Valorization of Waste Biomass to Biofuels for Power Production and Transportation in Optimized Way: A Comprehensive Review

Author:

Jamil Farrukh12,Inayat Abrar3ORCID,Hussain Murid2,Akhter Parveen4,Abideen Zainul56,Ghenai Chaouki17,Shanableh Abdallah189,Abdellatief Tamer M. M.1011

Affiliation:

1. Biomass & Bioenergy Research Group Center for Sustainable Energy and Power Systems Research Research Institute of Sciences and Engineering University of Sharjah 27272 Sharjah United Arab Emirates

2. Department of Chemical Engineering COMSATS University Islamabad (CUI) Lahore Pakistan

3. Department of Energy School of Engineering Robert Gordon University Aberdeen Scotland AB10 7GJ UK

4. Department of Chemistry The University of Lahore 1‐km Defence Road, Off Raiwind Road Lahore Pakistan

5. Department of Applied Biology College of Sciences University of Sharjah P.O. Box 2727 Sharjah United Arab Emirates

6. Dr. Muhammad Ajmal Khan Institute of Sustainable Halophyte Utilization University of Karachi 75270 Karachi United Arab Emirates

7. Department of Sustainable and Renewable Energy Engineering University of Sharjah 27272 Sharjah United Arab Emirates

8. Department of Civil and Environmental Engineering University of Sharjah 27272 Sharjah United Arab Emirates

9. Scientific Research Center Australian University West Mishref Kuwait

10. Sustainable Energy & Power Systems Research Centre RISE University of Sharjah P.O. Box 27272 Sharjah United Arab Emirates

11. Department of Chemical Engineering Faculty of Engineering Minia University EL‐Minia 61519 Egypt

Abstract

Fossil fuels are primary sources for energy production. Increased dependence on fossil fuels has resulted in increased environmental issues demanding alternative sources. Bioenergy is becoming a popular alternative energy source due to its positive environmental impact and the availability of renewable sources. However, the availability of renewable energy sources in the energy sector currently contributes to about 14%. Biofuels are preferred due to its sustainability, eco‐friendly approach, and low‐cost raw materials, making it an efficient technique for energy production. This article provides the fundamental and applied concepts for on conversion processes of biomass to biofuels, such as combustion, pyrolysis, fermentation, gasification, and anaerobic digestion along with their role in the green economy. Different physical characteristics of biomass resources are important and contribute to determining their potential for producing biofuels. Herein, LCA, its techno‐economic importance, and the role of biomass in green economy are explained. Varying compositions and properties of different types of biomass resources, including lignocellulosic feedstocks, agriculture and forest residue, municipal solid waste, food waste, and animal manure as potential biomass resources, have been discussed. The article explains the strengths and weaknesses of different thermochemical conversion techniques and their current input toward scalar applications and commercialization.

Publisher

Wiley

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