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Biodiesel from Residual Oils: Less Environmental Impact with Sustainability and Simplicity

机译:残油中的生物柴油:对环境的影响较小,具有可持续性和简便性

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This study shows viability energetic with residual frying oils. The oils collected and filtered were characterised in some analytical parameters and converted into biodiesel by homogeneous alkaline transesterification (molar ratio of 6:1, methanol: oil, 60 minutes, 60°C, and stirring of 300 rpm and 1% of NaOH). After reaction, decanted for 3 hours and purified with 0.5% phosphoric acid and distilled water. Heated at 110°C (water bath and vacuum distillation system) for the removal of residual methanol. The purified biodiesel was treated with anhydrous sodium sulphate, filtered and characterised in acid value, specific mass, kinematic viscosity, turbidity, water content and purity of ester. The results showed that the alkaline transesterification is a powerful tool for the conversion of saponifiable fatty acids into biodiesel, represented by the yield of 82% and 94.4% in purity of methyl esters, even with its demand for purification of the feedstock to reduce acidity and water content.
机译:这项研究表明,残留煎炸油具有很高的活力。收集并过滤的油在某些分析参数中进行表征,并通过均相的碱性酯交换反应(摩尔比为6:1,甲醇:油,60分钟,60°C,并以300 rpm和1%的NaOH搅拌)转化为生物柴油。反应后,倾析3小时,并用0.5%磷酸和蒸馏水纯化。在110°C加热(水浴和真空蒸馏系统)以除去残留的甲醇。纯化的生物柴油用无水硫酸钠处理,过滤并表征酸值,比重,运动粘度,浊度,水含量和酯的纯度。结果表明,碱性酯交换反应是将皂化脂肪酸转化为生物柴油的有力工具,即使需要提纯原料以降低酸度和酸度,其纯度仍可达到82%和94.4%的甲酯纯度。含水量。

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