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Pore Structure Analysis to Adsorb NOx Gas based on Porous Materials

机译:基于多孔材料的孔隙结构分析吸附NOx气体

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摘要

We studied the adsorption of nitrogen oxides according to various porous materials room temperature, which can effectively to adsorb the nitrogen oxides. Based on results of measuring NOx concentration, the activated carbon materials have been shown to adsorb NOx well, and they have been shown to more efficiently removing NO2, which is very harmful to the environment. In particular, in the case of the coconut activated carbon, the removal efficiency of NO and NO2 was very excellent, and the removal rate of was 30% for 100 minutes and 19.5% for 840 minutes. Our measurement results confirmed that the activated carbon materials have a very large specific surface area and pore volume. In addition, the coconut activated carbon appears to have a large specific surface area and pore volume to remove NOx over a long period of time. Based on the experimental results, it is expected to be used as a material that efficiently removes nitrogen oxides at room temperature.
机译:研究了不同多孔材料在室温下对氮氧化物的吸附,可以有效地吸附氮氧化物。根据对NOx浓度的测量结果,活性炭材料已被证明能够很好地吸附NOx,并且它们已被证明能够更有效地去除对环境非常有害的NO2。特别是在椰子活性炭的情况下,NO和NO2的去除效率非常优异,100分钟的去除率为30%,840分钟的去除率为19.5%。我们的测量结果证实,活性炭材料具有非常大的比表面积和孔体积。此外,椰子活性炭似乎具有较大的比表面积和孔体积,可在较长时间内去除NOx。根据实验结果,该材料有望在室温下有效去除氮氧化物。

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