首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Non-destructive high-resolution X-ray micro computed tomography for quantifying dry water particles
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Non-destructive high-resolution X-ray micro computed tomography for quantifying dry water particles

机译:无损高分辨率X射线微计算机断层扫描技术,用于定量干燥水颗粒

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摘要

Dry water, a powder containing up to 98%wt. water and 2-6%wt. hydrophobic nanoparticles, is a novel material for novel applications like CO2 capture, transportation and storage in the form of clathrate hydrates. In this study, novel high-resolution X-ray micro computed tomography (HRXMT) was used as an in situ, non-destructive tool to visually and quantitatively examine the inner structure of dry water that has not been accessible previously. Specifically, the HRXMT was used to study the effect of silica/ water wt. ratio on the number, surface area and volume distributions of dry water. The results showed that dry water was stable under ambient condition for long time. The technique was also successful in characterizing the structure changes in dry. water after exposing to low temperature, high pressure and stirring. Low temperature did not affect the structure significantly, while high pressure and slow stirring broke the structure fairly readily with separation of dry water into the primary solid and liquid phases. These findings are useful to our understanding of the role of dry water in promoting the formation of CO2 and gas hydrates.
机译:干水,一种粉末,含量高达98%wt。水和2-6%重量疏水性纳米粒子是一种新型材料,可用于新型应用,例如以笼形水合物的形式捕获,运输和储存CO2。在这项研究中,新型高分辨率X射线微计算机断层扫描(HRXMT)被用作就地,非破坏性工具,以可视方式和定量方式检查了以前无法获得的干燥水的内部结构。具体而言,HRXMT用于研究二氧化硅/水重量的影响。干燥水的数量,表面积和体积分布的比率。结果表明,干燥水在环境条件下长期稳定。该技术还成功地表征了干燥中的结构变化。暴露于低温,高压和搅拌后再注入水。低温对结构没有明显影响,而高压和缓慢搅拌使干水分离成主要的固相和液相相当容易破坏结构。这些发现有助于我们理解干燥水在促进CO2和气体水合物形成中的作用。

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