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首页> 外文期刊>Environmental Science and Pollution Research >Phosphorus removal from aqueous solution in parent and aluminum-modified eggshells: thermodynamics and kinetics, adsorption mechanism, and diffusion process
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Phosphorus removal from aqueous solution in parent and aluminum-modified eggshells: thermodynamics and kinetics, adsorption mechanism, and diffusion process

机译:从母体和铝改性蛋壳中的水溶液中除去磷:热力学和动力学,吸附机制和扩散过程

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摘要

Parent and aluminum-modified eggshells were prepared and characterized with X-ray diffraction, specific surface area measurements, infrared spectroscopy, zeta potential, and scanning electron microscope, respectively. Besides, phosphorus adsorptions in these two eggshells at different temperatures and solution pH were carried out to study adsorption thermodynamics and kinetics as well as the mechanisms of phosphorus adsorption and diffusion. The results indicated that high temperature was favorable for phosphorus adsorption in parent and aluminum-modified eggshells. Alkaline solution prompted phosphorus adsorption in parent eggshell, while the maximum adsorption amount was achievable at pH 4 in aluminum-modified eggshell. Adsorption isotherms of phosphorus in these eggshells could be well described by Langmuir and Freundlich models. Phosphorus adsorption amounts in aluminum-modified eggshell were markedly higher compared to those in parent eggshell. Adsorption heat indicated that phosphorus adsorption in parent eggshell was a typically physical adsorption process, while chemical adsorption mechanism of ion exchange between phosphorus and hydroxyl groups on the surface of eggshells was dominated in aluminum-modified eggshell. The time-resolved uptake curves showed phosphorus adsorption in aluminum-modified eggshell was significantly faster than that in parent eggshell. Moreover, there existed two clear steps in time-resolved uptake curves of phosphorus in parent eggshell. Based on pseudo-second order kinetic model and intraparticle diffusion model, we inferred more than one process affected phosphorus adsorption. The first process was the diffusion of phosphorus through water to external surface and the opening of pore channel in the eggshells, and the second process was mainly related to intraparticle diffusion.
机译:亲和铝改性的蛋壳制备和表征分别X射线衍射,比表面积测量,红外光谱法,ζ电势,和扫描电子显微镜。此外,在在不同的温度和溶液的pH值这两个蛋壳磷吸附进行了研究,以吸附热力学和动力学以及磷吸附和扩散机制。结果表明,高温是在父磷吸附和铝改性蛋壳有利。碱性溶液促使母体蛋壳磷吸附,而最大吸附量在铝改性蛋壳pH为4实现的。这些蛋壳磷吸附等温线可以用Langmuir和Freundlich模型很好地描述。磷吸附在铝改性蛋壳量的显着更高的相比,这些在父蛋壳。吸附热指示在亲本蛋壳磷吸附是一个典型的物理吸附过程,同时蛋壳的表面上的磷和羟基基团之间的离子交换的化学吸附机制铝改性蛋壳被支配。时间分辨的吸收曲线显示在铝改性蛋壳磷吸附是显著快于亲蛋壳。此外,存在着在时间分辨摄取父蛋壳磷曲线两个明显的步骤。基于伪二级动力学模型和内扩散模型,我们推断出多于一个的进程受影响的磷吸附。第一过程是磷的通过水以外表面与孔通道中的蛋壳的开口扩散,并且所述第二过程主要与内扩散。

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