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Transesterification of Used Cooking Oil Over Alkali Metal (Li, Na, K) Supported Rice Husk Silica as Potential Solid Base Catalyst

机译:用过的食用油在碱金属(Li,Na,K)负载的稻壳二氧化硅上的酯交换反应作为潜在的固体基础催化剂

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摘要

Investigation was conducted on three alkali metals (Li, Na, and K) supported by rice husk silica as catalysts for methyl esters production. A simple pseudo-heterogeneous transesterification process of used cooking oil with methanol was conducted to produce methyl esters using calcined alkali metal supported rice husk silica as a solid catalyst. Alkali metal silicate catalysts showed longer lasting activity than the traditional alkali catalysts. The optimum conditions for the process were: alkali metals silicate calcination temperature 500 °C, time 3 h; catalyst amount 3%; methanol to oil molar ratio 9:1; and a reaction temperature of 65 °C. The process was able to transesterify oil to methyl esters in the range of 96.5–98.2% in 1 h for all series. The catalyst is able to tolerant free fatty acid and moisture up to 1.25% and 1.75%, respectively. The catalyst was easily separated from the reaction mixture by filtration and able to reuse six times. The final product met the selected biodiesel fuel properties in accordance with European Standard (EN) 14214.
机译:研究了以稻壳二氧化硅为载体的三种碱金属(Li,Na和K)作为甲酯生产催化剂。使用煅烧的碱金属负载的稻壳有机硅作为固体催化剂,对用过的食用油与甲醇进行了简单的假多相酯交换反应,生成了甲酯。碱金属硅酸盐催化剂显示出比传统碱催化剂更长的持久活性。该工艺的最佳条件为:碱金属硅酸盐的煅烧温度为500°C,时间为3 h;催化剂用量3%;甲醇与油的摩尔比为9:1;反应温度为65℃。对于所有系列,该过程能够在1小时内将油酯交换为96.5–98.2%的甲酯。该催化剂能够分别耐受高达1.25%和1.75%的游离脂肪酸和水分。通过过滤容易将催化剂从反应混合物中分离出来,并且能够重复使用六次。最终产品符合欧洲标准(EN)14214选定的生物柴油燃料特性。

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