用爪哇油辣木叶灰生产的绿色可持续异相催化剂用于茶籽油酯交换反应的研究

Q3 Engineering
Destania Ayu, Wega Ramdhani, Trisunaryanti, Triyono
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引用次数: 0

摘要

使用爪哇油辣木叶灰催化剂在不同反应条件下将茶籽油酯交换成生物柴油的研究已经完成。MA-500(辣木灰在 500°C 煅烧 3 小时)和 MA-900(辣木灰在 900°C 煅烧 3 小时)催化剂是通过研磨爪哇老油辣木叶(MP),然后在 500°C 和 900°C 煅烧 3 小时得到的。在继续酯化过程(ODE)之前,对粗茶籽油进行脱胶(OD)。在不同催化剂重量(3、6 和 9%(重量比))、反应温度(55、60 和 65°C)、油:甲醇摩尔比(1:3、1:6 和 1:9)和反应时间(60、90、120 和 150 分钟)条件下,通过 ODE 酯交换反应测试 MA-500 和 MA-900 催化剂的活性和选择性。结果表明,MA-500 和 MA-900 催化剂的钙含量分别为 18.17% 和 52.91%。酯化反应可将 FFA 含量从 19.46% 降至 1.98%,降幅达 89.82%。在催化剂重量为 3%、反应温度为 60°C、油:甲醇摩尔比为 1:9、反应时间为 120 分钟的最佳反应条件下,使用 MA-900 催化剂进行 ODE 酯化反应,观察到 76.17% 的 FAME 收率。MA-900 催化剂有望成为一种有效的绿色催化剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study of green and sustainable heterogeneous catalyst produced from Javanese Moringa oleifera leaf ash for the transesterification of Calophyllum inophyllum seed oil
The transesterification of Calophyllum inophyllum seed oil into biodiesel using Javanese Moringa oleifera leaf ash catalyst with various reaction conditions has been completed. MA-500 (Moringa ash at 500°C for 3 h) and MA-900 (Moringa ash at 900°C for 3 h) catalysts were obtained by grinding Javanese old Moringa oleifera leaf (MP) and then calcined for 3 h at 500 and 900°C. The crude Calophyllum inophyllum seed oil was degummed (OD) prior to continue the esterification process (ODE). The MA-500 and MA-900 catalysts were tested for their activity and selectivity through the ODE transesterification with various catalyst weights (3, 6, and 9% (w/w)), reaction temperature (55, 60, and 65°C), oil: methanol mole ratio (1:3, 1:6, and 1:9), and reaction time (60, 90, 120, and 150 minutes). The results showed that the MA-500 and MA-900 catalysts contained 18.17% and 52.91% Ca respectively. The esterification reaction could reduce FFA levels to 89.82%, from 19.46% to 1.98%. ODE transesterification with MA-900 catalyst optimum reaction conditions with a catalyst weight of 3%, reaction temperature of 60°C, oil: methanol mole ratio of 1:9, and reaction time of 120 min, 76.17% FAME yield was observed. The MA-900 catalyst has the potential to be an effective green catalyst.
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来源期刊
Communications in Science and Technology
Communications in Science and Technology Engineering-Engineering (all)
CiteScore
3.20
自引率
0.00%
发文量
13
审稿时长
24 weeks
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