Application of Tubular Reactor Technologies for the Acceleration of Biodiesel Production

被引:20
作者
Awogbemi, Omojola [1 ]
Von Kallon, Daramy Vandi [1 ]
机构
[1] Univ Johannesburg, Dept Mech & Ind Engn Technol, POB 524, ZA-2006 Johannesburg, South Africa
来源
BIOENGINEERING-BASEL | 2022年 / 9卷 / 08期
关键词
tubular reactor; biodiesel; catalyst; transesterification; feedstock; reactor technologies;
D O I
10.3390/bioengineering9080347
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
The need to arrest the continued environmental contamination and degradation associated with the consumption of fossil-based fuels has continued to serve as an impetus for the increased utilization of renewable fuels. The demand for biodiesel has continued to escalate in the past few decades due to urbanization, industrialization, and stringent government policies in favor of renewable fuels for diverse applications. One of the strategies for ensuring the intensification, commercialization, and increased utilization of biodiesel is the adaptation of reactor technologies, especially tubular reactors. The current study reviewed the deployment of different types and configurations of tubular reactors for the acceleration of biodiesel production. The feedstocks, catalysts, conversion techniques, and modes of biodiesel conversion by reactor technologies are highlighted. The peculiarities, applications, merits, drawbacks, and instances of biodiesel synthesis through a packed bed, fluidized bed, trickle bed, oscillatory flow, and micro-channel tubular reactor technologies are discussed to facilitate a better comprehension of the mechanisms behind the technology. Indeed, the deployment of the transesterification technique in tubular reactor technologies will ensure the ecofriendly, low-cost, and large-scale production of biodiesel, a high product yield, and will generate high-quality biodiesel. The outcome of this study will enrich scholarship and stimulate a renewed interest in the application of tubular reactors for large-scale biodiesel production among biodiesel refiners and other stakeholders. Going forward, the use of innovative technologies such as robotics, machine learning, smart metering, artificial intelligent, and other modeling tools should be deployed to monitor reactor technologies for biodiesel production.
引用
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页数:37
相关论文
共 134 条
[1]  
Abbaszaadeh A., 2013, INT J RENEW ENERGY T, V2, P249
[2]   Biological processing in oscillatory baffled reactors: operation, advantages and potential [J].
Abbott, M. S. R. ;
Harvey, A. P. ;
Perez, G. Valente ;
Theodorou, M. K. .
INTERFACE FOCUS, 2013, 3 (01)
[3]   A review on non-edible oil as a potential feedstock for biodiesel: physicochemical properties and production technologies [J].
Abdul Hakim Shaah, Marwan ;
Hossain, Md. Sohrab ;
Salem Allafi, Faisal Aboelksim ;
Alsaedi, Alyaa ;
Ismail, Norli ;
Ab Kadir, Mohd Omar ;
Ahmad, Mardiana Idayu .
RSC ADVANCES, 2021, 11 (40) :25018-25037
[4]   Recent trends of biodiesel production from animal fat wastes and associated production techniques [J].
Adewale, Peter ;
Dumont, Marie-Josee ;
Ngadi, Michael .
RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2015, 45 :574-588
[5]   Biodiesel Production Via Interesterification of Palm Oil and Ethyl Acetate Using Ion-Exchange Resin in a Packed-Bed Reactor [J].
Akkarawatkhoosith, Nattee ;
Kaewchada, Amaraporn ;
Ngamcharussrivichai, Chawalit ;
Jaree, Attasak .
BIOENERGY RESEARCH, 2020, 13 (02) :542-551
[6]  
Akubude V.C., 2023, Biodiesel Technol Appl, P341, DOI [10.1002/9781119724957.ch12, DOI 10.1002/9781119724957.CH12]
[7]   Zirconia-supported tungstophosphoric heteropolyacid as heterogeneous acid catalyst for biodiesel production [J].
Alcaniz-Monge, Juan ;
El Bakkali, Bouchra ;
Trautwein, Guido ;
Reinoso, Santiago .
APPLIED CATALYSIS B-ENVIRONMENTAL, 2018, 224 :194-203
[8]   State of the art and prospective of lipase-catalyzed transesterification reaction for biodiesel production [J].
Amini, Zeynab ;
Ilham, Zul ;
Ong, Hwai Chyuan ;
Mazaheri, Hoora ;
Chen, Wei-Hsin .
ENERGY CONVERSION AND MANAGEMENT, 2017, 141 :339-353
[9]   OPTIMIZATION OF BIODIESEL PRODUCTION USING A STIRRED PACKED-BED REACTOR [J].
Ani, Farid Nasir ;
Said, Nur Hamzah ;
Said, Mohd Farid Muhamad .
INTERNATIONAL JOURNAL OF TECHNOLOGY, 2018, 9 (02) :219-228
[10]  
[Anonymous], 2012, Transportation Sector Module of the National Energy Modeling System: Model Documentation 2011