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首页> 外文期刊>RSC Advances >Hydrothermal synthesis of montmorillonite/hydrochar nanocomposites and application for 17β-estradiol and 17α-ethynylestradiol removal
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Hydrothermal synthesis of montmorillonite/hydrochar nanocomposites and application for 17β-estradiol and 17α-ethynylestradiol removal

机译:蒙脱土/炭纳米复合物的水热合成及其在17β-雌二醇和17α-乙炔基雌二醇去除中的应用

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With a view to reducing estrogens pollution in aqueous environments, montmorillonite/hydrochar (MMT/HC) with or without modification by KOH via hydrothermal carbonization process (HTC) were applied to remove 17β-estradiol (E2) and 17α-ethynylestradiol (EE2). The characterizations of MMT/HC indicated that MMT had been successfully attached onto HC surface, which could cause an improvement in the stability of the clay nanoparticles. MMT/HC with 1% KOH (MMT/HC-K1) exhibited excellent adsorption ability (E2: Qm = 138 mg g?1, EE2: Qm = 69 mg g?1) compared to those of other adsorbents; approximately 2-fold higher than that of HC. Moreover, the adsorption capacity maintained a high level over a wide pH range (2–8). The pseudo-second-order model and Freundlich model exhibited prior fitting performance for adsorption of E2 and EE2. The regenerated MMT/HC-K1 retained over 80% of its initial capacity after four cycles. The adsorption mechanism on MMT/HC-K1 could be explained by hydrophobicity, π–π bond, electrostatic interaction and H-bonding interaction. Overall, MMT/HC-K1 synthesis from two low-cost materials, could be considered as a competitive adsorbent for estrogens removal from aqueous environment, considering its high adsorption capacity and regeneration ability.
机译:为了减少水性环境中的雌激素污染,采用或不采用KOH 通过水热碳化法(HTC)进行改性的蒙脱石/烃(MMT / HC)用于去除17β-雌二醇(E2)和17α-乙炔基雌二醇(EE2)。 MMT / HC的表征表明MMT已成功附着在HC表面,这可能导致粘土纳米颗粒的稳定性得到改善。含1%KOH的MMT / HC(MMT / HC-K1)表现出优异的吸附能力(E2: Q m = 138 mg g <小> ?1 ,EE2: Q m = 69 mg g ?1 )与其他吸附剂相比;大约比HC高2倍。此外,在宽pH范围(2-8)内,吸附能力保持较高水平。伪二级模型和Freundlich模型对E2和EE2的吸附表现出先验的拟合性能。四个周期后,再生的MMT / HC-K1保留了其初始容量的80%以上。 MMT / HC-K1的吸附机理可以通过疏水性,π-π键,静电相互作用和H键相互作用来解释。总的来说,考虑到MMT / HC-K1的高吸附能力和再生能力,可以将其作为从水环境中去除雌激素的竞争性吸附剂。

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