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Co-pyrolysis of an aromatic petroleum residue with triphenylsilane

机译:芳香族石油渣与三苯基硅烷的共热解

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摘要

The effect of silicon on the pyrolysis of a petroleum residue has been studied. In this work, controlled co-pyrolysis of an aromatic petroleum residue and triphenylsilane, TPS, as a silicon source, under 1 MPa nitrogen atmosphere and at 440°C is performed. Soaking time was varied between 1.5 and 6 h, and the silicon concentration added to the petroleum residue ranged from 0 to 2 wt. Silicon content in the final solid product.increases with soaking time. The effect of silicon upon the solid yield, insoluble content and mesophase development is appreciable only when the concentration of silicon in the residue is above 0.4 wt. Initially TPS acts as a diluting agent and a mild proton donor, inhibiting reactivity of the radicals formed in the system and molecular growth. As reaction progresses TPS reacts, creating tetrahedral bonds within macromolecules and, as a consequence, after a period, molecular growth is enhanced. However, the planar stacking leading to mesophase formation and growth is inhibited by silicon and consequently the development of mesophase structures is limited to small spheres and fine mosaics. Optically isotropic material is obtained when silicon concentration is above 1 wt.
机译:已经研究了硅对石油渣油热解的影响。在这项工作中,芳香族石油残渣和三苯基硅烷(TPS)作为硅源,在1 MPa氮气气氛和440°C下进行了受控共热解。浸泡时间在1.5至6 h之间变化,添加到石油残渣中的硅浓度范围为0至2重量%。最终固体产品中的硅含量随着浸泡时间的增加而增加。只有当残渣中硅的浓度高于0.4 wt%时,硅对固体收率、不溶物含量和中间相发展的影响才明显。最初,TPS充当稀释剂和温和的质子供体,抑制系统中形成的自由基的反应性和分子生长。随着反应的进行,TPS发生反应,在大分子内产生四面体键,因此,一段时间后,分子生长得到增强。然而,导致中间相形成和生长的平面堆积受到硅的抑制,因此中间相结构的发展仅限于小球体和精细的镶嵌。当硅浓度高于 1 wt% 时,可获得光学各向同性材料。

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