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Manganese Oxide Nanoarchitectures for Broad-Spectrum Removal of Toxic Gases in Air-Filtration Applications

机译:空气过滤应用中用于广谱去除有毒气体的氧化锰纳米结构

摘要

A high-surface-area, highly porous manganese oxide (MnOx) in the form of xerogel or aerogel monoliths or powders comprising a manganese oxide nanoarchitecture comprising an interior surface area 200 m2 g−1, wherein the MnOx gel has a void structure comprising pores that are sized from 2-150 nm, and wherein the manganese oxide nanoarchitecture removes toxic gas from a toxic gas and air mixture at room temperature via an oxidative mechanism that converts the toxic gas to an innocuous adsorbed substance. These high-surface-area, ultraporous manganese oxide (MnOx) xerogels and aerogels exhibit outstanding filtration performance for multiple, chemically distinct toxic gases, including ammonia, sulfur dioxide and hydrogen sulfide. These MnOx materials use multiple mechanisms for small molecule capture/catalysis including molecular sieving and oxidative decomposition, and function in a wide range of humidity conditions.
机译:具有干凝胶或气凝胶整体或粉末形式的高表面积,高度多孔的氧化锰(MnOx),其包含内表面积> 200 m 2 g - 1 ,其中MnOx凝胶具有包含2-150 nm尺寸的孔的空隙结构,并且其中氧化锰纳米结构在室温下通过氧化机理从有毒气体和空气混合物中去除有毒气体,该氧化机制转化为有毒气体转化为无害吸附物质。这些高表面积超多孔氧化锰(MnOx)气凝胶和气凝胶对多种化学上不同的有毒气体(包括氨,二氧化硫和硫化氢)表现出出色的过滤性能。这些MnOx材料使用多种机制进行小分子捕获/催化,包括分子筛和氧化分解,并在广泛的湿度条件下起作用。

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