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首页> 外文期刊>Chemistry Select >Effect of Morphology Control of Hexaniobate Nanotubes on their Acid Characteristics and Ethyl Mercaptan Removal in Light Alkane
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Effect of Morphology Control of Hexaniobate Nanotubes on their Acid Characteristics and Ethyl Mercaptan Removal in Light Alkane

机译:己二酸纳米管的形态控制对光烷烃中乙酰近胃的去除的影响

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Organic sulfide usually exists in light alkane such as natural gas,biogas,oilfield gas,etc.Due to its toxicity,flammability,and corrosivity,a series of environmental and safety problems will be caused.Physical adsorption with adsorbent is one of the dry desulfurization methods,which has the characteristics of mild conditions,no by-products,and simple regeneration.Herein,the adsorbent protonated H4Nb6O_(17)nanotubes(HNT)were constructed by a new spray method.The morphology,skeleton structure,surface hydroxyl groups,and the Bronsted acid sites properties of the as-prepared samples were characterized and analyzed in detail.The adsorption,separation,and recycling performance were evaluated by the probe compound ethyl mercaptan(Et-SH)in CH4.The results show that H4Nb6O_(17)nanotubes prepared by a spray method with improved morphology have better adsorption properties for ethyl mercaptan in methane than that of the sample prepared by traditional flocculation methods.The results suggest that the spray technology brings about high dispersion of nanotube aggregation,small tube diameter,and the enhancement of Bronsted acid.These characteristics will lead to higher adsorption and removal capacity of ethyl mercaptan.This work is also helpful to explain the relationship between structure and acidity in niobate nanomaterials,and provides new idea for the construction of 1D nanomaterials.
机译:有机硫化物通常存在于浅烷烃中,例如天然气,沼气,油田气体等。其毒性,易燃性和腐蚀性,将引起一系列的环境和安全问题。具有吸附剂的吸附是一种干燥的脱硫化之一方法具有轻度条件,无副产物和简单再生的特征。此处,吸附剂质子化的H4NB6O_(17)纳米管(HNT)是通过新的喷雾方法构建的。并详细介绍了所制备样品的Bronsted Acid位点的性能。通过CH4中的探针复合乙基硫醇(ET-SH)评估了吸附,分离和回收性能。结果表明H4NB6O_(17)(17(17) )通过具有改进形态的喷雾方法制备的纳米管具有甲烷中乙基乙烷的吸附特性,而不是传统的絮凝方法制备的样品。喷雾技术带来了纳米管聚集,小管直径和增强Bronsted Acid的高度分散体。这些特征将导致乙基辅助物的吸附和去除能力更高。这项工作也有助于解释结构与酸度之间的关系和酸度之间的关系Niobate纳米材料,并为1D纳米材料的构建提供了新的想法。

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