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Highly active, stable, and recyclable magnetic nano-size solid acid catalysts: efficient esterification of free fatty acid in grease to produce biodiesel

机译:高活性,稳定且可回收的磁性纳米级固体酸催化剂:油脂中游离脂肪酸的有效酯化以生产生物柴油

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摘要

Magnetic nano-size solid acid catalysts were prepared, characterized, and examined, for the first time, for the esterification of free fatty acid (FFA) to develop a green and efficient pretreatment step for producing biodiesel (fatty acid methyl ester, FAME) from waste grease containing FFA. PGMA-cat 4, consisting of a core of iron oxide magnetic nanoparticles (MNPs), a poly(glycidyl methacrylate) (PGMA) shell, and sulfonic acid groups on the surface, was synthesized in 98% yield from the corresponding core-shell structured PGMA-MNPs containing epoxy surface groups by gentle sulfonation with Na2SO3, possessing a mean size of 90 nm, high acid capacity of 2.3 mmol H~+ g~(-1), and excellent superparamagnetic properties. Esterification of FFA (16 wt%) in grease with methanol using this catalyst (4 wt%) gave 96% conversion of FFA to FAME within 2 h. PGMA-cat 4 was easily separated under a magnetic field and showed no loss of productivity during 10 cycles. In comparison, PS-cat 12, consisting of a core of iron oxide MNPs, a polystyrene shell, and benzenesulfonic acids on the surface, was active but possessed no recyclability; Si-cat 14, consisting of a core of iron oxide MNPs, a silica shell, and sulfonic acids as surface groups, showed lower activity and poor recycling performance. The catalytic performance of PGMA-cat 4 was also better than those of the micro-size counterpart such as PGMA-cat (m) 15 and large-size solid acid catalysts such as Amberlyst 15. Thus, a novel, active, stable, and recyclable magnetic nano-size solid acid catalyst was successfully developed for the green and efficient esterification of FFA in grease as a pretreatment step to produce biodiesel from waste grease.
机译:首次制备,表征和检测磁性纳米级固体酸催化剂,以进行游离脂肪酸(FFA)的酯化反应,以开发一种绿色高效的预处理步骤,以从中生产生物柴油(脂肪酸甲酯,FAME)含FFA的废油脂。 PGMA-cat 4由相应的核-壳结构合成,由氧化铁磁性纳米颗粒(MNP)的核,聚甲基丙烯酸缩水甘油酯(PGMA)壳和表面上的磺酸基组成,其收率为98%。 PGMA-MNPs通过Na2SO3的轻度磺化而具有环氧基表面基团,平均大小为90 nm,高酸容量为2.3 mmol H〜+ g〜(-1),并且具有优异的超顺磁性。使用该催化剂(4 wt%)将甲醇中的FFA(16 wt%)酯化,在2小时内将FFA转化为FAME达到96%。 PGMA-cat 4在磁场下很容易分离,在10个循环中未显示出生产率损失。相比之下,由氧化铁MNPs的核,聚苯乙烯壳和表面上的苯磺酸组成的PS-cat 12具有活性,但不具有可回收性。 Si-cat 14由氧化铁MNPs的核,二氧化硅壳和磺酸作为表面基团组成,具有较低的活性和较差的回收性能。 PGMA-cat 4的催化性能也优于PGMA-cat(m)15等微型催化剂和Amberlyst 15等大型固体酸催化剂。因此,该催化剂具有新颖,活性,稳定性和稳定性。成功开发了可回收的磁性纳米级固体酸催化剂,用于油脂中FFA的绿色高效酯化,作为从废油脂中生产生物柴油的预处理步骤。

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