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利用强化蛋壳衍生 CaO 纳米催化剂,从废弃食用油与混合甲醇-乙醇中生产改良生物柴油。

Improved biodiesel production from waste cooking oil with mixed methanol-ethanol using enhanced eggshell-derived CaO nano-catalyst.

机构信息

Center for Environmental Science, College of Natural and Computational Sciences, Addis Ababa University, P. O. Box 1176, Addis Ababa, Ethiopia.

Ethiopia Chemical and Construction Inputs Industry Development Institute, P. O. Box 4124, Addis Ababa, Ethiopia.

出版信息

Sci Rep. 2021 Mar 23;11(1):6708. doi: 10.1038/s41598-021-86062-z.

Abstract

In this report, the utilization of mixed methanol-ethanol system for the production of biodiesel from waste cooking oil (WCO) using enhanced eggshell-derived calcium oxide (CaO) nano-catalyst was investigated. CaO nano-catalyst was produced by calcination of eggshell powder at 900 °C and followed by hydration-dehydration treatment to improve its catalytic activity. The particle size, morphology, and elemental composition of a catalyst were characterized by using XRD, SEM, and EDX techniques, respectively. After hydration-dehydration the shape of a catalyst was changed from a rod-like to honeycomb-like porous microstructure. Likewise, average particle size was reduced from 21.30 to 13.53 nm, as a result, its surface area increases. The main factors affecting the biodiesel yield were investigated, accordingly, an optimal biodiesel yield of 94% was obtained at 1:12 oil to methanol molar ratio, 2.5 wt% catalyst loading, 60 °C, and 120-min reaction time. A biodiesel yield of 88% was obtained using 6:6 equimolar ratio of methanol to ethanol, the yield even increased to 91% by increasing the catalyst loading to 3.5 wt%. Moreover, by slightly increasing the share of methanol in the mixture, at 8:4 ratio, the maximum biodiesel yield could reach 92%. Therefore, we suggest the utilization of methanol-ethanol mixture as a reactant and eggshell-derived CaO as a catalyst for enhanced conversion of WCO into biodiesel. It is a very promising approach for the development of low-cost and environmentally friendly technology. Properties of the biodiesel were also found in good agreement with the American (ASTM D6571) fuel standards.

摘要

本报告研究了利用混合甲醇-乙醇体系,以蛋壳衍生的氧化钙(CaO)纳米催化剂为催化剂,从废弃食用油(WCO)生产生物柴油。CaO 纳米催化剂是通过在 900°C 下煅烧蛋壳粉,然后进行水合-脱水处理来提高其催化活性而制备的。催化剂的粒径、形态和元素组成分别采用 XRD、SEM 和 EDX 技术进行了表征。水合-脱水后,催化剂的形状从棒状变为蜂窝状多孔微观结构。同样,平均粒径从 21.30nm 减小到 13.53nm,因此其表面积增加。考察了影响生物柴油产率的主要因素,结果在油与甲醇摩尔比为 1:12、催化剂负载量为 2.5wt%、反应温度为 60°C、反应时间为 120min 的条件下,生物柴油的产率最高可达 94%。使用甲醇与乙醇等摩尔比 6:6,产率甚至提高到 91%,催化剂负载量增加到 3.5wt%。此外,通过略微增加甲醇在混合物中的份额,在 8:4 比例下,最大生物柴油产率可达到 92%。因此,我们建议使用甲醇-乙醇混合物作为反应物,蛋壳衍生的 CaO 作为催化剂,以提高 WCO 转化为生物柴油的转化率。这是开发低成本、环保技术的一种很有前途的方法。生物柴油的性能也与美国(ASTM D6571)燃料标准非常吻合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f003/7988067/677ab671c703/41598_2021_86062_Fig3_HTML.jpg

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