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Efficient reduction of nitric oxide using zirconium phosphide powders synthesized by elemental combination method

机译:用元素组合法合成的磷化锆粉有效还原一氧化氮

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摘要

Zirconium phosphide (ZrP) powders were synthesized by elemental combination method via the direct reaction of zirconium powders with red phosphorus, and characterized by XRD, SEM, XPS, XRF, SAED and TEM measurements. The obtained ZrP powders were found to exhibit apparent activity in the ready eliminateion of nitric oxide (NO) via facile redox reactions, and the elimination dynamics was evaluated within the context of various important experimental parameters, such as reaction temperature and gas concentration. At a fixed amount of ZrP powders, an increasing amount of NO would be eliminated with increasing reaction temperature, and complete conversion of NO to N2 could be reached in the range of 700 to 800 °C. The addition of NH3 also facilitated NO elimination at a fixed reaction temperature. Furthermore, of the products of the elimination process, zirconia (ZrO2) powder is a kind of biocompatible material, red phosphorus can be used to produce safety matches, organophosphorous pesticide and phosphor bronze, and the produced N2 might be collected and used as a protective gas or be converted into liquid nitrogen for other purposes.
机译:通过元素组合法,通过锆粉与红磷的直接反应,合成了磷化锆(ZrP)粉,并通过XRD,SEM,XPS,XRF,SAED和TEM进行了表征。发现获得的ZrP粉末在通过容易的氧化还原反应容易地消除一氧化氮(NO)中表现出明显的活性,并且在各种重要的实验参数例如反应温度和气体浓度的背景下评估了消除动力学。在一定量的ZrP粉末下,随着反应温度的升高,NO的增加量将被消除,并且在700至800°C的温度范围内,可以将NO完全转化为N2。 NH 3的添加还有助于在固定的反应温度下消除NO。此外,在消除过程的产品中,氧化锆(ZrO2)粉末是一种生物相容性材料,红磷可用于生产安全火柴,有机磷农药和磷青铜,并且产生的N2可能被收集起来用作保护剂。气体或转化为液氮用于其他目的。

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