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首页> 外文期刊>ACS Omega >Facile Fabrication of ZnMgAl/LDH/Algae Composites as a Potential Adsorbent for Cr(VI) Ions from Water: Fabrication and Equilibrium Studies
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Facile Fabrication of ZnMgAl/LDH/Algae Composites as a Potential Adsorbent for Cr(VI) Ions from Water: Fabrication and Equilibrium Studies

机译:Znmgal / LDH /藻类复合材料的容易制备作为来自水的Cr(VI)离子的潜在吸附剂:制造和平衡研究

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摘要

In order to improve the adsorption capacity of natural layered double hydroxyl (LDH) materials, the natural organic sources such as algae containing hydroxyl groups, amino groups, peptide connections, and alginate structures were used to improve LDH for the preparation of ZnMgAl LDH-algae composites (LDH-Ax ). The structure of prepared composites was established and characterized via various techniques such as scanning electron microscopy, X-ray diffraction, and Fourier transform infrared spectroscopy. The LDH-A2 sample displayed the highest efficiency for Cr(VI) removal, which reached to 99% at the optimum conditions. The prepared composite LDH-A2 showed high stability and reusability (91.7%) after five cycles. The kinetic studies revealed that the Cr uptake by LDH-A1 is described as pseudo-first order, while the case of LDH-A2 is described as pseudo-second order. This study reported that the easily synthesized LDH-Ax has an interesting environmental approval process to eliminate Cr ions from aqueous media quickly and effectively.
机译:为了提高天然分层双羟基(LDH)材料的吸附能力,使用含有羟基,氨基,肽连接和藻酸盐结构的天然有机源,例如用于制备Znmgal LD​​H-藻类的LDH复合材料(LDH-A x)。通过诸如扫描电子显微镜,X射线衍射和傅里叶变换红外光谱的各种技术建立和表征制备的复合材料的结构和表征。 LDH-A2样品显示出Cr(VI)去除的最高效率,在最佳条件下达到99%。制备的复合LDH-A2在五个循环后显示出高稳定性和可重用性(91.7%)。动力学研究表明,LDH-A1的CR吸收被描述为伪第一顺序,而LDH-A2的情况被描述为伪二次阶。本研究报道,易于合成的LDH-A X具有有趣的环境批准过程,可快速有效地消除来自含水介质的Cr离子。

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