将甘油转化为单甘油酯和双甘油酯:原料、强化反应器、挑战和前景

IF 3.8 3区 工程技术 Q3 ENERGY & FUELS Chemical Engineering and Processing - Process Intensification Pub Date : 2024-09-08 DOI:10.1016/j.cep.2024.109978
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引用次数: 0

摘要

生物柴油生产过程中产生的剩余粗甘油可通过甘油三酯、游离脂肪酸和脂肪酸甲酯等各种原料的甘油分解,转化为价值更高的单甘油酯(MGs)和双甘油酯(DGs)。这些产品作为乳化剂、稳定剂和营养剂广泛应用于食品和制药行业。要生产高纯度的 MGs 和 DGs,就必须消耗大量能源,以保持较高的反应温度,并进行高真空或分子蒸馏。本视角讨论了涉及不同反应路线和副产品的各种潜在原料,操作参数对甘油转化率、MGs 和 DGs 选择性的影响,以及提高反应性能的各种强化反应器。此外,还强调了甘油成功用于 MGs 和 DGs 的关键挑战和前景。
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Valorization of glycerol to mono- and di-glycerides: Feedstocks, intensified reactors, challenges and perspectives

The surplus of crude glycerol from biodiesel production can be valorized by the glycerolysis of various feedstocks such as triglycerides, free fatty acids, and fatty acid methyl esters to higher-value monoglycerides (MGs) and diglycerides (DGs). These products are widely used in the food and pharmaceutical industries as emulsifying, stabilizing, and nutritional agents. High purity of MGs and DGs production necessitates high energy consumption to maintain a high reaction temperature and to operate a high vacuum or molecular distillation. This perspective discusses various potential feedstocks that involve different reaction routes and by-products, the effects of operating parameters on glycerol conversion, MGs and DGs selectivities, and various intensified reactors to enhance the reaction performance. In addition, key challenges and perspectives for the success of glycerol valorization for MGs and DGs are highlighted.

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来源期刊
CiteScore
7.80
自引率
9.30%
发文量
408
审稿时长
49 days
期刊介绍: Chemical Engineering and Processing: Process Intensification is intended for practicing researchers in industry and academia, working in the field of Process Engineering and related to the subject of Process Intensification.Articles published in the Journal demonstrate how novel discoveries, developments and theories in the field of Process Engineering and in particular Process Intensification may be used for analysis and design of innovative equipment and processing methods with substantially improved sustainability, efficiency and environmental performance.
期刊最新文献
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