首页> 美国卫生研究院文献>Materials >Removal of Chromates and Sulphates by Mg/Fe LDH and Heterostructured LDH/Halloysite Materials: Efficiency Selectivity and Stability of Adsorbents in Single- and Multi-Element Systems
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Removal of Chromates and Sulphates by Mg/Fe LDH and Heterostructured LDH/Halloysite Materials: Efficiency Selectivity and Stability of Adsorbents in Single- and Multi-Element Systems

机译:Mg / Fe LDH和异质结构化的LDH /水合金属材料去除铬酸盐和硫酸盐:单元素和多元素系统中吸附剂的效率选择性和稳定性

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摘要

Industrial wastewaters often contain mobile and toxic anions that cannot be removed by precipitation techniques and most known adsorbents. Layered double hydroxides (LDH) are excellent scavengers of anions; however, their use in real applications is of minor importance owing to their swelling behavior and high cost of production. The performed research shows the possibility of obtaining Mg/Fe LDH using natural magnesite. Moreover, heterostructured LDH/halloysite materials were synthesized. The adsorption efficiency of these materials was very high in both single- and multi-element systems, confirming the LDH selectivity. This was with the exception of wastewaters containing a high concentration of chlorides, which clearly hampered the removal of Cr(VI) and S(VI). The measurements indicated that LDH dissolution took place to a small extent (<10 wt%). The LDH/halloysite materials showed lower efficiency than the raw LDH; however, the clay presence has several benefits in terms of future applications: (i) it significantly reduces the pH, especially in contrast to the calcined LDH, which enables the reuse or safe disposal of purified water; (ii) it reduces swelling of the composite, which opens the possibility for applications in column adsorption; (iii) it induces dual adsorption properties through additional cation adsorption; and (iv) it substantially lowers the price of the adsorbent.
机译:工业废水通常包含流动和有毒的阴离子,无法通过沉淀技术和大多数已知的吸附剂去除。层状双氢氧化物(LDH)是优异的阴离子清除剂;然而,由于它们的膨胀特性和高生产成本,它们在实际应用中的使用次要重要性。进行的研究表明使用天然菱镁矿获得Mg / Fe LDH的可能性。此外,合成了异质结构的LDH /半硅酸盐材料。这些材料在单元素和多元素系统中的吸附效率都很高,这证实了LDH的选择性。除含高浓度氯化物的废水外,这明显阻碍了Cr(VI)和S(VI)的去除。测量结果表明LDH溶解程度很小(<10 wt%)。 LDH /半硅酸盐材料的效率比未加工的LDH低。但是,在未来的应用中,粘土的存在有很多好处:(i)可以显着降低pH值,尤其是与煅烧的LDH相比,它可以重复使用或安全处置纯净水; (ii)减少了复合材料的溶胀,这为在柱吸附中的应用打开了可能性; (iii)它通过额外的阳离子吸附而具有双重吸附特性; (iv)它大大降低了吸附剂的价格。

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