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Synthesis of Seaweed Based Carbon Acid Catalyst by Thermal Decomposition of Ammonium Sulfate for Biodiesel Production

机译:通过硫酸铵热分解对生物柴油生产的热分解的合成氧化碳酸催化剂

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Experiment was carried out to study the feasibility of biomass derived solid acid catalyst for the production of biodiesel using Palm Fatty Acid Distillate (PFAD). Malaysia indigenous seaweed was selected as the biomass to be carbonized as the catalyst support. Sulfonation of seaweed based carbon material was carried out by thermal decomposition of ammonium sulfate, (NH4)2S04. The effects of carbonization temperature at 200 to 600°C on the catalyst physical and chemical properties were studied. The effect of reaction parameters on the fatty acid methyl ester (FAME) yield was studied by varying the concentration of ammonium sulfate (5.0 to 40.0 w/v%) and thermal decomposition time (15 to 90 min). Characterizations of catalyst were carried out to study the catalyst surface morphology with Scanning Electron Microscope (SEM), acid density with back titration and functional group attached with FT-IR. Results showed that when the catalyst sulfonated with 10.0 w/v% ammonium sulfate solution and heated to 235°C for 30 min, the highest FAME yield achieved was 23.7% at the reaction condition of 5.0 wt.% catalyst loading, esterification time of 4 h, methanol to PFAD molar ratio of 20:1 at 100°C reaction temperature.
机译:进行实验以研究使用棕榈脂肪酸馏分(PFAD)生产生物量衍生的固体酸催化剂的可行性。选择马来西亚土着海藻作为碳化作为催化剂载体的生物质。通过硫酸铵的热分解进行海藻碳材料的磺化,(NH4)2S04进行。研究了碳化温度在200至600℃的催化剂物理和化学性质上的影响。通过改变硫酸铵的浓度(5.0至40.0W / v%)和热分解时间(15至90分钟)来研究反应参数对脂肪酸甲酯(MAS)产率的影响。进行催化剂的特征以研究催化剂表面形态与扫描电子显微镜(SEM),酸密度,用FT-IR连接的后滴定和官能团。结果表明,当用10.0W / v%硫酸铵溶液磺化催化剂并加热至235℃的催化剂30分钟时,在5.0重量%重量的反应条件下达到的最高名称产率为23.7%。%催化剂负载,酯化时间为4 h,甲醇在100℃的反应温度下为20:1的PFAD摩尔比。

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