The impact of heterogeneous catalyst on biodiesel production; a review

被引:35
作者
Gupta V. [1 ]
Pal Singh K. [1 ]
机构
[1] Mechanical Engineering, Mangalayatan University, Aligarh
关键词
Biodiesel; Heterogeneous catalyst; Renewable energy; Transesterification;
D O I
10.1016/j.matpr.2022.10.175
中图分类号
学科分类号
摘要
Energy is understood to be a fundamental requirement for humankind's daily existence. However, the researcher's interest has shifted to renewable energy sources in an effort to minimise the dependence on fossil fuels due to the continuously rising energy demand. Furthermore, the harmful effects of these fossil fuels on the ecosystem contribute to global warming. Biodiesels are the most practical form of green energy in that situation. The word bio stands for its natural origin, while diesel stands for its use as fuel, as the name implies. Traditionally, transesterification is used to create biodiesel. With the aid of a suitable heterogeneous or homogeneous catalyst, this reaction can take place, however amount of fatty acids it contains determines the best catalyst to use. Recently, heterogeneous catalysts have been preferred over homogenous catalysts as it can be reusable and can be easily separated. Moreover, homogeneous catalyst produces soap as a by-product and massive wastewater, further increasing allowable discharge costs. This paper reviews about biodiesel used as an alternative source of energy and its various prospects. This work reviews about the various heterogeneous catalyst and also analyses its effect on the thereafter biodiesel yield. This work also emphasis on the usage of waste or non-edible materials as a feedstock as it would help to lower the cost of production. This work reviews the advancements of heterogeneous catalysts in producing biodiesel. Various traits of heterogeneous catalysts (solid acid, solid-base, acid-base, and bio-catalyst) are also studied. © 2022
引用
收藏
页码:364 / 371
页数:7
相关论文
共 60 条
[1]  
Jess A., What might be the energy demand and energy mix to reconcile the world's pursuit of welfare and happiness with the necessity to preserve the integrity of the biosphere?, Energy Policy, 38, pp. 4663-4678, (2010)
[2]  
Hanmer C., Wilson C., Edelenbosch O., Et al., Translating global integrated assessment model output into lifestyle change pathways at the country and household level, Energies, 15, 5, (2022)
[3]  
Hossain M.D., Fang Y., Ma T., Et al., Narrowing fossil fuel consumption in the indian road transport sector towards reaching carbon neutrality, SSRN, (2022)
[4]  
Babadi A., Rahmati S., Faklaeihi R., Et al., Emerging technologies for biodiesel production: processes, challenges, and opportunities, Biomass Bioenergy, 163, (2022)
[5]  
Sonnichsen N., (2022)
[6]  
Muthuswamy S., Veerasigamani M., Comparative experimental analysis on dual fuel with biodiesel-acetylene in reactivity controlled compression ignition engine, Int. J. Ambient Energy, pp. 1-20, (2021)
[7]  
Ali B., Leila M., Catalysts used in biodiesel production: a review, Biofuels, pp. 1759-7277, (2019)
[8]  
Bashir M., Wu S., Zhu J., Et al., Recent development of advanced processing technologies for biodiesel production: a critical review, Fuel Process. Technol., 227, (2022)
[9]  
Madhu D., Arora R., Sahani S., Singh V., Sharma Y.C., Synthesis of high-quality biodiesel using feedstock and catalyst derived from fish wastes, J. Agric. Food Chem., 65, pp. 2100-2109, (2017)
[10]  
Otera J., Transesterification, Chem. Rev., 93, 4, pp. 1449-1470, (2017)