首页> 外文期刊>Catalysis Letters >Biodiesel Production from Acidic Oils Using Polyoxometalate-Based Sulfonated Ionic Liquids Functionalized Metal-Organic Frameworks
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Biodiesel Production from Acidic Oils Using Polyoxometalate-Based Sulfonated Ionic Liquids Functionalized Metal-Organic Frameworks

机译:生物柴油生产从酸性油使用的聚氧酸盐基磺化离子液体官能化金属 - 有机框架

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摘要

An efficient and recyclable catalyst, namely phosphomolybdenum-based sulfonated ionic liquids (ILs) functionalized MIL-100(Fe) metal-organic framework (AIL/HPMo/MIL-100(Fe)), was developed for the production of biodiesel via the transesterification-esterifications of acidic oils. For this goal, the MIL-100(Fe) metal-organic framework (MOF) was initially modified with phosphomolybdic acid (HPMo), and then the acidic ionic liquid (AIL) was immobilized on the prepared HPMo/MIL-100(Fe) composite through ion-exchange of 1-(propyl-3-sulfonate)imidazolium hydrogen sulfate with HPMo. The as-developed AIL/HPMo/MIL-100(Fe) catalyst possessed enhanced surface acidities, endowing the merits of Lewis and Bronsted acids with a heterogeneous microreactor of MOFs and favoring the better catalytic performance. The characterization results corroborated that the polyoxometalate-based ILs were incorporated into the MIL-100(Fe), and the porous structure of the MIL-100(Fe) maintained nearly unchangeable after the synthesis processes. The AIL/HPMo/MIL-100(Fe) catalyst could perform simultaneous transesterification of soybean oil and esterification of free fatty acids (FFAs) with long-term catalytic durability. The conversion of acidic oils using this solid catalyst gave 92.3% oil conversion for the transesterification of soybean oil and full FFA conversion for the esterification of FFAs with the methanol/oil molar ratio of 30:1 at 120 degrees C, showing potential applications for the production of biodiesel particularly from acidic oil feedstocks.Graphical AbstractSynopsis: Phosphomolybdenum-based sulfonated ionic liquids (ILs) functionalized MIL-100(Fe) metal-organic framework composites are fabricated and then utilized as efficient and recyclable catalysts for the production of biodiesel via one-pot transesterification-esterifications of acidic oils.
机译:一种高效且可回收的催化剂,即磷钼基磺化离子液体(ILS)官能化MIL-100(Fe)金属 - 有机框架(AIL / HPMO / MIL-100(Fe)),用于通过酯交换生产生物柴油 - 酯化油。对于该目标,MIL-100(Fe)金属 - 有机框架(MOF)最初用磷钼酸(HPMO)改性,然后将酸性离子液体(AIL)固定在制备的HPMO / MIL-100(Fe)上固定通过离子交换1-(丙基-3-磺酸盐)咪唑硫酸氢铵与HPMO的复合材料。 AS开发的AIL / HPMO / MIL-100(Fe)催化剂具有增强的表面酸,赋予Lewis和BrOnsted酸的优点,其具有MOF的异质微反应器,并有利于更好的催化性能。表征结果证实,将基于多氧酸盐的ILS掺入MIL-100(Fe)中,并且在合成过程之后,MIL-100(Fe)的多孔结构几乎不变。 AIL / HPMO / MIL-100(Fe)催化剂可以通过长期催化耐久性进行大豆油和游离脂肪酸(FFA)的酯化的同时酯交换。使用该固体催化剂的酸性油的转化为豆油酯化的酯交换和全FFA转化的酯化酯化的油转化为甲醇/油摩尔比在120摄氏度下为30:1,显示出潜在的应用产生生物柴油,特别是从酸性油原料中产生:制造磷钼基磺化离子液体(ILS)官能化的MIL-100(Fe)金属 - 有机骨架复合材料,然后用作通过一个生产生物柴油的有效和可回收催化剂的催化剂。 -Pot酯交换酯化 - 酸性油的酯化。

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