G'/> Preparation and characterization of distillers’ grain based activated carbon as low cost methylene blue adsorbent: Mass transfer and equilibrium modeling
首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Preparation and characterization of distillers’ grain based activated carbon as low cost methylene blue adsorbent: Mass transfer and equilibrium modeling
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Preparation and characterization of distillers’ grain based activated carbon as low cost methylene blue adsorbent: Mass transfer and equilibrium modeling

机译:低成本亚甲基蓝色吸附剂的蒸馏液体活性炭的制备与表征:传质均衡建模

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Graphical abstractDisplay OmittedHighlights?Distillers’ grain is used as raw material to produce porous carbon.?The produced carbon has great adsorption capacity towards methylene blue.?Mass transfer and equilibrium modeling were studied.AbstractIn this study, an orthogonal array design method was employed to optimize carbon preparation from distillers’ grain (DGAC). The physical and chemical properties of the produced DGAC were characterized using scanning electron microscopy (SEM), N2adsorption–desorption technique (Brunauer-Emmett-Teller, BET), and fourier transform infrared spectroscopy (FTIR). The BET surface area of DGAC was found to be 1430?m2/g, with average pore diameter of 2.19?nm. Batch experiments were carried out to study the adsorption of methylene blue (MB) onto DGAC. External mass transfer model, internal diffusion model, Boyd model and pseudo-second-order model were used to fit the adsorption kinetic process of MB adsorption onto DGAC. The results shows the external mass transfer model could only describe the adsorption for the initial 5?min, and later the internal diffusion in the pores of the carbon particles became a main resistance, chemisorption was also involved in the adsorption process. The adsorption equilibrium was described best by Langmuir isotherm with maximum adsorption capacity of 934.6?mg/g of MB at 55°C, thermodynamic studies confirmed that the adsorption of MB onto DGAC was spontaneous and thermodynamically favourable. These findings support the potential of using distillers’ grain as raw material to prepare well-developed porous texture adsorbent with huge MB removal capacity.]]>
机译:<![cdata [ 图形摘要 显示省略 突出显示 < CE:简单段ID =“SP0010”View =“全部”> 蒸馏器的谷物用作生成多孔碳的原料。 生产的碳具有很大的吸附能力朝向亚甲基蓝色。< / ce:para> 研究了传质和均衡建模。 抽象 在本研究中,采用正交阵列设计方法来优化蒸馏液(DGAC)的碳制剂。使用扫描电子显微镜(SEM),N 吸附 - 解吸技术(Brunauer-Emmett-Teller,Bet)和傅里叶变换红外光谱(FTIR)。发现DGAC的BET表面积为1430〜M 2 / g,平均孔径为2.19≤nm。进行批次实验以研究亚甲基蓝(MB)对DGAC的吸附。外部传质模型,内部扩散模型,BoYD模型和伪二阶模型用于将MB吸附的吸附动力学过程符合DGAC。结果表明外部传质模型只能描述初始5?分钟的吸附,并且后面碳颗粒孔中的内部扩散变成了主要抗性,化学吸附也参与了吸附过程。 Langmuir等温线最佳地描述了吸附平衡,最大吸附容量为934.6Ωmg/ g在55℃下的MB,热力学研究证实,MB对DGAC的吸附是自发的,热力学上的良好。这些发现支持使用蒸馏器的谷物作为原料的潜力,以制备具有巨大的MB去除能力的发育良好的多孔质地吸附剂。 ] ]

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