Biomass Wastes for Sustainable Industrial Applications
A Waste-to-Wealth Approach
Herausgeber: Verma, Chandrabhan; Dubey, Shikha
Biomass Wastes for Sustainable Industrial Applications
A Waste-to-Wealth Approach
Herausgeber: Verma, Chandrabhan; Dubey, Shikha
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In this edited volume, Verma and Dubey collate important discussions from international researchers to address major innovations in the sustainable industrial applications of biomass wastes including processing fundamentals, extraction, purification, properties, and industrial applications.
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In this edited volume, Verma and Dubey collate important discussions from international researchers to address major innovations in the sustainable industrial applications of biomass wastes including processing fundamentals, extraction, purification, properties, and industrial applications.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: Taylor & Francis Ltd (Sales)
- Seitenzahl: 538
- Erscheinungstermin: 26. November 2024
- Englisch
- Abmessung: 234mm x 156mm x 30mm
- Gewicht: 953g
- ISBN-13: 9781032739441
- ISBN-10: 1032739444
- Artikelnr.: 71969662
- Verlag: Taylor & Francis Ltd (Sales)
- Seitenzahl: 538
- Erscheinungstermin: 26. November 2024
- Englisch
- Abmessung: 234mm x 156mm x 30mm
- Gewicht: 953g
- ISBN-13: 9781032739441
- ISBN-10: 1032739444
- Artikelnr.: 71969662
Chandrabhan Verma is a researcher at the Department of Petroleum and Chemical Engineering, Khalifa University of Science and Technology, Abu Dhabi. He earned a BSc and MSc at Udai Pratap College, Varanasi, and a PhD at the Indian Institute of Technology (BHU) Varanasi in 2017. Dr. Verma is a member of the American Chemical Society (ACS) and a lifetime member of the World Research Council (WRC). He is a reviewer and editorial board member of various internationally recognized ACS, RSC, Elsevier, Wiley and Springer platforms. Dr. Verma has published numerous research and review articles in different areas of science and engineering at ACS, Elsevier, RSC, Wiley, Springer, etc. He has a total citation of more than 14,089 with an h-index of 65 and an i-10 index of 175. Dr. Verma's research focuses on designing and developing industrially applicable corrosion inhibitors. He has edited or authored over 40 books for ACS, Elsevier, RSC, CRC, Springer and Wiley. Dr. Verma has received several awards for his academic achievements, including a Gold Medal in materials science (Organic Chemistry; 2010) and Best Publication awards from the Global Alumni Association of IIT-BHU (Second Prize 2013). Shikha Dubey is an Assistant Professor (Analytical Chemistry) at the Department of Chemistry, Hemvati Nandan Bahuguna Garhwal University Srinagar (Garhwal) Uttarakhand. She earned a BSc (Hons.) and MSc in analytical chemistry at the Institute of Science, Banaras Hindu University, Varanasi, and a PhD at the Indian Institute of Technology (BHU) Varanasi. After qualifying for the CSIR-NET exam, she joined the Department of Chemistry, Indian Institute of Technology (BHU). Dr. Dubey was awarded a Junior Research Fellowship (JRF) and Senior Research Fellowship (SRF) by the Defence Research and Development Organization (DRDO), Ministry of Defence, Government of India, New Delhi, India. During her research, she synthesized various nanomaterials via simple precipitation methods and green routes to treat metal-laden water and wastewater. Her research interest involves nano-biomaterial synthesis and characterization, development of low-cost adsorbents, nano-adsorbents, magnetic nano-sorbents for water remediation and green-synthesis of materials, characterization and application in environmental remediation, photocatalytic degradation of organic and inorganic pollutants, etc. Dr. Dubey has attended several international and national conferences and delivered expert talks.
1. Biomass Wastes: Fundamentals
Classification and Properties. 2. Biomass Wastes: Natural and Biological Origin
Processing
Sustainability
and Recycling. 3. Bioproducts from Biomass Wastes: Chemicals and Energy Materials Production and Utilization. 4. Forestry and Agricultural Residues-Based Wastes: Fundamentals
Classification
Properties
and Applications. 5. Animal Wastes: Fundamentals
Classification
Properties
and Applications. 6. Biomass-Based Industrial Wastes: Fundamentals
Classification
and Application. 7. Biomass-Based Municipal Solid Wastes: Fundamentals
Classification
Properties
and Applications. 8. Food Processing Wastes: Fundamentals
Classification
Properties
and Applications. 9. Biomass Wastes for Adsorbent and Waste Treatment Applications. 10. Biomass Wastes for Catalytic Application for Biodiesel Production. 11. Biomass Wastes for Electrolyte and Electrode Applications. 12. Biomass Wastes for Bioenergy-Based Applications. 13. Biomass Wastes for Electricity Generation
Bioenergy
and Harnessing of Nature Power Applications. 14. Biomass Wastes for Lubricating
Adhesive
and Anticorrosive Applications. 15. Biomass as a Sustainable Energy Source for Energy Storage. 16. Hydrogen Production from Biomass. 17. Modified Biopolymers and Their Wastes as Corrosion Inhibitors.
Classification and Properties. 2. Biomass Wastes: Natural and Biological Origin
Processing
Sustainability
and Recycling. 3. Bioproducts from Biomass Wastes: Chemicals and Energy Materials Production and Utilization. 4. Forestry and Agricultural Residues-Based Wastes: Fundamentals
Classification
Properties
and Applications. 5. Animal Wastes: Fundamentals
Classification
Properties
and Applications. 6. Biomass-Based Industrial Wastes: Fundamentals
Classification
and Application. 7. Biomass-Based Municipal Solid Wastes: Fundamentals
Classification
Properties
and Applications. 8. Food Processing Wastes: Fundamentals
Classification
Properties
and Applications. 9. Biomass Wastes for Adsorbent and Waste Treatment Applications. 10. Biomass Wastes for Catalytic Application for Biodiesel Production. 11. Biomass Wastes for Electrolyte and Electrode Applications. 12. Biomass Wastes for Bioenergy-Based Applications. 13. Biomass Wastes for Electricity Generation
Bioenergy
and Harnessing of Nature Power Applications. 14. Biomass Wastes for Lubricating
Adhesive
and Anticorrosive Applications. 15. Biomass as a Sustainable Energy Source for Energy Storage. 16. Hydrogen Production from Biomass. 17. Modified Biopolymers and Their Wastes as Corrosion Inhibitors.
1. Biomass Wastes: Fundamentals
Classification and Properties. 2. Biomass Wastes: Natural and Biological Origin
Processing
Sustainability
and Recycling. 3. Bioproducts from Biomass Wastes: Chemicals and Energy Materials Production and Utilization. 4. Forestry and Agricultural Residues-Based Wastes: Fundamentals
Classification
Properties
and Applications. 5. Animal Wastes: Fundamentals
Classification
Properties
and Applications. 6. Biomass-Based Industrial Wastes: Fundamentals
Classification
and Application. 7. Biomass-Based Municipal Solid Wastes: Fundamentals
Classification
Properties
and Applications. 8. Food Processing Wastes: Fundamentals
Classification
Properties
and Applications. 9. Biomass Wastes for Adsorbent and Waste Treatment Applications. 10. Biomass Wastes for Catalytic Application for Biodiesel Production. 11. Biomass Wastes for Electrolyte and Electrode Applications. 12. Biomass Wastes for Bioenergy-Based Applications. 13. Biomass Wastes for Electricity Generation
Bioenergy
and Harnessing of Nature Power Applications. 14. Biomass Wastes for Lubricating
Adhesive
and Anticorrosive Applications. 15. Biomass as a Sustainable Energy Source for Energy Storage. 16. Hydrogen Production from Biomass. 17. Modified Biopolymers and Their Wastes as Corrosion Inhibitors.
Classification and Properties. 2. Biomass Wastes: Natural and Biological Origin
Processing
Sustainability
and Recycling. 3. Bioproducts from Biomass Wastes: Chemicals and Energy Materials Production and Utilization. 4. Forestry and Agricultural Residues-Based Wastes: Fundamentals
Classification
Properties
and Applications. 5. Animal Wastes: Fundamentals
Classification
Properties
and Applications. 6. Biomass-Based Industrial Wastes: Fundamentals
Classification
and Application. 7. Biomass-Based Municipal Solid Wastes: Fundamentals
Classification
Properties
and Applications. 8. Food Processing Wastes: Fundamentals
Classification
Properties
and Applications. 9. Biomass Wastes for Adsorbent and Waste Treatment Applications. 10. Biomass Wastes for Catalytic Application for Biodiesel Production. 11. Biomass Wastes for Electrolyte and Electrode Applications. 12. Biomass Wastes for Bioenergy-Based Applications. 13. Biomass Wastes for Electricity Generation
Bioenergy
and Harnessing of Nature Power Applications. 14. Biomass Wastes for Lubricating
Adhesive
and Anticorrosive Applications. 15. Biomass as a Sustainable Energy Source for Energy Storage. 16. Hydrogen Production from Biomass. 17. Modified Biopolymers and Their Wastes as Corrosion Inhibitors.