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New Task-Specific and Reusable ZIF-like Grafted H6P2W18O62 Catalyst for the Effective Esterification of Free Fatty Acids

机译:特异性任务和可重复使用的ZIF样植物H6P2W18O62催化剂,用于游离脂肪酸的有效酯化

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The catalytic esterification of free fatty acids is an important reaction pathway for chemical synthesis and biodiesel production, wherein efficient heterogeneous catalysts are sought to replace mineral acids. Herein, the esterification of oleic acid together with some familiar fatty acids is demonstrated with methanol over a heterogeneous heteropolyacid-functionalized zeolite imidazolate framework [H_(6–n )P_(2)W_(18)O_(62)~(n –)/ZIF(H_(n) His.)~(+n )]. This new heterogeneous catalyst (named as HPA/ZIF(His.) throughout the text) with an average particle size of 80 nm was prepared via condensation of histamine with zinc chloride and characterized by means of Fourier transform infrared (FT-IR), X-ray diffraction (XRD), UV–vis, energy-dispersive X-ray spectrometry, Brunauer–Emmett–Teller, thermogravimetric analysis (TGA), inductively coupled plasma - optical emission spectrometry (ICP-OES), and scanning electron microscopy. According to the performed characterizations, an HPA loading of 40.5 wt % is obtained for HPA/ZIF(His.) from ICP-OES analysis. Moreover, a typical type-IV isotherm with similar adsorption–desorption properties as seen for ZIF-8 is attained. In addition, TGA measurement confirms less stability of HPA/ZIF(His.) compared to that of pure ZIF(His.). The catalytic performance of the nanomaterial is evaluated with respect to temperature, catalyst loading, and methanol/oleic acid ratio and leads to a high yield of methyl ester (>90%) under reflux for 4 h. The preliminary kinetic studies confirm a pseudo-first-order kinetic model for the esterification of oleic acid. To explore the scope of the HPA/ZIF(His.) catalyst in methyl ester production, other free fatty acids with various chain lengths are also successfully tested. Although the nanocatalyst loses a part of its activity during reuse, however, it is stable over at least four recycles as confirmed by XRD and FT-IR. Eventually, the response surface methodology (RSM) is used as a statistical modeling approach to get the best-optimized reaction conditions compared to the performed single-variable benchmarking experiments. Therefore, the central composite design (CCD) and RSM attained a platform to determine the relationship among the reaction time, acid/methanol molar ratio, and catalyst dosage.
机译:游离脂肪酸的催化酯化是化学合成和生物柴油生产的重要反应途径,其中寻求有效的异质催化剂代替无机酸。在此,用甲醇在非均相杂酸官能化沸石上证明油酸与一些熟悉的脂肪酸的酯化在非均相杂酰官能化沸石上咪唑酯框架[H_(6- N)P_(2)W_(18)O_(62)〜( n - )/ zif(h _(n)他。)〜(+ n)]。通过氯化锌的组胺缩合制备这种新的异质催化剂(在整个文本中命名为HPA / ZIF(他的。)的整个文本中的颗粒尺寸。通过傅里叶变换红外(FT-IR),X表征。 - 射线衍射(XRD),UV-VI,能量分散X射线光谱,Brunauer-Emmett-Teller,热重分析(TGA),电感耦合等离子体 - 光发射光谱法(ICP-OES)和扫描电子显微镜。根据进行的表征,从ICP-OES分析中获得HPA / ZIF(他)的HPA / ZIF%的HPA负载。此外,达到了具有与ZIF-8相似的吸附 - 解吸性质的典型IV类等温仪。此外,与纯ZIF(他的)相比,TGA测量确认HPA / ZIF(他的。)的稳定性较少。在回流下,相对于温度,催化剂负荷和甲醇/油酸比评价纳米材料的催化性能,并导致高产甲酯(> 90%)4小时。初步动力学研究证实了一种用于油酸酯化的伪第一阶动力学模型。探讨HPA / ZIF(他的)催化剂在甲酯生产中的范围,还成功地测试了具有各种链长的其他游离脂肪酸。尽管纳米催化剂在重用期间失去了其活性的一部分,但是,通过XRD和FT-IR确认的至少四次回收是稳定的。最终,与执行的单可变基准测试实验相比,响应面方法(RSM)用作统计建模方法以获得最佳优化的反应条件。因此,中央复合设计(CCD)和RSM达到了确定反应时间,酸/甲醇摩尔比和催化剂剂量之间的关系的平台。

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