...
首页> 外文期刊>Physical chemistry chemical physics: PCCP >Drying-induced atomic structural rearrangements in sodium-based calcium-alumino-silicate-hydrate gel and the mitigating effects of ZrO2 nanoparticles
【24h】

Drying-induced atomic structural rearrangements in sodium-based calcium-alumino-silicate-hydrate gel and the mitigating effects of ZrO2 nanoparticles

机译:干燥诱导的钠基钙 - 铝硅酸钙 - 水合物凝胶中的原子结构重排及ZrO2纳米粒子的缓解作用

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Conventional drying of colloidal materials and gels (including cement) can lead to detrimental effects due to the buildup of internal stresses as water evaporates from the nano/microscopic pores. However, for these gel materials the underlying nanoscopic alterations that are, in part, responsible for macroscopically-measured strain values (especially at low relative humidity) remain a topic of open debate in the literature. In this study, sodium-based calcium-alumino-silicate-hydrate (C-(N)-A-S-H) gel, the major binding phase of silicate-activated blast furnace slag (one type of low-CO2 cement), is investigated from a drying perspective, since it is known to suffer extensively from drying-induced microcracking. By employing in situ synchrotron X-ray total scattering measurements and pair distribution function (PDF) analysis we show that the significant contributing factor to the strain development in this material at extremely low relative humidity (0%) is the local atomic structural rearrangement of the C-(N)-A-S-H gel, including collapse of interlayer spacing and slight disintegration of the gel. Moreover, analysis of the medium range (1.0-2.2 nm) ordering in the PDF data reveals that the PDF-derived strain values are in much closer agreement (same order of magnitude) with the macroscopically measured strain data, compared to previous results based on reciprocal space X-ray diffraction data. From a mitigation standpoint, we show that small amounts of ZrO2 nanoparticles are able to actively reinforce the structure of silicate-activated slag during drying, preventing atomic level strains from developing. Mechanistically, these nanoparticles induce growth of a silica-rich gel during drying, which, via density functional theory calculations, we show is attributed to the high surface reactivity of tetragonal ZrO2.
机译:常规干燥胶体材料和凝胶(包括水泥)可以导致由于内应力的累积而导致的抗衡效应,因为水从纳米/微观孔蒸发。然而,对于这些凝胶材料,潜在的纳米镜片改变部分,部分是对宏观测量的应变值(特别是在低相对湿度)的负责仍然是文献中的开放辩论的主题。在该研究中,研究了钠基钙 - 铝硅酸钙 - 水合物(C-(n) - 脱离)凝胶,硅酸盐活化高炉炉渣(一种类型的低二氧化碳水泥)的主要结合相。干燥的观点,因为已知从干燥诱导的微裂纹中遭受过度遭受。通过以原位同步X射线总散射测量和配对分布函数(PDF)分析,我们表明,在极低的相对湿度(0%)下该材料中应变发育的显着贡献因素是局部原子结构重新排列C-(n) - 凝胶,包括层间间距和凝胶轻微崩解的塌陷。此外,PDF数据中的介质范围(1.0-2.2nm)排序的分析表明,与基于之前的结果相比,PDF导出的应变值与宏观测量的应变数据相比更接近(相同的数量级)。倒数空间X射线衍射数据。从缓解角度来看,我们表明,在干燥过程中,少量ZrO2纳米颗粒能够积极地加强硅酸盐活化渣的结构,防止原子水平菌株显影。在机械上,这些纳米颗粒在干燥过程中诱导富含二氧化硅的凝胶的生长,这通过密度官能理论计算,我们展示归因于四方ZrO2的高表面反应性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号