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Adsorption of phosphate onto amine functionalized nano-sized magnetic polymer adsorbents: mechanism and magnetic effects

机译:磷酸盐在胺官能化纳米尺寸磁性聚合物吸附剂中的吸附:机理和磁效应

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摘要

A series of tetraethylenepentamine-functionalized core-shell structured nano magnetic Fe3O4 polymers (TEPA-Fe3O4-NMPs) with different amounts of the magnetic core were synthesized and characterized by XRD, EA, VSM, FTIR and XPS. Their applications as adsorbents for phosphate removal from aqueous solutions were studied. The adsorption mechanism and magnetic effects were intensively investigated. The adsorption processes of phosphate by TEPA-Fe3O4-NMPs were found to be highly pH dependent and related to the content of Fe3O4 magnetic core in the adsorbents. The optimized pH value was found to be 3.0 for TEPA-Fe3O4-NMPs, while that of TEPA-Fe3O4-NMPs-0, which was without the Fe3O4 magnetic core, was found to be 2.5. Kinetic studies showed that the adsorption of phosphate by TEPA-Fe3O4-NMPs followed a pseudo-second-order model, with the adsorption rate constant, k(2), between 0.00274-0.0241 g mg(-1) min(-1), suggesting a chemisorption process. Activation energies (E-a) for phosphate removal varied with the content of Fe3O4 magnetic core, and were found to be 38.9-16.5 kJ mol(-1), indicating that the diffusion process might be the rate-controlling step. Thermodynamic studies suggested that the adsorption processes fit the Langmuir isotherm well with the optimized maximum adsorption capacities of phosphate onto TEPA-Fe3O4-NMPs obtained when the content of Fe3O4 in TEPA-Fe3O4-NMPs was 14.55%. The Langmuir constants of apparent heat change, K-L, were found to be 0.0142-0.0461 L mg(-1), and varied with the content of Fe3O4 magnetic core as well. FTIR and XPS analytical results of the adsorbents before and after phosphate adsorption suggested that phosphate had been successfully adsorbed onto TEPA-Fe3O4-NMPs via electrostatic attraction. The existence of the magnetic core might be favorable for mass transfer to accelerate the adsorption process.
机译:通过XRD,EA,VSM,FTIR和XPS合成了一系列具有不同量的磁芯的四亚乙烯胺官能化核 - 壳结构化纳米磁性Fe3O4聚合物(Tepa-Fe3O4-NMP),其特征在一起,其特征。研究了作为用于磷酸盐的吸附剂从水溶液中除去的应用。集中研究吸附机制和磁效应。发现TEPA-Fe3O4-NMP的磷酸盐的吸附过程是高度的pH依赖性和与吸附剂中Fe3O4磁芯的含量有关。发现优化的pH值为Tepa-Fe3O4-NMPS为3.0,而没有Fe3O4磁芯的TEPA-Fe3O4-NMPS-0的含量为2.5。动力学研究表明,TEPA-Fe3O4-NMPS的磷酸盐吸附初级二阶模型,吸附速率常数K(2),0.00274-0.0241g mg(-1)min(-1),建议化学吸附过程。用于磷酸盐去除的活化能量(E-A)随着Fe3O4磁芯的含量而变化,并且被发现为38.9-16.5kJ摩尔(-1),表明扩散过程可能是速率控制步骤。热力学研究表明,当TEPA-Fe3O4-NMPS的Fe3O4的含量为14.55%时,吸附过程将Langmuir等温度与磷酸盐的优化最大吸附容量相平。发现表观热变化K-L的Langmuir常数为0.0142-0.0461L mg(-1),也随着Fe3O4磁芯的含量而变化。磷酸盐吸附前后吸附剂的FTIR和XPS分析结果表明,磷酸盐已通过静电吸引成功地吸附到TEPA-Fe3O4-NMP上。磁芯的存在可能有利于传质以加速吸附过程。

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  • 来源
    《RSC Advances》 |2015年第28期|共11页
  • 作者单位

    Zhejiang Univ Ningbo Inst Technol Ningbo 315100 Zhejiang Peoples R China;

    Zhejiang Univ Ningbo Inst Technol Ningbo 315100 Zhejiang Peoples R China;

    Zhejiang Univ Ningbo Inst Technol Ningbo 315100 Zhejiang Peoples R China;

    Zhejiang Univ Ningbo Inst Technol Ningbo 315100 Zhejiang Peoples R China;

    Zhejiang Univ Ningbo Inst Technol Ningbo 315100 Zhejiang Peoples R China;

    Zhejiang Univ Ningbo Inst Technol Ningbo 315100 Zhejiang Peoples R China;

    Hubei Univ Minist Educ Key Lab Synth &

    Applicat Organ Funct Mol Hubei Collaborat Innovat Ctr Adv Organochem Mat Wuhan 430062 Peoples R China;

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  • 正文语种 eng
  • 中图分类 化学;
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