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首页> 外文期刊>Ultrasonics sonochemistry >Intensification of biodiesel production from soybean oil and waste cooking oil in the presence of heterogeneous catalyst using high speed homogenizer
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Intensification of biodiesel production from soybean oil and waste cooking oil in the presence of heterogeneous catalyst using high speed homogenizer

机译:使用高速均化器,在非均相催化剂存在下从大豆油和废物食用油产生生物柴油生产的强化

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摘要

In the present work, high speed homogenizer has been used for the intensification of biodiesel synthesis from soybean oil and waste cooking oil (WCO) used as a sustainable feedstock. High acid value waste cooking oil (27 mg of KOH/g of oil) was first esterified with methanol using sulphuric acid as catalyst in two stages to bring the acid value to desired value of 1.5 mg of KOH/g of oil. Transesterification of soybean oil (directly due to lower acid value) and esterified waste cooking oil was performed in the presence of heterogeneous catalyst (CaO) for the production of biodiesel. Various experiments were performed for understanding the effect of operating parameters viz. molar ratio, catalyst loading, reaction temperature and speed of rotation of the homogenizer. For soybean oil, the maximum biodiesel yield as 84% was obtained with catalyst loading of 3 wt% and molar ratio of oil to methanol of 1:10 at 50 degrees C with 12,000 rpm as the speed of rotation in 30 min. Similarly biodiesel yield of 88% was obtained from waste cooking oil under identical operating conditions except for the catalyst loading which was 1 wt%. Significant increase in the rate of biodiesel production with yields from soybean oil as 84% (in 30 min) and from WCO as 88% (30 min) was established due to the use of high speed homogenizer as compared to the conventional stirring method (requiring 2-3 h for obtaining similar biodiesel yield). The observed intensification was attributed to the turbulence caused at microscale and generation of fine emulsions due to the cavitational effects. Overall it can be concluded from this study that high speed homogenizer can be used as an alternate cavitating device to efficiently produce biodiesel in the presence of heterogeneous catalysts.
机译:在本作本作中,高速均化器已被用于从豆油和废料烹饪油(WCO)中的生物柴油合成的强化,其用作可持续原料。高酸值废物烹饪油(27mg KOH / G)首先使用硫酸作为催化剂在两个阶段用甲醇酯化,使酸值与所需的1.5mg KOH / g油。在非均相催化剂(CAO)存在下,在非均相催化剂(CAO)存在下,在生物柴油的存在下进行大豆油(直接由于较低的酸值)和酯化废物烹饪油的酯交换。进行各种实验,以了解操作参数viz的效果。摩尔比,催化剂负载,反应温度和均化器的旋转速度。对于大豆油,通过催化剂负载量为84%的最大生物柴油产率为84%,在50℃下以12,000rpm为1:10的油至甲醇的摩尔比,作为30分钟的旋转速度。类似地,除了为1wt%的催化剂负载之外,在相同的操作条件下,在相同的操作条件下获得88%的生物柴油产率。由于常规搅拌方法(需要2-3 H获得类似的生物柴油产量)。观察到的强化归因于在微观尺寸引起的湍流以及由于空化效应而产生的细乳液。总的来说,从该研究中可以得出结论,高速均化器可以用作替代的空化装置,以有效地在非均相催化剂存在下产生生物柴油。

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