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首页> 外文期刊>Journal of Hazardous Materials >Highly efficient and acid-resistant metal-organic frameworks of MIL-101(Cr)-NH_2 for Pd(Ⅱ) and Pt(Ⅳ) recovery from acidic solutions: Adsorption experiments, spectroscopic analyses, and theoretical computations
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Highly efficient and acid-resistant metal-organic frameworks of MIL-101(Cr)-NH_2 for Pd(Ⅱ) and Pt(Ⅳ) recovery from acidic solutions: Adsorption experiments, spectroscopic analyses, and theoretical computations

机译:MIL-101(Cr)-NH_2从酸性溶液中回收Pd(Ⅱ)和Pt(Ⅳ)的高效且耐酸的金属有机骨架:吸附实验,光谱分析和理论计算

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摘要

Cr-based metal-organic frameworks (MOFs) of MIL-101(Cr)-NH2 was post-synthesized from nitro-functionalized MIL-101(Cr) (MIL-101(Cr)-NO2) through a reduction process. Adsorption behaviors and interactions of MIL-101(Cr)-NH2 and MIL-101(Cr)-NO2 with platinum group metal (PGM) anions of Pd(II) (PdCl42-) and Pt(IV) (PtCl62-), were investigated through batch adsorption experiments, spectroscopic analyses, and theoretical computations. According to adsorption kinetics and isotherms, the uptakes of Pd(II) and Pt(IV) by in MIL-101(Cr)-NH2 were found to be much higher than their uptakes by MIL-101(Cr)-NO2. The abundant protonated amine groups (BDC-NH3+) in MIL-101(Cr)-NH2 were verified to be the main adsorptive binding sites by XPS and FTIR spectroscopy, and FE-SEM imageries. Additionally, BDC-NH3+ shows extremely high affinities (b value) and binding energies (E-bind) for PdCl42- and PtCl62- through electrostatic attraction, resulting in much higher adsorption capacities of MIL-101(Cr)-NH2 for these PGMs as compared to those of MIL-101(Cr)-NO2. Moreover, the MOFs' Cr nodes without terminal - OH indicated positive electrostatic potentials, and certain values of E-bind for PGM anions. Thus, the few-amount cationic Cr sites could also make little contributions to the adsorption of PGM anions in MIL-101(Cr)-NH2 or MIL-101(Cr)-NO2. Furthermore, the perfect regeneration and reusability of MIL-101(Cr)-NH2 over five of adsorption-desorption cycles, suggesting its potential in practical applications.
机译:通过还原过程,由硝基官能化的MIL-101(Cr)(MIL-101(Cr)-NO2)后合成了MIL-101(Cr)-NH2的基于Cr的金属有机骨架(MOF)。 MIL-101(Cr)-NH2和MIL-101(Cr)-NO2与Pd(II)(PdCl42-)和Pt(IV)(PtCl62-)的铂族金属(PGM)阴离子的吸附行为和相互作用通过分批吸附实验,光谱分析和理论计算进行了研究。根据吸附动力学和等温线,发现MIL-101(Cr)-NH2对Pd(II)和Pt(IV)的吸收远高于MIL-101(Cr)-NO2对Pd(II)和Pt(IV)的吸收。 XPS和FTIR光谱以及FE-SEM图像证明了MIL-101(Cr)-NH2中大量的质子化胺基(BDC-NH3 +)是主要的吸附结合位点。此外,BDC-NH3 +通过静电吸引对PdCl42-和PtCl62-具有极高的亲和力(b值)和结合能(E-结合),从而导致MIL-101(Cr)-NH2对这些PGM的吸附能力更高。与MIL-101(Cr)-NO2相比。此外,MOF的不带-OH的Cr节点显示出正的静电势,并且对于PGM阴离子具有某些E-bind值。因此,少量的阳离子Cr位点对MIL-101(Cr)-NH2或MIL-101(Cr)-NO2中PGM阴离子的吸附也几乎没有贡献。此外,MIL-101(Cr)-NH2在五个吸附-解吸循环中具有完美的再生和可重复使用性,表明其在实际应用中具有潜力。

著录项

  • 来源
    《Journal of Hazardous Materials》 |2020年第5期|121689.1-121689.8|共8页
  • 作者

  • 作者单位

    Chonbuk Natl Univ Sch Chem Engn Jeonju 54896 South Korea;

    Chonbuk Natl Univ Sch Chem Engn Jeonju 54896 South Korea|Univ Calgary Dept Chem Calgary AB T2N 1N4 Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Adsorption; Platinum group metals; Metal-organic frameworks; MIL-101(Cr)-NH2;

    机译:吸附;铂族金属;金属有机框架;MIL-101(Cr)-NH2;

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