首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Sodalite, faujasite and A-type zeolite from 2:1dioctahedral and 2:1:1 trioctahedral clay minerals. A singular review of synthesis methods through laboratory trials at a low incubation temperature
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Sodalite, faujasite and A-type zeolite from 2:1dioctahedral and 2:1:1 trioctahedral clay minerals. A singular review of synthesis methods through laboratory trials at a low incubation temperature

机译:皂石,Faujasite和A型沸石,来自2:1的二氧化碳和2:1:1:1:1:1:1:1三氧化二乳粘土矿物质。 低培养温度下实验室试验的合成方法奇异综述

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This paper reviews different methods to synthesise zeolite from clay minerals through experiments at a low incubation temperature (40 degrees C). Ca-montmorillonite, Na-montmorillonite, illite and chlorite from Source Clay Repository of Clay Minerals Society were used as raw materials. These samples were acid-treated, calcined and NaOH pre-fused, in separate experiments. Zeolite synthesis was performed by means of: i) a conventional alkaline hydrothermal method and ii) a pre-fusion hydrothermal method. Both were also carried out with the addition of Al(OH)(3) to the hydrothermal solution. The results indicate that HCl treatment acts on the chemical dissolution of clays, while the breaking down of clay structure induced by calcinations together with the amorphization process (both on natural and acid pre-treated samples), has an important role in clay mineral activation. However, zeolites do not form by means of the conventional hydrothermal method, instead, they crystallize by a pre-fusion hydrothermal process, thus confirming the action of alkaline pre-fusion to improve raw material reactivity. (C) 2017 Elsevier B.V. All rights reserved.
机译:本文通过低温温度(40℃)的实验,从粘土矿物质中解读了不同的方法。 Ca-Montmorillonite,Na-Montmorillonite,来自粘土矿物学源粘土储存库的Imlite和Chlorite被用作原料。在单独的实验中,将这些样品进行酸处理,煅烧和NaOH预熔合。沸石合成借助于:i)常规碱性水热法和II)预熔融水热法。还通过将Al(OH)(3)加入水热溶液来进行。结果表明,HCl治疗作用于粘土的化学溶解,而煅烧诱导的粘土结构与非晶化方法(天然和酸预处理的样品上)的分解在粘土矿物活化中具有重要作用。然而,沸石通过常规的水热法形成沸石,而是通过预熔融的水热法结晶,从而证实碱性预熔合的作用以提高原料反应性。 (c)2017 Elsevier B.v.保留所有权利。

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