School of Metallurgy, Northeastern University, Shenyang 110819, China.
School of Metallurgy, Northeastern University, Shenyang 110819, China.
J Environ Sci (China). 2023 Sep;131:151-161. doi: 10.1016/j.jes.2022.08.021. Epub 2022 Aug 30.
Manganese-based catalysts were widely developed for catalytic removal of ozone, and the low stability and water inactivation are major challenges. To improve removal performance of ozone, three methods were applied to modify amorphous manganese oxides, including acidification, calcination and Ce modification. The physiochemical properties of prepared samples were characterized, and the catalytic activity for ozone removal was evaluated. All modification methods can promote the removal of ozone by amorphous manganese oxides, and Ce modification showed the most significant enhancement. It was confirmed that the introduction of Ce markedly changed the amount and property of oxygen vacancies in amorphous manganese oxides. Superior catalytic activity of Ce-MnO can be ascribed to its more content and enhanced formation ability of oxygen vacancies, larger specific surface area and higher oxygen mobility. Furthermore, the durability tests under high relative humidity (80%) determined that Ce-MnO showed excellent stability and water resistance. These demonstrate the promising potential of amorphously Ce-modified manganese oxides for catalytic removal of ozone.
锰基催化剂被广泛开发用于催化臭氧去除,但其低稳定性和水失活是主要挑战。为了提高臭氧去除性能,采用三种方法对无定形锰氧化物进行改性,包括酸化、煅烧和 Ce 改性。对制备样品的物理化学性质进行了表征,并评价了其对臭氧去除的催化活性。所有改性方法都能促进无定形锰氧化物对臭氧的去除,Ce 改性的效果最为显著。结果表明,Ce 的引入显著改变了无定形锰氧化物中氧空位的数量和性质。Ce-MnO 具有优异的催化活性,可归因于其具有更多的氧空位含量和增强的形成能力、更大的比表面积和更高的氧迁移率。此外,在高相对湿度(80%)下的耐久性测试表明,Ce-MnO 表现出优异的稳定性和耐水性。这些结果表明,无定形 Ce 改性锰氧化物在催化臭氧去除方面具有广阔的应用前景。