of plant genetic engineering in developing genetically modified plants with enhanced bioremediation capabilities.

Chapter 2 focuses on bacterial-based bioremediation, discussing the role of bacteria in the degradation and removal of metal(loid)s from various environmental matrices. The chapter explores the different bacterial species employed in bioremediation, their metabolic pathways, and the mechanisms by which they promote metal(loid) removal. It also discusses the application of bacterial consortia and bioaugmentation techniques to enhance the efficiency of bacterial-based bioremediation.

Chapter 3 explores the use of algae-based bioremediation, discussing the advantages of using algae for metal(loid) removal from contaminated environments. The chapter discusses the different types of algae employed in bioremediation, their growth conditions, and the mechanisms by which they promote metal(loid) removal. It also highlights the potential of algae for producing biofuels and other valuable products.

Chapter 4 focuses on fungal-based bioremediation, discussing the role of fungi in the degradation and removal of metal(loid)s from contaminated soils and water. The chapter explores the different fungal species employed in bioremediation, their metabolic pathways, and the mechanisms by which they promote metal(loid) removal. It also discusses the application of fungal mycelium and biofilms in enhancing the efficiency of fungal-based bioremediation.

Chapter 5 discusses the application of bioremediation in industrial settings, including the treatment of wastewater, soil, and air pollution. The chapter discusses the different bioremediation technologies employed in industrial settings, such as phytoremediation, bioaugmentation, and biostimulation. It also highlights the challenges and opportunities associated with industrial bioremediation and the need for sustainable and cost-effective solutions.

Chapter 6 provides a comprehensive summary of the key findings and conclusions of the book. The chapter highlights the importance of bioremediation in addressing the global challenge of toxic metal(loid) pollution and the potential of various biological agents to promote environmental clean-up. It also emphasizes the need for further research and development in the field to enhance the efficiency and sustainability of bioremediation technologies.

In conclusion, this comprehensive book offers a valuable resource for researchers, students, and industry professionals engaged in the field of bioremediation of toxic metal(loid)s. It provides a thorough exploration of the latest developments and advances in the field, covering a wide range of bioremediation technologies based on diverse biological agents. The book is designed to serve as a reference for those seeking to understand the principles, mechanisms, and applications of bioremediation, as well as for those involved in developing and implementing bioremediation strategies in various environmental settings.

Weight: 940g
Dimension: 254 x 178 (mm)
ISBN-13: 9781032135779

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