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Adsorption of glycerol, monoglycerides and diglycerides present in biodiesel produced from soybean oil

机译:大豆油生产的生物柴油中甘油,甘油单酯和甘油二酯的吸附

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摘要

The most common methods currently used for the removal of waste glycerol, monoglycerides and diglycerides remaining after phase separation during biodiesel production involve wet processes. These procedures are not environmentally viable because they require large volumes of water and thus generate significant quantities of effluent. In this study, adsorption was employed to replace this purification step. Some commercial activated carbons were tested along with adsorbents chemically modified with HNO_3. A kinetics study was conducted at 30℃ and adsorption isotherms were obtained at 20℃, 30℃ and 40℃. The results indicated that the adsorption of glycerol increased with the use of chemically-modified activated carbon, showing that pH has a strong influence on glycerol adsorption. The pseudo-first-order kinetic model provided the best fit with the experimental data for the monoglycerides while the pseudo-second-order model showed a better fit for the glycerol and diglycerides. The Freundlich model had the best fit with experimental data on the adsorption equilibrium for all temperatures. The thermodynamic study indicated that the adsorption process is endothermic and thus adsorption is favoured by increasing the temperature. The adsorption process using chemically-modified activated carbon was therefore very effective for the removal of waste glycerol resulting from biodiesel production, which is of considerable significance given the legal limits imposed.
机译:当前用于去除生物柴油生产过程中相分离后残留的废甘油,甘油单酯和甘油二酯的最常用方法涉及湿法工艺。这些程序在环境上不可行,因为它们需要大量的水,因此会产生大量的废水。在这项研究中,吸附被用来代替该纯化步骤。测试了一些商用活性炭以及用HNO_3化学修饰的吸附剂。在30℃下进行了动力学研究,并在20℃,30℃和40℃下获得了吸附等温线。结果表明,随着化学改性活性炭的使用,甘油的吸附量增加,表明pH值对甘油的吸附有很强的影响。拟一阶动力学模型与单酸甘油酯的实验数据提供了最佳拟合,而拟二阶模型显示了对甘油和甘油二酸酯的更好拟合。 Freundlich模型最适合所有温度下吸附平衡的实验数据。热力学研究表明,吸附过程是吸热的,因此温度升高有利于吸附。因此,使用化学改性的活性炭进行的吸附过程对于去除生物柴油生产中产生的废甘油非常有效,考虑到法律限制,这具有重要意义。

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