反应时间和温度对以棕榈油为原料微波加热合成甲酯磺酸盐表面活性剂的影响

Q4 Chemical Engineering ASEAN Journal of Chemical Engineering Pub Date : 2021-06-30 DOI:10.22146/ajche.63786
L. Qadariyah, S. Sahila, M. Mahfud
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引用次数: 3

摘要

甲酯磺酸盐是一种阴离子表面活性剂,以棕榈油为原料,加入亚硫酸氢钠和氧化钙催化剂,采用微波辅助加热的酯交换磺化工艺合成。研究了微波辅助加热对酯交换-磺化反应的影响。在添加1%的KOH催化剂的条件下,在300瓦的微波功率下进行10分钟的酯交换反应。经酯交换反应得到的棕榈油甲酯收率高达98%,密度为0.8546克/毫升,运动粘度为3.19 cSt。采用棕榈油甲酯与亚硫酸氢钠摩尔比为1:3,氧化钙催化剂用量为1.5%,微波功率为300瓦,改变磺化时间和磺化温度,进行磺化过程。分析了甲酯磺酸盐的理化性质,并用红外光谱对磺酸基进行了表征。在温度为100℃、磺化时间为40 min的条件下,磺化产物的收率为98.68%,密度为0.8657 gr/ml,粘度为3.75 cSt, pH为2.12,表面张力为27.34 dyne/cm。
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The Effect of Reaction Time and Temperature on the Synthesis of Methyl Ester Sulfonate Surfactant from Palm Oil as a Feedstock using Microwave-Assisted Heating
Methyl ester sulfonate is an anionic surfactant that can be synthesized from palm oil as a raw material with the addition of sodium bisulfite and calcium oxide catalyst through transesterification and sulfonation process using microwave-assisted heating. The effect of microwave-assisted heating in the transesterification-sulfonation process was investigated in this study. The transesterification process was carried out using a microwave power of 300 watts for 10 minutes with an addition of a KOH catalyst of 1%. The transesterification process gave a result of palm oil methyl ester with a yield of up to 98% and density of 0.8546 gr/ml, and kinematic viscosity of 3.19 cSt. The sulfonation process is carried out using palm oil methyl ester and sodium bisulfite with a mole ratio of 1:3 and calcium oxide catalyst of 1.5% with the microwave power of 300 watts while varying the sulfonation time and temperature. The physicochemical properties of methyl ester sulfonate were analyzed, and the sulfonate group was characterized using FTIR. The optimum condition gave a yield of up to 98.68%, the density of 0.8657 gr/ml, viscosity of 3.75 cSt, pH of 2.12, and surface tension of up to 27.34 dyne/cm at a temperature of 100oC and sulfonation time of 40 minutes.
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来源期刊
ASEAN Journal of Chemical Engineering
ASEAN Journal of Chemical Engineering Chemical Engineering-Chemical Engineering (all)
CiteScore
1.00
自引率
0.00%
发文量
15
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