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Advances in Hydrotreating for Integrated Biofuel Production

Specificaties
Paperback, blz. | Engels
Elsevier Science | e druk, 2024
ISBN13: 9780443190766
Rubricering
Elsevier Science e druk, 2024 9780443190766
Verwachte levertijd ongeveer 9 werkdagen

Samenvatting

Advances in Hydrotreating for Integrated Biofuel Production covers the recent advances in the upgrading of biomass-obtained products into liquid fuels (also known as biofuels) by hydrotreating processes. By including introductory information, the book covers in detail the identification of hydrotreating processes such as thermocatalytic reactions in the presence of heterogeneous catalysts and hydrogen. Required materials for the development of the process are investigated with consideration of the characteristics of biomass, bio-oil production, upgrading alternatives, hydrotreating alternatives, hydrotreating of different biomass-based materials, hydrodeoxygenation of separated bio-oil compounds, classification of the hydrotreating catalysts, life cycle assessment, and hydrogen production routes. Information regarding the further development of the process is collected to encourage further progress toward a scalable process for biofuel production and the development of a large-scale hydrotreating strategy.

Specificaties

ISBN13:9780443190766
Taal:Engels
Bindwijze:Paperback

Inhoudsopgave

<p>Part I: Introduction to Biomass Processing<br>1. Biomass feedstock, importance, and applications<br>Majid Saidi and Mohammad Reza Rahimpour<br>2. Cellulose and hemicellulose: types, cleavage, and depolymerization<br>Hwei Voon Lee and Nasuha Abu Yazid<br><br>Part II: Hydrotreating Process<br>3. Introduction to bio-oil upgrading methods: Pyrolysis, cracking, hydrotreating, and supercritical bio-oil upgrading<br>Yimin Zeng, Xue Han and Minkang Liu<br>4. Hydrodeoxygenation of lignocellulosic pyrolysis bio-oil blends<br>Yimin Zeng, Xue Han, Charles Chunbao Xu and Minyuan Zhang<br>5. Hydrodeoxygenation of algal bio-oils<br>Majid Saidi<br>6. Hydrodeoxygenation of furanic model compounds<br>Maria A. Golubeva<br>7. Hydrodeoxygenation of guaiacol and methylguaicol, and catechol<br>Hwei Voon Lee<br>8. Hydrodeoxygenation of cyclohexanol and cyclohexanone<br>Pongtanawat Khemthong, Rungnapa Kaewmeesri, Nattawut Osakoo, Chalermpan Keawkumay, Rattabal Khunphonoi, Saran Youngjan and Kitirote Wantala<br>9. Catalyst deactivation during hydrodeoxygenation reactions<br>Yimin Zeng, Xue Han, Charles Chunbao Xu and Minyuan Zhang<br><br>Part III: Novel Hydrotreating Strategies<br>10. Methane- and syngas-assisted hydrotreating for Biofuel Production<br>Hua Song, Ali Omidkar, Kamran Haddadian, Erika Bonatti and Jack Jarvis<br>11. Plasma upgrading and hydrotreating<br>Hua Song, Wenping Li, Shijun Meng and Hoang Nguyen<br>12. Co-processing of bio-oils and petroleum fuel blends for clean transportation fuels<br>Yimin Zeng, Xue Han, Ying Zheng, Arun Krishna Vuppaladadiyam, Shao-Yuan Leu and Abhishek Sahoo<br><br>Part IV: Integrated Hydrotreating: Hydrogen Production From Biomass<br>13. Thermochemical hydrogen production routes from biomass: Gasification, reforming, and pyrolysis<br>Saleh Al Arni<br>14. Biochemical hydrogen production routes from biomass<br>Nadeem Tahir, Faiqa Nadeem, Muhammad Shahzaib, Hina Ramzan, Muhammad Usman and Muneeb Ur Rahman<br>15. Life cycle analysis and technical economic analysis of bio-oil hydrotreating<br>Hua Song, Erika Bonatti, Jack Jarvis, Ali Omidkar and Kamran Haddadian</p>

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        Advances in Hydrotreating for Integrated Biofuel Production