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Photocatalytic activity of titanium dioxide modified concrete materials - influence of utilizing recycled glass cullets as aggregates

机译:二氧化钛改性混凝土材料的光催化活性-利用回收碎玻璃作为骨料的影响

摘要

Combining the use of photocatalysts with cementitious materials is an important development in the field of photocatalytic air pollution mitigation. This paper presents the results of a systematic study on assessing the effectiveness of pollutant degradation by concrete surface layers that incorporate a photocatalytic material - Titanium Dioxide. The photocatalytic activity of the concrete samples was determined by photocatalytic oxidation of nitric oxide (NO) in the laboratory. Recycled glass cullets, derived from crushed waste beverage bottles, were used to replace sand in preparing the concrete surface layers. Factors, which may affect the pollutant removal performance of the concrete layers including glass color, aggregate size and curing age, were investigated. The results show a significant enhancement of the photocatalytic activity due to the use of glass cullets as aggregates in the concrete layers. The samples fabricated with clear glass cullets exhibited threefold NO removal efficiency compared to the samples fabricated with river sand. The light transmittance property of glass was postulated to account for the efficiency improvement, which was confirmed by a separate simulation study. But the influence of the size of glass cullets was not evident. In addition, the photocatalytic activity of concrete surface layers decreased with curing age, showing a loss of 20% photocatalytic activity after 56-day curing.
机译:将光催化剂与水泥质材料结合使用是减轻光催化空气污染领域的重要发展。本文介绍了系统研究的结果,该系统研究评估了掺入光催化材料-二氧化钛的混凝土表层降解污染物的有效性。在实验室中,通过一氧化氮(NO)的光催化氧化来测定混凝土样品的光催化活性。从粉碎的废饮料瓶中回收的碎玻璃被用来代替砂子来制备混凝土表层。研究了可能影响混凝土层除污性能的因素,包括玻璃颜色,集料尺寸和固化时间。结果表明,由于在混凝土层中使用碎玻璃作为聚集体,因此光催化活性显着增强。与用河砂制成的样品相比,用透明玻璃碎玻璃制成的样品显示出三倍的NO去除效率。假定玻璃的透光性是考虑到效率的提高,这已通过单独的模拟研究得到了证实。但是碎玻璃的尺寸的影响并不明显。此外,混凝土表层的光催化活性随固化时间的延长而降低,在56天固化后显示出20%的光催化活性损失。

著录项

  • 作者

    Chen J; Poon CS;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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