微藻作为未来生物燃料生产来源的作用:简评

Mustafa Jawad Nuhma, H. Alias, Ali A. Jazie, Muhammad Tahir
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引用次数: 9

摘要

自上世纪初以来,化石燃料的持续燃烧导致温室气体排放增加,从而导致全球变暖。微藻是绿色碳氢化合物最重要的来源之一,因为这种藻类含有高比例的脂质,生长迅速,大量消耗二氧化碳。此外,种植这些类型的藻类不需要耕地。这篇综述旨在解释微藻作为生物燃料来源的适用性,这取决于脂肪含量、形态和其他参数,以及它们对微藻油通过不同沸石催化反应转化为生物燃料过程的影响。它还详细讨论了将微藻油转化为化学产品的主要化学过程。这篇综述揭示了微藻中最重要的类群之一(小球藻微藻)。这篇综述包括对开发这种藻类所需结构的历史概述和全面描述。本工作还讨论了最重要的生产方法及其优缺点。版权所有©2021作者所有,BCREC集团出版。这是CC BY-SA许可证下的开放访问文章(https://creativecommons.org/licenses/by-sa/4.0)。
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Role of Microalgae as a Source for Biofuel Production in the Future: A Short Review
The continued burning of fossil fuels since the beginning of the last century led to higher emissions of greenhouse gases and thus leads to global warming. Microalgae are one of the most important sources of green hydrocarbons because this type of algae has a high percentage of lipids and has rapid growth, consumes the carbon dioxide in large quantities. Besides, the cultivation of these types of algae does not require arable land. This review aims to explain the suitability of microalgae as a biofuel source depending on the fat content, morphology, and other parameters and their effect on the conversion processes of microalgae oil into biofuels by different zeolite catalytic reactions. It also discusses in detail the major chemical processes that convert microalgae oil to chemical products. This review sheds light on one of the most important groups of microalgae (Chlorella vulgaris microalgae). This review includes a historical overview and a comprehensive description of the structure needed to develop this type of algae. The most important methods of production, their advantages and disadvantages are also deliberated in this work. Copyright © 2021 by Authors, Published by BCREC Group. This is an open access article under the CC BY-SA License (https://creativecommons.org/licenses/by-sa/4.0). 
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来源期刊
CiteScore
3.20
自引率
6.70%
发文量
52
审稿时长
12 weeks
期刊介绍: Bulletin of Chemical Reaction Engineering & Catalysis, a reputable international journal, provides a forum for publishing the novel technologies related to the catalyst, catalysis, chemical reactor, kinetics, and chemical reaction engineering. Scientific articles dealing with the following topics in chemical reaction engineering, catalysis science and engineering, catalyst preparation method and characterization, novel innovation of chemical reactor, kinetic studies, etc. are particularly welcome. However, articles concerned on general chemical engineering process are not covered and out of scope of this journal
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