埃洛石
小角X射线散射
多孔性
材料科学
矿物学
明矾石
打赌理论
化学工程
三水铝石
复合材料
高岭石
散射
地质学
冶金
吸附
化学
光学
热液循环
有机化学
工程类
物理
作者
Jiaqi Jin,Shoeleh Assemi,Hassnain Asgar,Greeshma Gadikota,Thang Tran,William Nguyen,John McLennan,Jan D. Miller
出处
期刊:Minerals
[MDPI AG]
日期:2021-11-24
卷期号:11 (12): 1308-1308
被引量:11
摘要
Halloysite is a unique 1:1 clay mineral frequently appearing with nanotubular morphology, and having surfaces of different polarity with interesting and important technological applications. HNTs can be consolidated naturally in the earth by pressure and thermal flows. In this study of natural consolidated HNTs, the strength and hardness of these materials were found to be dependent on the presence of impurities (gibbsite, alunite, quartz, and other silica minerals), which accounted for the increased stability of such samples. In the absence of impurities, the strength of consolidated HNTs was significantly lower. The first 3D mapping of the pore structure of natural consolidated HNT is provided. The contributions of the porosity within the nanotubes and between the nanotubes were delineated using a combination of non-invasive ultra-small and small-angle X-ray scattering (USAXS/SAXS) analyses, BET/BJH pore size analyses, and computed tomography studies. A total porosity of 40%, as determined by X-ray attenuation and He porosimetry, was found for the natural consolidated HNTs, of which about one-third was due to the inter-HNT porosity. Nano-X-ray computed tomography (nano-XCT) analyses also indicated that 76% of the inter-HNT pores were smaller than 150 nm in diameter. The intra-HNT pore size determined by combined USAXS/SAXS and BET/BJH was about 10 nm. This pore network information is essential for the utilization of natural consolidated HNTs as a model geomaterial to investigate the effects of surface characteristics on confined fluid flow.
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