Affiliation:
1. School of Energy & Environment, Southeast University, No.2 Sipailou, Xuanwu District, Nanjing 210096, China
Abstract
Biomass as a renewable energy resource is a major topic on a global scale. Several types of biomass heat treatment methods have been introduced to obtain useful byproducts via pyrolysis. Microwaves are a practical replacement for conventional stoves and ovens to perform pyrolysis of biomass. Their rapid heating rate and user-friendliness make them a good choice for the pyrolysis process over conventional methods. The current study reviewed research articles that used microwaves for the pyrolysis process on different types of biomass. This study primarily provides comprehensive details about the pyrolysis process, especially microwave-assisted pyrolysis (MAP) and its feasibility for treating biomass. A systematic literature review, according to the PRISMA guidelines, was performed to find research articles on biomass treatment using MAP technology. We analyzed various research studies (n = 32), retrieved from different databases, that used MAP for pyrolysis on various types of biomass, and we achieved good results. The main goal of this study was to examine the usefulness of the MAP technique, comparing its effects on distinguished types of biomass. We found MAP’s effective parameters, namely, temperature, concentration of microwave absorber, moisture percentage of starting material and flow rate, microwave power and residence time of the initial sweep gas that control the pyrolysis process, and effect quality of byproducts. The catalytic agent in MAP pyrolysis was found to be useful for treating biomass, and that it has great potential to increase (nearly double) the production yield. Although MAP could not be used for all types of materials due to some challenges, it produced good results compared to conventional heating (pyrolysis) methods. We concluded that MAP is an effective method for reducing pyrolysis reaction time and improving the quality of value-added products. Also, MAP eliminates the shredding requirement for biomass and improves heating quality. Therefore, it is a viable method for reducing pyrolysis processing costs and should be applied on a larger scale than lab scale for commercialization.
Funder
Natural Science Fund Program of China
Science and Technology Project of Jiangsu Province
Youth Talent Promotion Project of Jiangsu Provincial Association for Science and Technology
Inner Mongolia Major Science and Technology Project
State Key Laboratory of High-efficiency Utilization of Coal and Green Chemical Engineering
Subject
Chemistry (miscellaneous),Analytical Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Molecular Medicine,Drug Discovery,Pharmaceutical Science
Reference125 articles.
1. Zadeh, Z.E., Abdulkhani, A.O., and Saha, B. (2020). Recent Insights into lignocellulosic biomass pyrolysis: A critical review on pretreatment, characterization, and products upgrading. Processes, 8.
2. Microwave-assisted pretreatment of lignocellulosic biomass: A review;Ethaib;J. Eng. Sci. Technol.,2015
3. Solid waste situation in Thi-Qar governorate;Ethaib;IOP Conf. Ser. Mater. Sci. Eng.,2019
4. Comparison of sodium hydroxide and sodium bicarbonate pretreatment methods for characteristic and enzymatic hydrolysis of sago palm bark;Ethaib;Energy Sources Part A Recovery Util. Environ. Eff.,2020
5. Performane of Activated Carbon Adsorption in Removing of Organic Pollutants from River Water;Erabee;Int. J. Eng. Technol.,2018
Cited by
2 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献