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Study of adsorptive materials obtained by wet fine milling and acid activation of vermiculite

机译:wet石湿法粉碎和酸活化制取吸附材料的研究

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摘要

Wet fine milling, as a pretreatment step to acid activation of vermiculite, was applied in order to decrease the environmental impact of the procedure commonly used to increase the mineral's adsorption capacity. Milling caused fragmentation of the material and several changes in its structure: edges of the flocks became frayed, the surface cracked, cation exchange capacity (CEC) increased, and most of the iron in oligonuclear and bulk form was removed. At the same time the specific surface area, crystallinity, chemical composition and adsorption capacity did not change significantly. Fine ground material was more susceptible to acid activation, which caused a decrease in the crystallinity and CEC, development of meso- and microporosity, an increase in the total volume of pores, in the specific surface and external surface areas. Micropores were developed faster in lower acid concentrations in the rough ground material, while the external surface area and total pores volume increased faster in the fine ground vermiculite. The latter material also had a higher CEC. Application of 0.5 mol L-1 HNO3 to rough ground vermiculite did not change its adsorption capacity, however it changed from 55 +/- 7 to 110 +/- 8 mg g(-1) when the material was fine ground. The optimal treatment conditions for both materials were obtained for 1.0 mol L-1 HNO3, however the adsorption capacity for the fine ground vermiculite increased more (i.e., from 55 +/- 7 to 136 +/- 7 mg g(-1)) than for its rough ground counterpart (i.e., 52 +/- 7 to 93 +/- 7 mg g(-1)). Concentrations higher than 1.0 mol L-1 resulted in deterioration of the adsorption capacities in both cases. Considering all the experimental outcomes, it can be concluded that the environmental impact of acid activation of vermiculite may be diminished by application of fine grinding of the material before the chemical activation process. Such treatment resulted in higher adsorption capacity at a given acid concentration compared to the rough ground material.
机译:为了减少commonly石酸活化的预处理步骤,采用湿法细磨以减少通常用于增加矿物吸附能力的工艺对环境的影响。铣削会导致材料破碎,并发生结构上的几处变化:绒毛边缘磨损,表面开裂,阳离子交换能力(CEC)增加,大部分寡核和块状铁被去除。同时,比表面积,结晶度,化学组成和吸附容量没有明显变化。细磨的材料更容易受到酸的活化,从而导致结晶度和CEC降低,介孔和微孔的发展,比表面积和外表面积中孔的总体积增加。在粗糙的地面材料中,酸浓度较低时,微孔的生长速度更快,而在细磨碎的ver石中,外表面积和总孔体积的增长速度更快。后一种材料的CEC也较高。在粗糙的ground石上添加0.5 mol L-1 HNO3不会改变其吸附能力,但是当材料被细磨时,它的吸附量从55 +/- 7变为110 +/- 8 mg g(-1)。对于1.0 mol L-1 HNO3,均获得了两种材料的最佳处理条件,但是细粉ver石的吸附容量增加了更多(即,从55 +/- 7增至136 +/- 7 mg g(-1))。比其粗糙的地面对应物(即52 +/- 7至93 +/- 7 mg g(-1))高。在两种情况下,高于1.0mol L-1的浓度都导致吸附能力下降。考虑到所有的实验结果,可以得出结论,the石的酸活化对环境的影响可以通过在化学活化过程之前对材料进行精细研磨来减少。与粗糙的地面材料相比,这种处理在给定的酸浓度下具有更高的吸附能力。

著录项

  • 来源
    《Applied clay science》 |2018年第4期|37-49|共13页
  • 作者单位

    Jagiellonian Univ, Fac Chem, Ul Ingardena 3, PL-30060 Krakow, Poland;

    Inst Politecn Porto, Inst Super Engn Porto, LAQV, REQUIMTE, Rua Dr Antonio Bernardino Almeida 431, P-4200072 Porto, Portugal;

    Inst Politecn Porto, Inst Super Engn Porto, LAQV, REQUIMTE, Rua Dr Antonio Bernardino Almeida 431, P-4200072 Porto, Portugal;

    Pedag Univ, Mossbauer Spect Lab, Ul Podchorazych 2, PL-30084 Krakow, Poland;

    Pedag Univ, Mossbauer Spect Lab, Ul Podchorazych 2, PL-30084 Krakow, Poland;

    Natl Res Inst, Oil & Gas Inst, Ul Lubicz 25A, PL-31503 Krakow, Poland;

    Jagiellonian Univ, Fac Chem, Ul Ingardena 3, PL-30060 Krakow, Poland;

    Polish Acad Sci, Jerzy Haber Inst Catalysis & Surface Chem, Ul Niezapominajek 8, PL-30239 Krakow, Poland;

    Inst Politecn Porto, Inst Super Engn Porto, LAQV, REQUIMTE, Rua Dr Antonio Bernardino Almeida 431, P-4200072 Porto, Portugal;

  • 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

    Milled vermiculite; Acid activation; Increased adsorption capacity; Reduced environmental impact; Wastewater treatment;

    机译:ed石粉;酸活化;吸附能力增强;减少环境影响;废水处理;

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