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Comparison between leached metakaolin and leached diatomaceous earth as raw materials for the synthesis of ZSM-5

机译:浸出的偏高岭土与浸出的硅藻土作为合成ZSM-5原料的比较

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摘要

Inexpensive raw materials have been used to prepare ZSM-5 zeolites with SiO2/Al2O3 molar ratios in the range 20 – 40. Kaolin or Bolivian diatomaceous earth was used as aluminosilicate raw materials and sodium hydroxide and n-butylamine were used as mineralizing agents and template. Dealumination of the raw materials by acid leaching made it possible to reach appropriate SiO2/Al2O3 ratios and to reduce the amount of iron and other impurities. After mixing the components and aging, hydrothermal treatment was carried out and the products were recovered The results clearly show for the first time that well-crystallized ZSM-5 can be directly prepared from leached metakaolin or leached diatomaceous earth using sodium hydroxide and n-butylamine as mineralizing agents and template under appropriate synthesis conditions. A longer induction time prior to crystallization was observed for reaction mixtures prepared from leached diatomaceous earth, probably due to slower digestion of the fossilized diatom skeletons as compared with that for microporous leached metakaolin. The use of leached diatomaceous earth allowed higher yield of ZSM-5 crystals within comparable synthesis times. However, low amounts of Mordenite formed, which was related to the high calcium content of diatomaceous earth. Another considerable advantage of diatomaceous earth over kaolin is that diatomaceous earth does not require heat treatment at high temperature for metakaolinization.
机译:廉价的原料已用于制备SiO2 / Al2O3摩尔比为20-40的ZSM-5沸石。高岭土或玻利维亚硅藻土用作硅铝酸盐的原料,氢氧化钠和正丁胺用作成矿剂和模板。通过酸浸将原料脱铝,可以达到适当的SiO2 / Al2O3比,并减少铁和其他杂质的含量。混合各组分并老化后,进行水热处理并回收产物。结果清楚地表明,首次可以从浸出的偏高岭土或浸出的硅藻土中使用氢氧化钠和正丁胺直接制备结晶良好的ZSM-5。在适当的合成条件下用作矿化剂和模板。对于从浸出的硅藻土制备的反应混合物,观察到结晶之前更长的诱导时间,这可能是由于与微孔浸出的偏高岭土相比,化石的硅藻骨架的消化较慢。使用沥滤的硅藻土可以在可比的合成时间内获得更高的ZSM-5晶体产率。但是,形成的丝光沸石含量低,这与硅藻土的钙含量高有关。硅藻土相对于高岭土的另一个显着优点是硅藻土不需要高温下的热处理即可进行高岭土化。

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