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Preparation of carbonaceous materials from pyrolysis of chicken bones and its application for fuchsine adsorption

机译:鸡骨热解的碳质材料的制备及其对紫红石吸附的应用

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摘要

Activated carbon and biochar were obtained from chicken bone (CB), characterized, and applied to remove basic fuchsine from aqueous media. The adsorbent dosage and pH effects were studied, as well as kinetic, equilibrium, and thermodynamic curves were constructed. The values of BET surface area and total pore volume were 108.94 m(2) g(-1) and 0.219 cm(3) g(-1) for the activated carbon and, 18.72 m(2) g(-1) and 0.075 cm(3) g(-1) for the biochar. The dye removal percentages were 93.63 and 55.38% when 2.5 g L-1 of activated carbon and biochar were used, respectively. The adsorption was favored using 0.5 g L-1 of adsorbent and pH of 7.0. Adsorption kinetics was well represented by the pseudo-second-order model. Langmuir model was the best to represent the equilibrium. Maximum adsorption capacity was 260.8 mg g(-1), obtained using activated carbon. The process was endothermic, favorable, and spontaneous. Results showed that alternative carbonaceous materials can be obtained from chicken bones and used as adsorbents to treat colored effluents containing fuchsine.
机译:从鸡骨(CB)中获得活性炭和生物炭,其特征在于,施用以从含水介质中除去碱性葡萄籽。研究了吸附剂剂量和pH效应,以及构建了动力学,平衡和热力学曲线。所述活性炭的BET表面积和总孔体积的值和总孔体积为108.94m(2)克(-1)和0.219cm(3 )g(-1),18.72m(2)g(-1)和0.075 Biochar的Cm(3)G(-1)。当使用2.5g L-1的活性炭和生物炭时,染料除去百分比分别为93.63和55.38%。使用0.5g L-1吸附剂和pH为7.0的吸附。吸附动力学是由伪二阶模型表示的。 Langmuir模型是最佳代表均衡。最大吸附容量为260.8mg g(-1),使用活性炭获得。该过程是吸热的,有利和自发的。结果表明,替代的碳质材料可以从鸡骨中获得并用作吸附剂以治疗含有葡萄氏素的颜色烟水。

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