Bioaugmentation Techniques and Applications in Remediation Bioaugmentation Techniques and Applications in Remediation

Bioaugmentation Techniques and Applications in Remediation

Inamuddin and Others
    • USD 84.99
    • USD 84.99

Publisher Description

It has been observed that rapid population expansion has raised the amount of anthropogenic activity, resulting in high levels of pollution in water, air, and solid waste as well as an increase in the pressure placed on agricultural lands. Bioaugmentation Techniques and Applications in Remediation provides detailed information on bioaugmentation approaches for the remediation of sediments, water, and soil polluted with organic and inorganic pollutants.

Practical applications of bioaugmentation techniques performed in restricted systems under controlled conditions, laboratory investigations, and in the field are addressed. Special emphasis is placed on the applications of nanomaterials in combination with bioaugmentation techniques for enhanced bioremediation efficiency.

FEATURES
Explores abiotic and biotic factors that enhance and facilitate environmental remediation of contaminants Provides a primer on the elementary microbial processes entailed in bioaugmentation Summarizes methods and approaches for executing bioaugmentation technology Details commercially available products and instrumentation
This book is an ideal resource for researchers, students, and engineers working in materials science and bioremediation.

GENRE
Science & Nature
RELEASED
2022
29 June
LANGUAGE
EN
English
LENGTH
181
Pages
PUBLISHER
CRC Press
SELLER
Taylor & Francis Group
SIZE
7.4
MB
Hydrogen Energy Production and Fuel Generation Hydrogen Energy Production and Fuel Generation
2025
Sustainable Materials for Fuel Cell Technologies Sustainable Materials for Fuel Cell Technologies
2025
Nanoionics Nanoionics
2025
Bioanalytical Techniques Bioanalytical Techniques
2025
The Chemistry of Mars The Chemistry of Mars
2025
Electrochemical Sensors and Biosensors Electrochemical Sensors and Biosensors
2025