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Production and purification of biodiesel produced from used frying oil using hydrodynamic cavitation

机译:利用流体动力空化技术生产和纯化用过的煎炸油生产的生物柴油

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Abstract This work describes the biodiesel production from used frying oil using a hydrodynamic cavitation reactor as well as separation and purification of fatty acid methyl esters (FAME). Under the optimized process conditions, i.e., methanol to oil molar ratio of 4.5:1 and catalyst (KOH) concentration of 0.55 wt%, the conversion achieved was 93.86 mol%. Higher conversion (93.6%) was obtained in only 20 min as compared to 88.5% in 1 h in stirred tank reactor. Due to the completion of transesterification reaction, the amount of intermediate diglycerides and monoglycerides present in the reaction mixture was less. It helps for the complete separation of methyl ester and glycerol layers without hindrance in 1 h. Small amount {KOH} catalyst used for completion of reaction reduces amount of {KOH} and soap in ester layer which further helps to form a less stable emulsion during water washing step. The complete separation was observed at 70 °C temperature in just 3 h. Thus, this study indicates that the increased production capacity can be achieved by shortening the time for the separation and purification.
机译:摘要这项工作描述了使用水力空化反应器从用过的煎炸油生产生物柴油以及分离和纯化脂肪酸甲酯(FAME)。在优化的工艺条件下,即甲醇与油的摩尔比为4.5:1,催化剂(KOH)浓度为0.55 wt%,实现的转化率为93.86 mol%。与搅拌釜反应器中1 h的转化率为88.5%相比,仅20分钟即可获得更高的转化率(93.6%)。由于酯交换反应的完成,反应混合物中存在的中间甘油二酯和甘油单酯的量较少。它有助于在1小时内无障碍地完全分离甲酯和甘油层。用于完成反应的少量{KOH}催化剂减少了酯层中的{KOH}和肥皂的量,这进一步有助于在水洗步骤期间形成不太稳定的乳液。在70°C的温度下仅3小时即可观察到完全分离。因此,该研究表明可以通过缩短分离和纯化时间来提高生产能力。

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