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基于 OMS-2 的具有可控分级形态的催化剂用于高效催化氧化甲醛。

OMS-2-based catalysts with controllable hierarchical morphologies for highly efficient catalytic oxidation of formaldehyde.

机构信息

College of Life and Environmental Sciences, Shanghai Normal University, No. 100 Guilin Road, Shanghai 200234, China.

College of Life and Environmental Sciences, Shanghai Normal University, No. 100 Guilin Road, Shanghai 200234, China.

出版信息

J Hazard Mater. 2019 Dec 15;380:120890. doi: 10.1016/j.jhazmat.2019.120890. Epub 2019 Jul 11.

Abstract

Cryptomelane-type octahedral molecular sieve (OMS-2) catalysts are currently attracting tremendous attention due to their low-cost and remarkable thermo-catalytic activity. However, it is still difficult for OMS-2 catalysts to completely degrade formaldehyde at relatively low or even ambient temperature. In this work, OMS-2 catalysts with different ratios of length to diameter were prepared and the OMS-2-s with the minim ratio of length to diameter (1-3) exhibited the best catalytic performance than the other samples. Then, the optimized OMS-2-s nanorods were loaded on the SiO nanofibers via a simultaneous electrospining-spray strategy. The evaluation for the dynamic catalytic activities of the samples showed that, the T (HCHO conversion reached to 50%) for the OMS-2/SiO nanofibrous membranes was decreased by 24 °C than the OMS-2-s nanorods. Furthermore, in the static experiment of HCHO decomposition, the composite membrane could achieve a catalytic efficiency of 52.3% at 25 °C, much higher than that of the OMS-2-s nanorods (45.9%). This work offers a new strategy to improve the catalytic efficiency of OMS-2 by controlling the morphology and loading of OMS-2 nanorods, and also designs a kind of advanced nano OMS-2-based nanofibrous membranes with hierarchical nanostructures for the highly efficient formaldehyde elimination during the practical application.

摘要

八面体分子筛(OMS-2)型纳米催化剂由于其成本低、热催化活性高而备受关注。然而,OMS-2 催化剂在相对较低的温度下甚至在环境温度下完全降解甲醛仍然具有一定的挑战性。在这项工作中,制备了不同长径比的 OMS-2 催化剂,具有最小长径比(1-3)的 OMS-2-s 表现出比其他样品更好的催化性能。然后,通过同时静电纺丝-喷雾策略将优化后的 OMS-2-s 纳米棒负载到 SiO 纳米纤维上。对样品的动态催化活性进行评价,结果表明,OMS-2/SiO 纳米纤维膜的 T(HCHO 转化率达到 50%)比 OMS-2-s 纳米棒降低了 24°C。此外,在 HCHO 分解的静态实验中,复合膜在 25°C 时可达到 52.3%的催化效率,远高于 OMS-2-s 纳米棒(45.9%)。本工作通过控制 OMS-2 纳米棒的形态和负载,提供了一种提高 OMS-2 催化效率的新策略,并且设计了一种具有分级纳米结构的先进纳米 OMS-2 基纳米纤维膜,可用于实际应用中高效去除甲醛。

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