Federal University of Uberlândia, Av. João Naves de Avila, 2160, Bloco K, Campus Santa Mônica, CEP: 38400-902 Uberlândia, MG, Brazil.
J Hazard Mater. 2010 Mar 15;175(1-3):1106-12. doi: 10.1016/j.jhazmat.2009.10.060. Epub 2009 Oct 24.
In the present work, the adsorption ability of sugarcane bagasse to remove oil by-products from aqueous solution was evaluated. The objective was treating the contaminated wastewater while enriching the bagasse for its later use as fuel in boilers. Adsorption experiments were carried out in an agitated reactor at room temperature to obtain kinetic curves and adsorption isotherms of gasoline and n-heptane on sugarcane bagasse. The results showed the great potential of bagasse as an adsorbent, since it was able to adsorb up to 99% of gasoline and 90% of n-heptane in solutions containing about 5% of these contaminants. In the adsorption kinetics of gasoline, the equilibrium was reached after just 5 min. This result shows that the adsorption is very favorable. Langmuir, Freundlich, Temkin and D-R models did not describe well the adsorption behavior obtained for these systems.
在本工作中,评估了甘蔗渣通过吸附作用从水溶液中去除油副产物的能力。目的是处理受污染的废水,同时富集甘蔗渣,以便以后在锅炉中作为燃料使用。在搅拌反应器中于室温下进行吸附实验,以获得甘蔗渣对汽油和正庚烷的吸附动力学曲线和吸附等温线。结果表明,甘蔗渣作为吸附剂具有很大的潜力,因为它能够在含有约 5%这些污染物的溶液中吸附高达 99%的汽油和 90%的正庚烷。在汽油的吸附动力学中,平衡仅在 5 分钟后达到。这一结果表明吸附非常有利。朗缪尔、弗伦德利希、坦金和 D-R 模型均不能很好地描述这些体系的吸附行为。