用一种被丢弃的蛤壳异质质将油膏转化为生物柴油

Y. Handayani, I. Simpen, I. S. Negara
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摘要

多相催化剂通常用于生物柴油的生产。以蟹壳制备的CaCO3为原料,采用煅烧法制备了CaO非均相催化剂。通过KOH活化和-Al2O3掺杂,成功制备了非均相催化剂。本研究的目的是确定CaO/?- al2o3多相催化剂及其油酸转化为生物柴油的性能。研究结果表明,CaO/?-Al2O3 100:7,表面碱度为209532 mmol g-1,活性位为12,6181x1019原子g-1,比表面积为42.0979 m2/g。使用CaO /?-Al2O3催化剂催化油酸制生物柴油,最佳反应浓度为5%,最佳油/甲醇摩尔比为1:9,最佳反应时间为120 min,油酸制生物柴油的产率为89.80%。所得生物柴油的密度(40℃)、运动粘度(40℃)、含水量、碘值为863 kg/m3,符合印尼国家标准(SNI 7182-2015);4.8中科;0.039%, 35.3562 g I2/100g。关键词:曹/ ?-Al2O3,油酸,生物柴油,多相催化剂。
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KONVERSI ASAM OLEAT MENJADI BIODIESEL MENGGUNAKAN KATALIS HETEROGEN CaO CANGKANG KEPITING TEREMBANKAN ?-Al2O3
Heterogeneous catalysts are commonly used in biodiesel production. The CaO heterogeneous catalyst can be prepared by calcination process from one source of CaCO3 prepared from crab shell. The preparation of heterogeneous catalyst was successfully carried out by activation with KOH and doped with ?-Al2O3. The purpose of this study is to determine the characteristics of the CaO/?-Al2O3heterogeneous catalyst and the performance of the catalyst for converting oleic acid into biodiesel. The results of this study that the best characteristics of catalyst were shown by CaO/?-Al2O3 100:7, which has a surface basicity was 20,9532 mmol g-1 with active sites 12,6181x1019atom g-1, and specific surface area of ??42.0979 m2/g. The results of using CaO /?-Al2O3 catalyst for converting oleic acid into biodiesel with the optimum concentration was 5%, the optimum oil/methanol molar ratio of 1:9, and the optimum reaction time of 120 minutes for converting oleic acid into biodiesel with the yield of 89.80%. The characteristics of the final biodiesel obtained had met the Indonesian National Standard (SNI 7182-2015) with density (at 40oC), kinematic viscosity (at 40oC), water content, iodine value were 863 kg/m3; 4.8 cSt; 0.039%, and 35.3562 g I2/100g, respectively. Keywords: CaO/?-Al2O3, oleic acid,biodiesel, heterogeneous catalyst.
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