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首页> 外文期刊>Clay Minerals >Synthesis and characterization of Na-X, Na-A and Na-P zeolites and hydroxysodalite from metakaolinite
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Synthesis and characterization of Na-X, Na-A and Na-P zeolites and hydroxysodalite from metakaolinite

机译:偏高岭石合成Na-X,Na-A和Na-P沸石和羟基钠钙石及表征

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摘要

The present work deals with the hydrothermal synthesis of Na zeolites (Na-A, Na-X and Na-P) and hydroxysodalite using kaolinite calcined at 650°C as starting material. The focus was on definition of the most favourable conditions for the synthesis of zeolite Na-A and Na-X from metakaolin in order to economize on both energy (i.e. synthesis temperatures) and reaction time and to enlarge the field of pure and isolated synthesized phases. Metakaolin was mixed with calculated amounts of NaOH solution and sodium silicate and five sets of experiments were carried out at ambient pressure and 68±0.1°C varying the SiO2/Al2O3 ratio from 2.2 to 7. Optimal conditions for crystallization of Na-A zeolite from kaolinite were reached with a SiO2/Al2O3 ratio of 2.2 plus 4 m NaOH without adding sodium silicate; transformation into hydroxysodalite develops after ~8 h. For SiO2/Al2O3 ratios between 4 and 7, crystallization of the separate Na-X zeolite phase could be achieved and transformation into Na-P and hydroxysodalite occurred after 382 h and 190 h, respectively. For SiO2/Al2O3 ratios between 5 and 6, transformation of metakaolin into Na-X plus Na-A, hydroxysodalite and Na-P occurred, and the field within which Na-A and Na-X zeolite exists overlapped that of the other zeolites. The products of synthesis were characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM), inductively coupled plasma optical emission spectrometry (ICP-OES), infrared spectroscopy (IR) and thermal analyses (TG-DTG-DTA). Obtaining pure Na-A and Na-X zeolite from kaolinite treated at low metakaolinitization temperature (650°C) and low hydrothermal synthesis temperature (68°C) represents a considerable economic advantage in terms of both energy and time.
机译:本工作涉及以650°C煅烧的高岭土为原料,对Na沸石(Na-A,Na-X和Na-P)和羟基钠钙石进行水热合成。重点是确定由偏高岭土合成沸石Na-A和Na-X的最有利条件,以节省能量(即合成温度)和反应时间,并扩大纯净和分离的合成相的领域。将偏高岭土与计算量的NaOH溶液和硅酸钠混合,并在环境压力和68±0.1°C下进行五组实验,将SiO2 / Al2O3的比例从2.2改变为7。Na-A沸石从中结晶的最佳条件在不添加硅酸钠的情况下,SiO2 / Al2O3比为2.2加上4 m NaOH达到高岭石;约8小时后,转化为羟基苏打石。对于SiO2 / Al2O3介于4和7之间的比例,可以实现单独的Na-X沸石相的结晶,分别在382 h和190 h后发生转变为Na-P和羟基钠钙石。对于SiO2 / Al2O3介于5和6之间的比率,偏高岭土向Na-X加Na-A,羟基钠钙石和Na-P的转化发生,并且Na-A和Na-X沸石的存在场与其他沸石的场重叠。合成产物通过X射线衍射(XRD),扫描电子显微镜(SEM),电感耦合等离子体发射光谱(ICP-OES),红外光谱(IR)和热分析(TG-DTG-DTA)进行表征。从在低偏高岭土化温度(650℃)和低水热合成温度(68℃)下处理的高岭土获得纯的Na-A和Na-X沸石代表了在能量和时间方面的相当大的经济优势。

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  • 来源
    《Clay Minerals》 |2011年第3期|p.339-354|共16页
  • 作者单位

    Dipartimento di Geotecnologieper l'Ambiente e il Territorio, Universita degli Studi "G. D 'Annunzio", Chieti, Italy;

    Dipartimento di Geotecnologieper l'Ambiente e il Territorio, Universita degli Studi "G. D 'Annunzio", Chieti, Italy;

    Departamento de Geoquimica, Petrologia I Prospeccio Geologica, Universitat de Barcelona, Spain;

    Dipartimento di Geotecnologieper l'Ambiente e il Territorio, Universita degli Studi "G. D 'Annunzio", Chieti, Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    kaolinite; metakaolin; zeolite synthesis; na-a; na-x; hydroxysodalite; na-p; xrd; rietveld refinement; ir; dta-tg; sem; icp-oes.;

    机译:高岭石偏高岭土;沸石合成;na-a;na-x;羟基钠钙石;小憩;xrd;无懈可击ir;dta-tg;sem;icp-oes。;

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