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生物可再生甘油催化缩醛化制备燃料添加剂的综述

A Review on the Catalytic Acetalization of Bio-renewable Glycerol to Fuel Additives.

作者信息

Talebian-Kiakalaieh Amin, Amin Nor Aishah Saidina, Najaafi Neda, Tarighi Sara

机构信息

Faculty of Petrochemicals, Iran Polymer and Petrochemical Institute (IPPI), Tehran, Iran.

Chemical Reaction Engineering Group, Faculty of Chemical and Energy Engineering, Universiti Teknologi Malaysia (UTM), Skudai, Malaysia.

出版信息

Front Chem. 2018 Nov 26;6:573. doi: 10.3389/fchem.2018.00573. eCollection 2018.

Abstract

The last 20 years have seen an unprecedented breakthrough in the biodiesel industry worldwide leads to abundance of glycerol. Therefore, the economic utilization of glycerol to various value-added chemicals is vital for the sustainability of the biodiesel industry. One of the promising processes is acetalization of glycerol to acetals and ketals for applications as fuel additives. These products could be obtained by acid-catalyzed reaction of glycerol with aldehydes and ketones. Application of different supported heterogeneous catalysts such as zeolites, heteropoly acids, metal-based and acid-exchange resins have been evaluated comprehensively in this field. In this review, the glycerol acetalization has been reported, focusing on innovative and potential technologies for sustainable production of solketal. In addition, the impacts of various parameters such as application of different reactants, reaction temperature, water removal, utilization of crude-glycerol on catalytic activity in both batch and continuous processes are discussed. The outcomes of this research will therefore significantly improve the technology required in tomorrow's bio-refineries. This review provides spectacular opportunities for us to use such renewables and will consequently benefit the industry, environment and economy.

摘要

在过去20年里,全球生物柴油行业取得了前所未有的突破,导致甘油产量过剩。因此,将甘油经济地转化为各种增值化学品对于生物柴油行业的可持续发展至关重要。一种有前景的方法是将甘油缩醛化为缩醛和缩酮,用作燃料添加剂。这些产品可通过甘油与醛和酮的酸催化反应获得。在该领域已全面评估了不同负载型多相催化剂(如沸石、杂多酸、金属基和酸交换树脂)的应用。在本综述中,已报道了甘油缩醛化反应,重点关注可持续生产丙酮缩甘油的创新和潜在技术。此外,还讨论了不同反应物的应用、反应温度、水的去除、粗甘油的利用等各种参数对间歇和连续过程中催化活性的影响。因此,本研究的成果将显著改进未来生物炼制所需的技术。本综述为我们利用此类可再生资源提供了绝佳机会,从而将使行业、环境和经济受益。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/10ae/6275326/2982f32a71f5/fchem-06-00573-g0001.jpg

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