ADSORPTION OF CRUDE OIL IN AQUEOUS ENVIRONMENT USING WILD CANE FIBER: EQUILIBRIUM AND KINETIC STUDIES

P. M. França, A. P. Santos, C. Queiroz, K. C. A. Santos, A. Silva, S. Mattedi
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引用次数: 1

Abstract

This work evaluates the adsorption capacity of the wild cane fiber (Gynerium Sagittatum) in crude oil. Both untreated biomass and treated with ionic liquid [2HEA][Ac] and acetylated were studied for oil spill cleanup in aqueous environment. Crude oil adsorption tests were performed in a thermostatic bath, varying the time for the kinetic study and the amount of oil for isotherm model. Kinetic study of oil adsorption allowed us to identify that the untreated fiber reached saturation in 90 minutes, while the fiber treated with acetylated and ionic liquid reached saturation in 30 minutes. In equilibrium, the total amount of oil adsorbed by the untreated fiber was 3.8g, whereas in acetylated and ionic liquid treated fiber, the obtained maximum adsorption capacity was 4.4 and 3.7 g, respectively. The remediation process using wild cane fiber followed a second order kinetic rate and Sips and Toth isotherm models provided the best fit to experimental data.
野生甘蔗纤维在水中对原油的吸附:平衡和动力学研究
研究了野生甘蔗纤维(Gynerium Sagittatum)对原油的吸附性能。研究了离子液体[2HEA][Ac]和乙酰化处理的生物质能和未处理的生物质能对水中溢油的清除效果。在恒温浴中进行了原油吸附试验,改变了动力学研究的时间和等温模型的油量。通过油吸附动力学研究,我们发现未经处理的纤维在90分钟内达到饱和,而经乙酰化和离子液体处理的纤维在30分钟内达到饱和。在平衡状态下,未经处理的纤维吸附油总量为3.8g,而在乙酰化和离子液体处理的纤维中,获得的最大吸附量分别为4.4和3.7 g。野蔗纤维的修复过程符合二级动力学速率,Sips和Toth等温线模型与实验数据最吻合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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