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Applications versus properties of Mg-Al layered double hydroxides provided by their syntheses methods: Alkoxide and alkoxide-free sol-gel syntheses and hydrothermal precipitation

机译:合成方法提供的Mg-Al层状双氢氧化物的应用与性能对比:不含醇盐和醇盐的溶胶-凝胶合成和水热沉淀

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摘要

A tremendous number of studies have examined layered double hydroxides (LDH) for their technological applications in the ion exchange removal of toxic ions, recovery of valuable substances, catalysis, CO2 capture, as a layered host for storage/delivery of biologically active molecules, additives to plastics and building materials, and other functions. Numerous publications always conclude that the materials (prepared, as a rule, using the oldest synthesis method) are very promising for each investigated application; however, the main chemical industries producing these materials advertise them mainly (or only) as plastic additives. The authors performed extensive research using many of the appropriate methods to compare the structure, surface and adsorptive properties of three Mg-Al LHDs produced by advanced synthesis methods. One industrial sample (by Sasol, Germany) prepared by the alkoxide sol-gel method and two novel Mg-Al LDHs synthesised in-house by alkoxide-free sol-gel and hydrothermal precipitation, approaches were investigated. Reasons for the very different adsorptive selectivity of the three LDHs towards arsenate, selenate, phosphate, arsenite and selenite have been provided, highlighting the role, of speciation of the interlayer carbonate, aluminium, magnesium, interlayer hydration and moisture content in the adsorptive selectivity towards each toxic anion. This work is the first report presenting the regularities of the LDHs structure, surface and anion exchange properties as a function of their syntheses method. It establishes the links to potential technological applications of each investigated LDH and explains the necessary properties required to make the technological application cost-effective and efficient. The paper might accelerate industrial applications of these advanced materials.
机译:大量研究研究了层状双氢氧化物(LDH)在离子交换中去除有毒离子,有价值物质的回收,催化,CO2捕集的技术应用,作为生物活性分子,添加剂的存储/递送的层状主体具有塑料和建材等功能。许多出版物总是得出这样的结论:对于每种研究的应用,这些材料(通常是使用最古老的合成方法制备的)都是很有希望的。但是,生产这些材料的主要化学工业主要(或仅)作为塑料添加剂进行广告宣传。作者使用许多适当的方法进行了广泛的研究,以比较通过先进的合成方法生产的三种Mg-Al左旋多巴胺的结构,表面和吸附性能。研究了一种通过醇盐溶胶-凝胶法制备的工业样品(德国的Sasol)和通过无醇盐溶胶-凝胶法和水热沉淀法在内部合成的两种新型Mg-Al LDH。提供了三种LDH对砷酸根,硒酸根,磷酸根,亚砷酸根和亚硒酸根吸附选择性差异很大的原因,突出了层间碳酸盐,铝,镁,层间水合和水分含量在对砷的吸附选择性中的作用。每个有毒的阴离子。这项工作是第一个报告,介绍了LDHs结构,表面和阴离子交换性质的规律性,作为其合成方法的函数。它建立了与每个被调查的LDH的潜在技术应用的链接,并说明了使该技术应用具有成本效益和效率的必要属性。本文可能会加速这些先进材料的工业应用。

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