WO3@MCM-41负载的碱土金属氧化物;玉米和废食用油制备生物柴油的双功能催化剂

Irsa Tariq , Muhammad Zubair , Waheed Iqbal , Amin Badshah , Syed Mustansar Abbas , Ali Haider
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引用次数: 0

摘要

这项工作的新颖之处在于开发了一种双功能酸碱催化剂,该催化剂由氧化钨(WO3)负载在介孔MCM-41上,并浸渍碱土金属氧化物(Mg, Ca, Sr, Ba)组成,可以同时进行酯化和酯交换,用于生产生物柴油。通过电位滴定法对催化剂的酸性和碱性进行了定量评估,确认了酸和碱位点的存在,这对于游离脂肪酸(FFAs)的同时酯化和甘油三酯的酯交换是必不可少的。这种双功能对于FFA含量高的原料(如废食用油)尤其有利,解决了生物柴油合成中的一个关键挑战。sro催化剂表现出优异的性能,玉米油的收率为96%,废食用油的收率为93%,由于后者的杂质和较高的FFA含量,收率差异最小,仅为3%。研究还对反应条件进行了详细的优化,发现废食用油的反应条件(100°C, 6 h, 20 mg催化剂)略高于玉米油(80°C, 5 h, 10 mg催化剂),这与其复杂的成分相一致。综合表征(PXRD, SEM-EDX, BET/BJH)和1H NMR波谱验证(玉米和废食用油的收率分别为92%和91%)证实了结果的可靠性。此外,生物柴油的物理化学特性进行了彻底的检查,并与ASTM生物柴油的要求进行了对比。结果表明,所制生物柴油的各项性能达到国际标准要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Alkaline earth metal oxides supported on WO3@MCM-41; bifunctional catalysts for biodiesel production from corn and waste cooking oil
The novelty of this work lies in the development of a bifunctional acid-base catalyst comprising tungsten oxide (WO3) supported on mesoporous MCM-41 and impregnated with alkaline earth metal oxides (Mg, Ca, Sr, Ba), which enables simultaneous esterification and transesterification for biodiesel production. The acidic and basic properties of the catalysts were quantitatively assessed through potentiometric titration, confirming the presence of both acid and basic sites, which are essential for the concurrent esterification of free fatty acids (FFAs) and transesterification of triglycerides. This bifunctionality is particularly advantageous for feedstocks with high FFA content, such as waste cooking oil, addressing a key challenge in biodiesel synthesis. The SrO-based catalyst demonstrated exceptional performance, achieving yields of 96 % for corn oil and 93 % for waste cooking oil, with minimal yield differences of 3 % attributed to the latter's impurities and higher FFA content. The study also provides detailed optimization of reaction conditions, revealing that waste cooking oil requires slightly harsher conditions (100 °C, 6 h, 20 mg catalyst) compared to corn oil (80 °C, 5 h, 10 mg catalyst), which is consistent with its complex composition. Comprehensive characterization (PXRD, SEM-EDX, BET/BJH) and validation through 1H NMR spectroscopy (yields of 92 % and 91 % for corn and waste cooking oil, respectively) confirm the reliability of the results. Moreover, the biodiesel's physicochemical characteristics were examined thoroughly and contrasted with the ASTM biodiesel requirements. The outcomes demonstrated that the generated biodiesel's characteristics met the requirements of international standards.
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