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Pentasil zeolites from Antarctica: from mineralogy to zeolite science and technology

机译:南极的Pentasil沸石:从矿物学到沸石科学技术

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In the course of a systematic investigation of zeolites from Northern Victoria Land, Antarctica, a large number of zeolitic species was identified in the Jurassic Ferrar Dolerites of Mt. Adamson. Noteworthy was the presence of three new zeolites: gottardiite, the natural counterpart of the synthetic NU-87, terranovaite, and mutinaite, the analogue of ZSM-5, as well as the two very rare zeolites tschernichite, the counterpart of zeolite beta, and boggsite. The chemical and crystallographic properties of these natural materials were compared with those of their synthetic analogues. The tetragonal and monoclinic polymorphic phases, intergrown in the beta zeolite, were isolated and structurally refined in tschernichite crystals, which differ by crystal size, morphology and chemistry. The occurrence of these natural zeolites demonstrates that the chemical existence field of their synthetic counterparts is larger than that argued up to now, and that their synthesis can be obtained in the absence of an organic template.
机译:在对南极维多利亚州北部维多利亚州的沸石进行系统研究的过程中,山中的侏罗纪费拉尔陶勒石中发现了大量沸石物种。亚当森。值得注意的是,存在三种新型沸石:合成的NU-87的天然对应物:哥得二石,钙钛矿和ZSM-5的类似物蒙脱石,以及沸石β的对应物中的两种非常稀有的菱锰矿。硬质合金。将这些天然材料的化学和晶体学性质与其合成类似物进行了比较。 β沸石中共生的四方相和单斜相多晶型相被分离并在菱锰矿晶体中进行结构精制,其晶体尺寸,形态和化学性质不同。这些天然沸石的出现表明,其合成对应物的化学存在范围比迄今为止所讨论的要大,并且它们的合成可以在没有有机模板的情况下获得。

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