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Elimination of formaldehyde over Cu-Al_2 O_3 catalyst at room temperature

机译:室温下在Cu-Al_2 O_3催化剂上消除甲醛

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Catalytic elimination of formaldehyde (HCHO) was investigated over Cu-Al_2O_3 catalyst at room temperature. The results indicated that no oxidation of HCHO into CO, occurs at room temperature, but the adsorption of HCHO occurs on the catalyst surface. With the increase of gas hourly space velocity (GHSV) and inlet HCHO concentration, the time to reach saturation was shortened proportionally. The results of the in situ DRIFTS, Density functional theory calculations and temperature programmed desorption(TPD) showed that HCHO was completely oxidized into HCOOH over Cu-Al_2O_3 at room temperature. With increasing the temperature in a flow of helium, HCOOH was completely decomposed into CO, over the catalyst surface, and the deactivated Cu-Al_2O_3 is regenerated at the same time. In addition, although Cu had no obvious influence on the adsorption of HCHO on Al_2O_3, Cu dramatically lowered the decomposition temperature of HCOOH into CO,. It was shown that Cu-Al_2O_3 catalyst had a good ability for the removal of HCHO, and appeared to be promising for its application in destroying HCHO at room temperature.
机译:在室温下用Cu-Al_2O_3催化剂研究了甲醛的催化消除(HCHO)。结果表明,在室温下没有发生HCHO氧化成CO的现象,但是HCHO在催化剂表面发生了吸附。随着气体时空速度(GHSV)和入口HCHO浓度的增加,达到饱和的时间成比例地缩短。原位DRIFTS,密度泛函理论计算和程序升温脱附(TPD)结果表明,室温下HCHO在Cu-Al_2O_3上被完全氧化为HCOOH。随着氦气流中温度的升高,HCOOH在催化剂表面完全分解为CO,并且失活的Cu-Al_2O_3同时再生。此外,尽管Cu对HCHO在Al_2O_3上的吸附没有明显影响,但Cu大大降低了HCOOH分解为CO 2的温度。结果表明,Cu-Al_2O_3催化剂具有良好的脱除HCHO的能力,在室温下破坏HCHO方面具有广阔的应用前景。

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