Catalytic production and application of bio-renewable butyl butyrate as jet fuel blend- A review

喷气燃料 催化作用 化学 离子液体 化学工程 有机化学 产量(工程) 丁酸 柴油 可再生资源 可再生能源 材料科学 电气工程 工程类 冶金
作者
Nidhi Kushwaha,Debarun Banerjee,Khwaja Alamgir Ahmad,Nagaraj P. Shetti,Tejraj M. Aminabhavi,Kamal K. Pant,Ejaz Ahmạd
出处
期刊:Journal of Environmental Management [Elsevier BV]
卷期号:310: 114772-114772 被引量:12
标识
DOI:10.1016/j.jenvman.2022.114772
摘要

Butyl butyrate (BB) derived from bio-renewable resources is the most promising jet fuel blend. This review highlights essential properties of jet fuel, including calorific value, kinematic viscosity, freezing point, flash point, auto-ignition temperature, and density to compare with different bio-renewable chemicals, which are compatible to be blended with the jet fuel. A detailed discussion follows on the importance of intermediate formation, reaction mechanism, and catalyst properties that are critical towards the production of bio-renewable resource-derived BB. BB is primarily produced via the esterification of butyric acid (BA) in butanol (BuOH) with or without using a catalyst. The corresponding reactions are carried out in both homogeneous and heterogeneous phases, provided it has acidic properties. Thus, a wide range of acidic catalysts such as [HSO3-pmim] HSO4 ionic liquids, heteropolyacid, methanesulfonic acid, Dowex 50 Wx8-400 resins, and sulfonated char causes up to 98%, 97.9%, 93.2%, 95.3%, and 90% of BB yield, respectively are critically reviewed. Moreover, reaction mechanism, product, and by-product formation that primarily dictate the BB yield and selectivity have been comprehensively reviewed. In addition, catalytic and mechanistic insights on BB production from other bio-renewable resources such as butyric anhydride, butyraldehyde, dibutyl ether, and methanol have been discussed in this review.
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