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Molecular sieving behavior of carbonized wood: selective adsorption of toluene from a gas mixture containing α-pinene

机译:碳化木的分子筛行为:含α-pine烯的混合气体中甲苯的选择性吸附

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摘要

The adsorption properties of wood carbonized at various temperatures were investigated using a mixed gas containing toluene and α-pinene. Hinoki (Chamaecyparis obtusa) samples carbonized at 500°–1100°C were exposed to gas mixtures of toluene and α-pinene at 20°C. The samples carbonized at 500°–700°C only adsorbed toluene, whereas those carbonized at 800°–1100°C adsorbed both toluene and α-pinene. Analysis of the surface structure of the carbonized wood by nitrogen adsorption at liquid nitrogen temperature indicated that the sample carbonized at 700°C had micropores mainly 0.6 nm in diameter and few mesopores, whereas the samples carbonized at 900°C and 1100°C had mesopores and micropores larger than 0.8 nm in diameter. With the sample carbonized at 700°C, the flat-shaped toluene molecules could probably penetrate into the narrower pores, 0.8 nm in diameter, whereas the bulky globular-shaped α-pinene molecules could not. Carbonization at temperatures higher than 900°C probably enlarged the pore size and thereby reduced the selectivity of adsorption. The results revealed that wood carbonized below activation temperature has a unique flat-pore structure that seems to work as a kind of molecular sieving carbon, successfully removing only the harmful volatile organic compound (VOC), toluene, and leaving behind a pleasant aroma of α-pinene in the atmosphere.
机译:使用含有甲苯和α-pine烯的混合气体研究了在各种温度下碳化的木材的吸附性能。在500°–1100°C下碳化的Hinoki(Chamaecyparis obtusa)样品在20°C下暴露于甲苯和α-pine烯的气体混合物中。在500°–700°C碳化的样品仅吸附甲苯,而在800°–1100°C碳化的样品则吸附甲苯和α-pine烯。在液氮温度下通过氮吸附对碳化木的表面结构进行分析表明,在700°C碳化的样品具有直径主要为0.6 nm的微孔,中孔很少,而在900°C和1100°C碳化的样品具有中孔和直径大于0.8 nm的微孔。在700°C下碳化样品后,扁平形的甲苯分子可能会渗透到直径为0.8 nm的较细孔中,而大体积的球形α-pine烯分子则无法渗透。在高于900°C的温度下碳化可能会扩大孔径,从而降低吸附的选择性。结果表明,在活化温度以下碳化的木材具有独特的平孔结构,似乎可以作为一种分子筛碳,成功地去除了有害的挥发性有机化合物(VOC),甲苯,并留下了令人愉悦的α香气。 -pine烯在大气中。

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