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The Role of Charcoal Ash Content in the Performance of Air Purification Filters

机译:木炭灰含量在空气净化过滤器性能中的作用

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A nutshell-based activated carbon was treated with hydrochloric acid to partially de-ash it. The de-ashed sample was then treated with bromine water and subsequently hydrogenated. The base sample was also treated with bromine water and then hydrogenated. The surface areas and pore volumes available to water vapour were unchanged by these treatments, although the polar surface area was considerably reduced in each case. The sample with the lowest surface polarity had the worst performance (shortest penetration time) when pre-humidified at 80% RH and tested with hexane. Examination of the humidity leaving the bed during the adsorption of hexane vapour suggested that the rate-determining step was the surface transport of displaced water and that removing the ash content hindered this transport considerably. Bromination followed by hydrogenation. although reducing the polarity, did not remove the ash content and may even have improved its ability to transport displaced water.
机译:坚果壳型活性炭用盐酸处理,可以部分去灰。然后将脱灰的样品用溴水处理,然后氢化。基础样品也用溴水处理,然后氢化。通过这些处理,水蒸气可利用的表面积和孔体积没有改变,尽管在每种情况下极性表面积均显着减小。当在80%RH下预湿并用己烷测试时,具有最低表面极性的样品具有最差的性能(最短的穿透时间)。检查己烷蒸气吸附过程中离开床层的湿度表明,决定速率的步骤是置换水的表面迁移,除去灰分会大大阻碍这种迁移。溴化然后氢化。尽管降低了极性,但并未去除灰分,甚至可能提高了灰分输送水的能力。

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