首页> 外文期刊>Environmental Engineering Science >Hydrogen Peroxide-Generated Gases at Asphalt-Glass Interface: Effect on Surface Cleaning and Analysis by Nanoscale Surface Imaging Spectroscopy
【24h】

Hydrogen Peroxide-Generated Gases at Asphalt-Glass Interface: Effect on Surface Cleaning and Analysis by Nanoscale Surface Imaging Spectroscopy

机译:沥青-玻璃界面处的过氧化氢产生的气体:对表面清洁和纳米尺度表面成像光谱分析的影响

获取原文
获取原文并翻译 | 示例
       

摘要

The research herein focused on the first step of the phenomena of surface cleaning by hydrogen peroxide and advanced oxidation treatment, namely chronicling preferential accumulation of nanometer-scale gas bubbles at the solid-residue interface. To demonstrate this phenomenon, the authors coated asphalt onto a glass slide, then immersed the slide in 3% hydrogen peroxide (H2O2) at pH 9, then projected laser light against the opposing side of that glass slide at an angle. As a significant original contribution to science, nanoscale surface imaging quantitatively detected H2O2-induced bubbles that had 70-400nm dimensions; and it revealed that these bubbles congregated along 50-80% of the asphalt coating's fringe. Tests further showed that when H2O2 and O-3 dosing was followed by cavitation and ultrasonics, organic coatings abruptly dislodged from silica grains. With the high resolution of this Surface Imaging Spectroscopy, this laser apparatus could discern between (a) the clear glass slide, (b) regions of asphalt adhesion to the glass, (c) infinite air, and (d) most significantly, regions where nanoscale gas bubbles congregated under the lip of asphalt's fringe. Microscopic cleaning process of the removal of asphalt from a glass surface has been observed directly. The authors have proposed the removal mechanism to be due to the formation of gas bubbles at the interface that accumulate underneath the edges of the asphalt coating. This accumulation eventually assisted the removal by prying the asphalt coating off the surface as the formation and reaction progressed along the interface.
机译:本文的研究集中在通过过氧化氢和先进的氧化处理进行表面清洁现象的第一步,即,记录纳米级气泡在固体残渣界面上的优先积累。为了证明这种现象,作者将沥青涂在载玻片上,然后将其浸入pH为9的3%过氧化氢(H2O2)中,然后以一定角度将激光投射到该载玻片的另一侧。作为对科学的重大贡献,纳米级表面成像技术定量检测了H2O2引起的尺寸为70-400nm的气泡。结果表明,这些气泡聚集在沥青涂层边缘的50-80%之间。测试进一步表明,在对H2O2和O-3进行配量后,进行空化和超声波处理后,有机涂层会突然从二氧化硅颗粒上脱落。借助这种表面成像光谱仪的高分辨率,该激光设备可以辨别(a)透明玻璃载玻片,(b)沥青粘附到玻璃的区域,(c)无限空气和(d)最明显的区域之间,其中纳米级气泡聚集在沥青边缘的下方。直接观察到从玻璃表面去除沥青的微观清洁过程。作者提出去除机理是由于在界面处形成了气泡,这些气泡聚集在沥青涂层边缘的下方。随着地层和反应沿界面的进行,这种积聚最终通过将沥青涂层从表面撬起而辅助去除。

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