Sustainable Microbial Technology for Synthetic and Cellulosic Microfiber Bioremediation Sustainable Microbial Technology for Synthetic and Cellulosic Microfiber Bioremediation

Sustainable Microbial Technology for Synthetic and Cellulosic Microfiber Bioremediation

Alok Prasad Das and Others
    • USD 159.99
    • USD 159.99

Publisher Description

This book offers a variety of cases that detail microbial technologies for remediation of microfiber pollution. Synthetic microfibers are made up of polypropylene, nylon, and polyethylene terephthalate. They are porous and dry which makes them ideal for cleaning, but wide use of synthetic microfibers across industries and the human population in general has led to the accumulation of microfiber wastes in both terrestrial and marine ecosystems.

Microfibers are a major environmental pollutant due to their endurance, omnipresence, and synthetic composition. Due to their undetectable size and wide distribution, microfibers slowly get incorporated within the food chain leading them into the higher trophic level. Microbial remediation of Synthetic microfibers through biodegradation is a sustainable and economic solution. With advanced bioremediation technology, novel methods have been developed for remediation, recovery, and recycling. Some of these methods are detailed in this volume. 

GENRE
Science & Nature
RELEASED
2024
25 July
LANGUAGE
EN
English
LENGTH
282
Pages
PUBLISHER
Springer Nature Switzerland
SELLER
Springer Nature B.V.
SIZE
18.1
MB
Emerging Micropollutants Emerging Micropollutants
2025
Innovative Technologies for Waste Management Innovative Technologies for Waste Management
2025
Decarbonization of Wastewater Pollutants as a Sustainable Solution Decarbonization of Wastewater Pollutants as a Sustainable Solution
2025
Recent Advances in Bioremediation and Phytoremediation Recent Advances in Bioremediation and Phytoremediation
2025
Environmental Hydrocarbon Pollution and Zero Waste Approach Towards a Sustainable Waste Management Environmental Hydrocarbon Pollution and Zero Waste Approach Towards a Sustainable Waste Management
2025
Sustainable Management of Environmental Pollutants through Phytoremediation Sustainable Management of Environmental Pollutants through Phytoremediation
2024