Vermiculite-based Sorbents Modified with Compounds of Various Natures

IF 1.5 3区 化学 Q3 CHEMISTRY, INORGANIC & NUCLEAR
V. A. Boyarnikova, I. G. Khalchenko, N. P. Shapkin, V. Yu. Mayorov, A. N. Fedorets, K. A. Pervakov, N. P. Ivanov
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Abstract

The aim of this work was to investigate the effect of organic and inorganic modifying agents on the internal structure and surface properties of vermiculite from the Kovdor deposit in an alkaline medium. Vermiculite from the Kovdor deposit was treated with various compounds in an alkaline medium (sodium hydroxide, sodium stearate) with successive addition of copper chloride and potassium hexacyanoferrate(II) solutions. According to powder X-ray diffraction data, the introduction of stearate ion leads to an increase in the interplanar spacing compared to pristine vermiculite. The increase in the coherent scattering region attests to an increase in the degree of crystallinity and considerable interaction of the modifying agent with the surface. The subsequent addition of potassium hexacyanoferrate(II) leads to further increase in the interplanar spacing because of the bulky hexacyanoferrate ion; however sharp decrease in the coherent scattering region indicates exfoliation of the layered silicate, which leads to a decrease in the surface area due to increasing content of amorphous structure.

Abstract Image

用不同性质的化合物改性蛭石基吸附剂
研究了有机改性剂和无机改性剂在碱性介质中对科夫多尔蛭石内部结构和表面性能的影响。在碱性介质(氢氧化钠、硬脂酸钠)中使用各种化合物处理来自Kovdor矿床的蛭石,并连续添加氯化铜和六氰高铁酸钾(II)溶液。根据粉末x射线衍射数据,与原始蛭石相比,硬脂酸盐离子的引入导致了平面间距的增加。相干散射区域的增加证明了结晶度的增加和改性剂与表面的相当大的相互作用。随后加入六氰高铁酸钾(II),由于六氰高铁离子体积较大,导致面间距进一步增大;然而,相干散射区域的急剧减少表明层状硅酸盐的剥离,这导致了非晶结构含量的增加而导致表面积的减少。
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来源期刊
Russian Journal of Inorganic Chemistry
Russian Journal of Inorganic Chemistry 化学-无机化学与核化学
CiteScore
3.10
自引率
38.10%
发文量
237
审稿时长
3 months
期刊介绍: Russian Journal of Inorganic Chemistry is a monthly periodical that covers the following topics of research: the synthesis and properties of inorganic compounds, coordination compounds, physicochemical analysis of inorganic systems, theoretical inorganic chemistry, physical methods of investigation, chemistry of solutions, inorganic materials, and nanomaterials.
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