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首页> 外文期刊>Open Chemistry >Salix viminalis wood as a new precursor for manufacturing of carbon molecular sieves for effective methane/nitrogen separation
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Salix viminalis wood as a new precursor for manufacturing of carbon molecular sieves for effective methane/nitrogen separation

机译:Salix Viminalis木作为制造碳分子筛的新前体,用于有效甲烷/氮气分离

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Separation of a methane/nitrogen gas mixture was investigated by means of carbon molecular sieves (CMS) obtained from a newly discovered "green" resource: Salix viminalis. This plant grows quickly, yields hard wood and is frequently cultivated for energy purposes (renewable green fuel). Unconventional applications such as charcoal fabrication using this sort of wood are very rare. Carbonization of the wood (1-3 h, 600-700 degrees C) yields carbons with a very narrow pore size distribution (determined by N2 adsorption at -196 degrees C) resembling a perfect CMS. The diameter of most pores (ca. 0.8 nm) is comparable to the size of simple molecules, thus enabling separation. The sieving effect was proven in an industrially important process of CH4/N-2 separation at 30-70 degrees C. Despite relatively minor differences of the size of the molecules, the experiment demonstrated that separation factors are placed in the range 3.64-10.20. Additional experiments involving krypton proved that the separation mechanism is based on a geometric factor i.e. the known size and shape of the molecules under separation
机译:通过从新发现的“绿色”资源中获得的碳分子筛(CMS)研究了甲烷/氮气混合物的分离:Salix Viminalis。该植物迅速增长,产生硬木头,经常培养以用于能量目的(可再生绿色燃料)。使用这种木材的木炭制造等非常规应用非常罕见。木材的碳化(1-3小时,600-700℃)产生具有非常窄的孔径分布(通过-196℃的N 2吸附测定)的碳碳,类似于完美的CMS。大多数孔(约0.8nm)的直径与简单分子的尺寸相当,从而能够分离。在30-70℃的CH4 / N-2分离的工业上重要过程中经过证明的筛分效果。尽管分子大小相对较小的差异,但实验表明分离因子置于3.64-10.20的范围内。涉及Krypton的额外实验证明了分离机制基于几何因子I.E.分离下分子的已知尺寸和形状

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