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Caesalpinia ferrea Fruits as a Biosorbent for the Removal of Methylene Blue Dye from an Aqueous Medium

机译:Caesalpinia ferrea果实作为从水性介质中去除亚甲蓝染料的生物吸附剂

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In the present work, a biosorbent was produced through the alkaline washing of Brazilian ironwood fruits. Infrared and thermogravimetric analyses showed changes in the obtained biosorbent with the removal of extractives, whose micrograph presents a more fibrous structure for the treated material. The biosorption behavior of the methylene blue dye shows efficiency at pH above five, and at alkaline pH, it reaches removal efficiency of up to 90% for five successive cycles. Adsorption kinetics is fast and fits the pseudo-second-order model, which, with the best fit of the Langmuir isotherm model, indicates a chemical adsorption mechanism. The thermodynamic trials express the spontaneity of biosorption and enthalpy and entropy variations of - 10.47 kJ mol(-1) and 51.84 J mol(-1) K-1, respectively. The maximum biosorption capacity is of 125.2 mg g(-1) for the temperature of 25 degrees C, consisting in a low-cost alternative for the removal of this type of contaminant from an aqueous medium.
机译:在目前的工作中,通过对巴西铁木果实进行碱洗生产了一种生物吸附剂。红外和热重分析表明,去除提取物后,所获得的生物吸附剂发生了变化,其显微照片显示出经处理的材料具有更多的纤维结构。亚甲基蓝染料的生物吸附行为在pH高于5时显示出效率,而在碱性pH值下,连续五个循环达到90%的去除效率。吸附动力学很快,并且符合拟二级模型,该模型与Langmuir等温模型的最佳拟合表明了化学吸附机理。热力学试验分别表示生物吸附的自发性和-10.47 kJ mol(-1)和51.84 J mol(-1)K-1的焓变和熵变。在25摄氏度的温度下,最大生物吸附量为125.2 mg g(-1),这是一种从水性介质中去除此类污染物的低成本替代品。

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