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首页> 外文期刊>Applied clay science >Removal of manganese (II) by edge site adsorption on raw and milled vermiculites
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Removal of manganese (II) by edge site adsorption on raw and milled vermiculites

机译:在生site磨粉ver石上通过边缘部位吸附去除锰(II)

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摘要

The adsorption mechanism of manganese nitrate on vermiculite was studied by analysis of the isotherms of the cations exchanged from the vermiculite (K+ and Ca2+) and the ions (NO3-; and Mn2+) adsorbed on the vermiculite. The Langmuir-type manganese adsorption isotherm of the raw vermiculite shows a maximum uptake of 28.32 mg center dot g(-1). The adsorption temperature dependence between 25 degrees C and 45 degrees C has demonstrated an endo-thermic and spontaneous adsorption. The amount of exchanged Mn2+ ions in equivalent per gram represents only 17% of the total adsorbed uptake, of which 14% have been exchanged against Ca2+ ions and 3% against K+ ions. 83% of the Mn2+ and NO3- ions have been co-adsorbed by complexation at the edges of the layers. The grinding of the vermiculite has involved a decrease in the grains size from 2-3 mm to 100 pm and thus an increase in the edge layer adsorption site content allowing an increase of 19% of the maximum adsorption uptake compared to raw vermiculite. The ultrasonic milling of vermiculite in aqueous dispersion at 20 kHz allowed to decrease the size of the grains further (8 pm) and led to increase the maximum uptake by 31%. The sonication of the vermiculite dispersion in 35% hydrogen peroxide has allowed to obtain a maximum adsorption uptake of 36.77 mg center dot g(-1) (30% of increase compared to raw vermiculite). The linear variation of the Mn2+ adsorption capacity with respect to the sum of the estimated geometric perimeter of the sonicated particles (assuming square shaped particles) confirms an adsorption process at the edge of layers. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过分析from石(K +和Ca2 +)交换的阳离子与吸附在the石上的离子(NO3-;和Mn2 +)的等温线,研究了硝酸锰在ver石上的吸附机理。粗ver石的Langmuir型锰吸附等温线显示最大吸收量为28.32 mg中心点g(-1)。 25℃至45℃之间的吸附温度依赖性已证明是内热和自发吸附。每克当量的Mn2 +离子交换量仅占总吸附量的17%,其中14%已与Ca2 +交换,3%已与K +交换。通过络合在各层的边缘共吸附了83%的Mn2 +和NO3-离子。 grinding石的研磨涉及将晶粒尺寸从2-3 mm减小到100 pm,因此增加了边缘层吸附位点含量,与未加工ver石相比,最大吸附量增加了19%。在20 kHz的水分散液中对milling石进行超声研磨,可以进一步减小颗粒尺寸(8 pm),并使最大吸收量增加31%。在35%的过氧化氢中对ul石分散体进行超声处理,已获得36.77 mg中心点g(-1)的最大吸附量(与生ver石相比增加了30%)。 Mn 2+吸附能力相对于超声颗粒(假定为方形颗粒)的估计几何周长之和的线性变化确定了层边缘的吸附过程。 (C)2017 Elsevier B.V.保留所有权利。

著录项

  • 来源
    《Applied clay science》 |2017年第4期|92-98|共7页
  • 作者单位

    Univ Mentouri, Dept Chim, Lab Pollut & Traitement Eaux, Constantine 25000, Algeria;

    Univ Mentouri, Dept Chim, Lab Pollut & Traitement Eaux, Constantine 25000, Algeria|Univ Savoie Mont Blanc, LCME, F-73000 Chambety, France;

    Univ Mentouri, Dept Chim, Lab Pollut & Traitement Eaux, Constantine 25000, Algeria;

    Univ Savoie Mont Blanc, LCME, F-73000 Chambety, France;

    Univ Savoie Mont Blanc, LCME, F-73000 Chambety, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Manganese; Adsorption; Vermiculite; Layer edge; Exchange; Sonication;

    机译:锰;吸附;Ver石;层边缘;交换;超声处理;

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