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Activated Bio-Carbons Prepared from the Residue of Supercritical Extraction of Raw Plants and Their Application for Removal of Nitrogen Dioxide and Hydrogen Sulfide from the Gas Phase

机译:由原料植物超临界提取的残留物制备的活性生物碳及其从气相中除去二氧化氮和硫化氢的应用

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摘要

The waste materials left after supercritical extraction of hop cones and marigold flowers were tested as precursors of activated bio-carbons. Adsorbents were produced by means of the physical (also called thermal) activation method using CO2 as the gasifying agent. All the activated bio-carbons were tested for the removal of NO2 and H2S from the gas phase under dry and wet conditions. The effects of the type of precursor and the activation procedure on the porous structure development, the acid-base properties of the surface, as well as the sorption capacities of the materials produced were also checked. The final products were bio-carbons of medium developed surface area with a basic surface nature, characterized by their high effectiveness in removal of gas pollutants of acidic character, especially nitrogen dioxide (sorption capacities in the range from 12.5 to 102.6 mg/g). It was proved that the toxic gas removal efficiency depends considerably on the sorption conditions and the activation procedure. All materials showed greater effectiveness in gas removal when the process of adsorption was carried out in the presence of steam.
机译:在超临界提取后留下的废料和万寿菊花之后的废料被测试为活性生物碳的前体。通过使用CO2作为气化剂的物理(也称为热)活化方法制备吸附剂。测试所有活化的生物碳,以在干燥和湿润条件下从气相中除去NO 2和H 2。还检查了前体类型和活化程序对多孔结构显影的影响,表面的酸碱性能以及所产生的材料的吸附能力。最终产品是中等发育表面区域的生物碳,具有基本的表面性质,其特征在于它们在去除酸性特性的气体污染物的高效力,特别是氮二氧化氮(从12.5至102.6mg / g的吸附能力范围内的吸附能力)。证明有毒气体去除效率显着取决于吸附条件和活化程序。当在蒸汽存在下进行吸附过程时,所有材料都表现出更大的气体去除效果。

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