Biodiesel Synthesis from the Used Cooking Oil Using CaO Catalyst Derived from Waste Animal Bones

IF 1 Q4 CHEMISTRY, MULTIDISCIPLINARY Chemistry & Chemical Technology Pub Date : 2021-11-25 DOI:10.23939/chcht15.04.583
L. Buchori, D. Anggoro, A. Ma'ruf
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引用次数: 2

Abstract

The synthesis of biodiesel from the used cooking oil with CaO catalyst from waste animal bones has been investigated. The content of free fatty acids (FFA) in the used cooking oil was reduced by adsorption using activated charcoal from a salak peel. Biodiesel synthesis was carried out via transesterification using CaO catalyst. The CaO catalyst was obtained from waste animal bones calcined in the Ney Vulcan furnace. The effect of calcination temperature was studied in the range of 873‒1273 K. The effect of catalyst loading was investigated by varying within the range of 1‒9 wt %. The methanol to oil molar ratio was investigated in the range from 6:1 to 18:1. The effect of the transesterification reaction time was studied with a time variation of 1‒5 h. The optimum operating conditions were determined. Under these conditions, the yield of biodiesel produced was 97.56 % with an ester content of 96.06 %. It was shown that the physicochemical properties of biodiesel produced meet the standards.
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从废动物骨骼中提取CaO催化剂,从废食用油中合成生物柴油
研究了以废兽骨为原料,以CaO为催化剂,以废食用油为原料合成生物柴油的工艺。以salak果皮为原料,采用活性炭吸附法降低了废食用油中游离脂肪酸的含量。以CaO为催化剂,通过酯交换反应合成生物柴油。CaO催化剂是从neyvulcan炉煅烧的废动物骨中获得的。在873 ~ 1273 K范围内研究了煅烧温度的影响。在1-9 wt %的范围内考察了催化剂负载的影响。甲醇与油的摩尔比在6:1 ~ 18:1范围内进行了研究。研究了酯交换反应时间的影响,时间变化为1 ~ 5 h,确定了最佳操作条件。在此条件下,生物柴油的收率为97.56%,酯含量为96.06%。结果表明,所制生物柴油的理化性能均达到标准要求。
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来源期刊
Chemistry & Chemical Technology
Chemistry & Chemical Technology CHEMISTRY, MULTIDISCIPLINARY-
CiteScore
1.70
自引率
44.40%
发文量
60
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