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Superior photocatalytic NO(x )removal of cementitious materials prepared with white cement over ordinary Portland cement and the underlying mechanisms

机译:优越的光催化NO(x)除去普通波特兰水泥的白色水泥和潜在机制制备水泥材料

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摘要

This study presents experimental results in an attempt to explain why photocatalytic cementitious materials prepared with white cement (WC) had superior photocatalytic NOx removal performance than those prepared with ordinary Portland cement (OPC). The UV-Vis diffuse reflectance spectra (DRS) of dry WC and OPC demonstrated that OPC had a stronger light absorption ability. And electrochemical impedance spectroscopy (EIS) analysis revealed that OPC incurred higher charge transfer resistance on the inter-surface of OPC and TiO2. Moreover, the OPC/P25 dry mixtures displayed a relatively lower photoluminescence (PL) intensity at 420 nm. The addition of iron oxide (Fe2O3) in WC caused a decrease in NO(x )removal, a boost in light absorption, an increase in the resistance of charge transfer, and a reduction in PL intensity. Collectively, the relatively poor performance of OPC/P25 mixtures in photocatalytic NOx removal is due to a combination of stronger light absorption and lower charge separation caused by OPC.
机译:本研究提出了实验结果,试图解释为什么用白色水泥(WC)制备的光催化水泥材料具有优异的光催化NOx去除性能,而不是用普通的波特兰水泥(OPC)。 DRY WC和OPC的UV-VI扩散反射光谱(DRS)证明OPC具有更强的光吸收能力。和电化学阻抗光谱(EIS)分析显示OPC在OPC和TiO 2的表面上产生更高的电荷转移性。此外,OPC / P25干混合物在420nm处显示出相对较低的光致发光(PL)强度。在WC中加入氧化铁(Fe 2 O 3)导致NO(x)去除的减少,在光吸收中提升,电荷转移的电阻增加,以及PL强度的降低。集体,光催化NOx中的OPC / P25混合物的性能相对较差,是由于OPC引起的较强光吸收和较低电荷分离的组合。

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