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首页> 外文期刊>ACS Omega >Simple and Competitive Adsorption Study of Nickel(II) and Chromium(III) on the Surface of the Brown Algae Durvillaea antarctica Biomass
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Simple and Competitive Adsorption Study of Nickel(II) and Chromium(III) on the Surface of the Brown Algae Durvillaea antarctica Biomass

机译:南极褐藻(Durvillaea antarctica)生物质表面镍(II)和铬(III)的简单竞争吸附研究

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In this work Ni(II) and Cr(III) adsorption on Durvillaea antarctica surface were studied, optimal condition of pH, adsorption time is achieved at pH 5.0, with contact times of 240 and 420 minutes for a maximum adsorption capacity of 32.85 and 102.72 mg g–1 for Ni(II) and Cr(III), respectively. The changes in the vibration intensity of the functional groups detected in the starting material by Fourier transform infrared spectroscopy and the opening of the cavities after the biosorption process detected by scanning electron microscopy images suggested the interaction of the metal ions with the surface and the changes in the chemical behavior of the solid. The heavy metal adsorption equilibrium data fitted well to the Sips model. The effect of competitive ions on adsorption equilibrium was also evaluated, and the results showed that the two metals compete for the same active sites of the biosorbent; the increase of the Ni(II) initial concentration increases its adsorption capacity but decreases the adsorption capacity of Cr(III).
机译:在这项工作中,研究了Ni(II)和Cr(III)在南极草表面的吸附,优化了pH条件,在pH 5.0时达到了吸附时间,接触时间分别为240和420分钟,最大吸附容量为32.85和102.72。 Ni(II)和Cr(III)分别为mg g-1。傅立叶变换红外光谱法检测到的起始原料中官能团的振动强度变化以及通过扫描电子显微镜图像检测到的生物吸附过程后空腔的开放表明金属离子与表面的相互作用以及金属离子的变化。固体的化学行为。重金属吸附平衡数据非常适合Sips模型。还评估了竞争离子对吸附平衡的影响,结果表明两种金属竞争生物吸附剂的相同活性位; Ni(II)初始浓度的增加会增加其吸附容量,但会降低Cr(III)的吸附容量。

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