目前纳米管状矿物结构的卷曲形式与其表面电荷性质和吸附性能之间的关系还未有过深入研究。本研究利用形貌相似但成分和结构不同的纳米管状矿物进行MO的英语翻译

目前纳米管状矿物结构的卷曲形式与其表面电荷性质和吸附性能之间的关系还未

目前纳米管状矿物结构的卷曲形式与其表面电荷性质和吸附性能之间的关系还未有过深入研究。本研究利用形貌相似但成分和结构不同的纳米管状矿物进行MO染料的对比吸附研究,借助矿物的表征测试及吸附等温线模型等手段,探究了两种天然一维矿物材料对MO染料去除效果的差异。首次发现了纳米管管状结构形成的卷曲方式对矿物表面电荷性质和甲基橙阴离子染料吸附性能的影响。
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At present, the relationship between the curled form of the nanotubular mineral structure and its surface charge properties and adsorption performance has not been studied in depth. In this study, nanotube minerals with similar morphologies but different compositions and structures were used for comparative adsorption of MO dyes. With the help of mineral characterization tests and adsorption isotherm models, the removal effects of two natural one-dimensional mineral materials on MO dyes were explored. The difference. It is the first time to discover the effect of the curling way of nanotube tubular structure on the surface charge properties of minerals and the adsorption properties of methyl orange anion dyes.
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结果 (英语) 2:[复制]
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At present, the relationship between the curly form of nano-tubular mineral structure and its surface charge properties and adsorption properties has not been studied in depth. In this study, the comparative adsorption of MO dyes was carried out by nano-tube minerals with similar shapes but different compositions and structures, and the differences between the removal effects of two natural one-dimensional mineral materials on MO dyes were explored by means of mineral characterization testing and adsorption contocular line models. For the first time, the effect of the curling form of nanotube structure on the properties of charge on mineral surface and the adsorption properties of methyl orange anion dyes was found.
正在翻译中..
结果 (英语) 3:[复制]
复制成功!
At present, the relationship between the curl form of nanotube structure and its surface charge properties and adsorption properties has not been studied. In this study, nano tubular minerals with similar morphology but different composition and structure were used to study the comparative adsorption of Mo dye. By means of mineral characterization test and adsorption isotherm model, the difference of Mo dye removal effect between two natural one-dimensional mineral materials was explored. It was found for the first time that the curling mode of the nanotube tube structure affected the surface charge properties of minerals and the adsorption properties of methyl orange anionic dye.<br>
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