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Atomically Dispersed Y or La on Birnessite-Type MnO2 for the Catalytic Decomposition of Low-Concentration Toluene at Room Temperature

机译:在室温下对BiRnerityite型MnO 2进行原子分散的Y或La,用于在室温下催化分解低浓度甲苯

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摘要

Room-temperature catalytic decomposition of low-concentration volatile organic compounds (VOCs) in indoor air is an exciting dream to solve their pollution. Herein, two kinds of rare-earth elements (Y and La) were separately doped into birnessite-type MnO2 nanosheets in the form of single atoms by the hydrothermal method. As-synthesized La/MnO2 achieved 100% removal of 10 ppm toluene at 40 degrees C under the gas hourly space velocity of 60 L g(-1) h(-1), which was even somewhat better than the single Pt atom-doped MnO2. In addition, La/MnO2 showed the good durability at room temperature for 0.5 ppm toluene removal under the GHSV of 300 L g(-1) h(-1) and could be effectively regenerated at 105 degrees C. GC/FID, online-MS and TD-GC/MS analysis demonstrated that only ignorable trace benzene (similar to 3.4 ppb, < one thousandth of inlet toluene) was generated in the gas phase during catalytic decomposition of 10 ppm toluene at room temperature. This research sheds light on the development of low cost and high activity catalysts for low-concentration VOC oxidation at room temperature.
机译:室内空气中低浓度挥发性有机化合物(VOCs)的室温催化分解是解决其污染的一个令人兴奋的梦想。本文采用水热法将两种稀土元素(Y和La)分别以单原子的形式掺杂到水钠锰矿型MnO2纳米片中。合成的La/MnO2在40℃下,在每小时60 L g(-1)h(-1)的气速下,对10 ppm甲苯的去除率达到100%,甚至比单铂原子掺杂的MnO2还要好。此外,在300 L g(-1)h(-1)的GHSV条件下,La/MnO2在室温下对0.5 ppm甲苯的去除表现出良好的耐久性,并可在105℃下有效再生。GC/FID,在线MS和TD-GC/MS分析表明,在室温下催化分解10 ppm甲苯的过程中,气相中仅生成可忽略的微量苯(类似于3.4 ppb,<入口甲苯的千分之一)。本研究为开发低成本、高活性的室温低浓度VOC氧化催化剂提供了依据。

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