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使用环保离子液体配制稳定的柴油微乳液并研究其粒径和燃料特性作为替代燃料。

Formulation of a stable diesel microemulsion using eco-friendly ionic liquids and investigation of particle size and fuel properties as an alternative fuel.

作者信息

El Nagy H A, Abd El-Aziz Mohamed Mahmoud

机构信息

Chemistry Department, Faculty of Science, Suez Canal University, Ismailia, 41522, Egypt.

Abu Sultan Thermal Power Plant, East Delta Electricity Production Company, Ismailia, Egypt.

出版信息

Sci Rep. 2024 Aug 27;14(1):19819. doi: 10.1038/s41598-024-69856-9.

Abstract

Ecofriendly ionic liquids (ILs) were synthesized through amidation of ricinoleic acid, the main fatty acid in castor oil, followed by a quaternization reaction to solubilize ethanol in IL/diesel blends at different ratios. As a result, stable and highly renewable, low viscous microemulsion biofuels with high oxygen content were prepared. The prepared fuel samples combine the advantages of green ionic liquids and microemulsion properties. The chemical structures of ILs were confirmed with the aid of NMR and FTIR spectroscopy. DLS analysis revealed that the ethanol particles ranged in size from 8 to 18.1 nm in all samples. As ILs ratios decrease in microemulsion from 37 to 69%, the ethanol particle sizes increase from 10 to 25%. Ethanol shows good solubilization in diesel and IL-1 is more effective than IL-2 in ethanol solubilization at low percentages of ethanol due to more oxygen atoms besides three hydroxyl groups. The ternary phase diagram indicated that the microemulsion area in the case of using IL-1 is larger than that of IL-2. The fuel properties of the prepared microemulsions are nearly close to those of neat diesel and fall within the permitted range of ASTM D975. The viscosity and density values at low ratios of ILs are found to be very close to the values of the neat diesel at different temperatures. The prepared samples show a slight decrease in cetane number and heating value compared to diesel. However, they have improved flash points, cloud points, sulfur content, and acid value. The particle sizes were checked every week and the prepared samples showed high stability with the aid of the synthesized ILs. Moreover, the prepared microemulsions stayed in a transparent appearance for more than a year and no phase separation was observed.

摘要

通过蓖麻油中的主要脂肪酸蓖麻油酸的酰胺化反应合成了环境友好型离子液体(ILs),随后进行季铵化反应,以使乙醇以不同比例溶解在IL/柴油混合物中。结果,制备出了具有高氧含量的稳定、高度可再生且低粘度的微乳液生物燃料。所制备的燃料样品兼具绿色离子液体和微乳液特性的优点。借助核磁共振(NMR)和傅里叶变换红外光谱(FTIR)对离子液体的化学结构进行了确认。动态光散射(DLS)分析表明,所有样品中乙醇颗粒的尺寸范围为8至18.1纳米。随着微乳液中离子液体比例从37%降至69%,乙醇颗粒尺寸增加了10%至25%。乙醇在柴油中具有良好的溶解性,并且由于除三个羟基外还有更多氧原子,在乙醇含量较低时,IL-1在乙醇溶解方面比IL-2更有效。三元相图表明,使用IL-1时的微乳液区域比使用IL-2时更大。所制备微乳液的燃料特性与纯柴油几乎相近,且在ASTM D975的允许范围内。发现在离子液体比例较低时,其粘度和密度值在不同温度下与纯柴油的值非常接近。与柴油相比,所制备的样品十六烷值和热值略有下降。然而,它们的闪点、浊点、硫含量和酸值有所改善。每周检查颗粒尺寸,借助合成的离子液体,所制备的样品显示出高稳定性。此外,所制备的微乳液保持透明外观超过一年,未观察到相分离现象。

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