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Fabrication of Stabilized Fe–Mn Binary Oxide Nanoparticles: Effective Adsorption of 17β-Estradiol and Influencing Factors

机译:稳定Fe-Mn二元氧化物纳米粒子的制备:有效吸附17β-雌二醇和影响因子

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摘要

Fe–Mn binary oxide nanoparticles (FMBON) were reported to be high performance as adsorbent for pollutants removal from aqueous solution. However, there are still limitations in practice application due to the FMBON tend to aggregate into the micro millimeter level. In order to avoid the agglomeration of nanoparticles, this work synthesized the stabilized Fe–Mn binary oxide nanoparticles (CMC-FMBON) by using water-soluble carboxymethyl celluloses (CMC) as the stabilizer. The characteristics of CMC-FMBON and FMBON were measured by using Transmission electron microscopy (TEM), X-ray diffraction (XRD), Fourier transform infrared (FTIR) spectroscopy, and Zeta potential. This work systematically investigated the adsorption capacity of CMC-FMBON for 17β-estradiol (E2) and the influences of external environmental factors on E2 removal. The results indicated that CMC-FMBON had much smaller particles, wider dispersion and larger surface area than the FMBON. CMC-FMBON showed better adsorption performance for E2 than FMBON with the maximum adsorption capacity of CMC-FMBON and FMBON were 124.10 and 98.14 mg/g at 298 K, respectively. The experimental data can be well fitted by the model of pseudo-second-order and Langmuir model. The E2 removal by CMC-FMBON was obviously dependent on pH with the maximum adsorption occurring when the pH was acidic. The removal capacity of CMC-FMBON increased when enhancing ionic strength in solution. Background electrolytes promoted slightly E2 adsorption process whereas the presence of humic acid inhibited the E2 removal. π-π interactions, hydrogen bonds, and oxidation might be responsible for E2 removal. This research suggested that the CMC-FMBON has been considered to be a cost-efficient adsorbent for removing E2 from water.
机译:据报道,Fe-Mn二进制氧化物纳米颗粒(FMBON)作为从水溶液中除去污染物的吸附剂的高性能。然而,由于FMBON倾向于聚集在微米级别中,实践应用仍然存在局限性。为了避免纳米颗粒的聚集,通过使用水溶性羧甲基纤维素(CMC)作为稳定剂,这项工作合成了稳定的Fe-Mn二元氧化物纳米颗粒(CMC-FMB-FMB)。通过使用透射电子显微镜(TEM),X射线衍射(XRD),傅里叶变换红外(FTIR)光谱和Zeta电位测量CMC-FMBOB和FMBOB的特性。这项工作系统地研究了17β-estradiol(E2)的CMC-FMBON的吸附能力以及外部环境因素对E2去除的影响。结果表明,CMC-FMBOB的颗粒具有更小的颗粒,更广泛的色散和比FMBON更大的表面积。 CMC-FMBOBS显示出E2的更好的吸附性能,而不是CMC-FMBOB的最大吸附容量,并且FMbon分别为298 k分别为124.10和98.14mg / g。实验数据可以通过伪二阶和Langmuir模型的模型充分拟合。 CMC-FMBON的E2除去明显依赖于pH,当pH是酸性时发生的最大吸附。当提高溶液中的离子强度时,CMC-FMBON的去除容量增加。背景技术电解质促进略微E2吸附过程,而腐殖酸的存在抑制E2去除。 π-π相互作用,氢键和氧化可能是e2去除的原因。该研究表明,CMC-FMBOB被认为是一种具有成本效益的吸附剂,用于从水中除去E2。

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