用氧化钙(CaO)催化剂从巴豆籽油中生产生物柴油的优化和表征:种子和果仁的潜力评估

IF 7.1 Q1 ENERGY & FUELS Energy Conversion and Management-X Pub Date : 2024-10-01 DOI:10.1016/j.ecmx.2024.100791
Adem Siraj Mohammed , Venkata Ramaya Ancha , Samson Mekbib Atnaw
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引用次数: 0

摘要

Croton macrostachyus(CMS)是一种广泛存在于埃塞俄比亚次生林和生产力较低土地上的快速生长的非食用植物,本研究调查了这种植物作为生物柴油原料的用途。该研究比较了种子和果核的产油量,评估了所得生物柴油的氧化稳定性,并使用 CaO 催化剂与甲醇的新型组合进行了酯交换反应,这是以前的研究从未探讨过的。种子和果核的产油率分别为 40.8% 和 50.3%。通过煅烧工艺从蛋壳中提取了氧化钙(CaO),并使用 BET、SEM-EDX 和傅立叶变换红外技术对其进行了表征,以评估其作为生物柴油生产的异质催化剂的适用性。在反应温度(60 °C)和搅拌速度(450 rpm)保持不变的情况下,采用基于响应面方法(RSM)的盒-贝肯设计(BBD)优化反应参数,包括反应时间(60-120 分钟)、甲醇-油摩尔比(4:1-12:1)和催化剂浓度(1 %-5 %)。方差分析(ANOVA)显示,测定系数(R2 和 R2 adj)分别为 99.42 % 和 98.38 %,表明实验值和预测值之间具有很强的相关性。甲醇与油的摩尔比为 8.44:1,催化剂浓度为 2.78%,反应时间为 108 分钟,这些条件确定了 CMS 生物柴油最高产量(98.314%)的最佳条件。CMS 生物柴油的氧化稳定性诱导时间为 2.3 小时,但由于添加了 TBHQ 抗氧化剂,氧化稳定性提高到了 16.17 小时。所有理化性质均与 ASTM D6751 和 EN 14214 生物柴油标准进行了比较,表明所生产的生物柴油适用于内燃机应用。
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Optimization of biodiesel production from Croton Macrostachyus seed oil with calcium oxide (CaO) catalyst and Characterization: Potential assessment of seed and kernel
This study investigates the use of Croton macrostachyus (CMS), a widely available, fast-growing, non-edible plant common in Ethiopia’s secondary forests and less productive lands, as a biodiesel feedstock. The research compared oil yields from the seed and kernel, assessed the oxidation stability of the resulting biodiesel, and conducted transesterification using a novel combination of a CaO catalyst with methanol, which had not been explored in previous studies. Oil yield was obtained 40.8 % from the seed and 50.3 % from the kernel. Calcium oxide (CaO) was derived from eggshells through a calcination process and characterized using BET, SEM-EDX, and FTIR techniques to assess its suitability as a heterogeneous catalyst for biodiesel production. The Box-Behnken design (BBD) based on the response surface methodology (RSM) was used to optimize the reaction parameters, including reaction time (60–120 min), methanol to oil molar ratio (4:1 – 12:1), and catalyst concentration (1 % – 5 %), while the reaction temperature (60 °C) and stirring speed (450 rpm) were kept constant. Analysis of variance (ANOVA) showed that the coefficients of determination (R2 and R2 adj) were 99.42 % and 98.38 %, respectively, indicating a strong correlation between experimental and predicted values. The optimum conditions identified for maximum yield of CMS biodiesel (98.314 %) were a methanol to oil molar ratio of 8.44:1, a catalyst concentration of 2.78 %, and a reaction time of 108 min. The oxidation stability of the CMS biodiesel was obtained an induction time of 2.3 h but was enhanced to 16.17 h due to the addition of TBHQ antioxidant. All physiochemical properties were compared with ASTM D6751 and EN 14214 biodiesel standards, demonstrating that the biodiesel produced is suitable for internal combustion engine applications.
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来源期刊
CiteScore
8.80
自引率
3.20%
发文量
180
审稿时长
58 days
期刊介绍: Energy Conversion and Management: X is the open access extension of the reputable journal Energy Conversion and Management, serving as a platform for interdisciplinary research on a wide array of critical energy subjects. The journal is dedicated to publishing original contributions and in-depth technical review articles that present groundbreaking research on topics spanning energy generation, utilization, conversion, storage, transmission, conservation, management, and sustainability. The scope of Energy Conversion and Management: X encompasses various forms of energy, including mechanical, thermal, nuclear, chemical, electromagnetic, magnetic, and electric energy. It addresses all known energy resources, highlighting both conventional sources like fossil fuels and nuclear power, as well as renewable resources such as solar, biomass, hydro, wind, geothermal, and ocean energy.
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