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Sustainable Treatment and Resource Recovery from Sewage Sludge
Bhoomika Yadav
, Shraddha Chavan
, R. D. Tyagi
, Jonathan W.C. Wong
, Patrick Drogui
Institute of Bioresource and Agriculture
Department of Biology
Sino-Forest Applied Research Centre for Pearl River Delta Environment
Research output
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Chapter in book/report/conference proceeding
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Chapter
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peer-review
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Keyphrases
Sewage Sludge
100%
Sludge
100%
Sustainable Resources
100%
Resource Recovery
100%
Sustainable Treatment
100%
Wastewater Treatment
33%
Anaerobic Digestion
33%
Heavy Metals
33%
Hydrothermal Treatment
33%
Pollutants
33%
Polycyclic Aromatic Hydrocarbons
33%
Bioplastics
33%
Sludge Treatment
33%
Environmental Pollution
33%
Furan
33%
Energy Recovery
33%
Valuable Resources
33%
Wastewater Treatment Plant
33%
Incineration
33%
Operating Parameters
33%
Non-renewable Resources
33%
Advanced Technologies
33%
Biofertilizer
33%
Bioelectrochemical System
33%
Biopesticides
33%
Attractive Solutions
33%
Sustainable Energy Solutions
33%
Sludge Generation
33%
Wet Air Oxidation
33%
Pyro-gasification
33%
Supercritical Water Oxidation
33%
Chemical Engineering
Sludge
100%
Sewage Sludge
100%
Heavy Metal
25%
Polycyclic Aromatic Hydrocarbon
25%
Anaerobic Digestion
25%
Wastewater Treatment
25%
Pyrolysis
25%
Sludge Treatment
25%
Wastewater Treatment Plant
25%
Gasification
25%
Supercritical Water Oxidation
25%
Renewable Energy
25%
Material Science
Heavy Metal
100%
Hydrothermal Synthesis
100%
Wet Air Oxidation
100%