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敖古拉断裂对萨、葡、高油层油的侧向运移作用 被引量:3
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作者 于媛 《大庆石油地质与开发》 CAS CSCD 北大核心 2021年第1期47-54,共8页
为了研究松辽盆地西部敖古拉断裂附近萨、葡、高油层油分布规律,在敖古拉断裂形成演化特征研究的基础上,通过分析敖古拉断裂发育及油势能分布特征,总结敖古拉断裂与其附近萨、葡、高油层油之间关系,研究了敖古拉断裂对萨、葡、高油层油... 为了研究松辽盆地西部敖古拉断裂附近萨、葡、高油层油分布规律,在敖古拉断裂形成演化特征研究的基础上,通过分析敖古拉断裂发育及油势能分布特征,总结敖古拉断裂与其附近萨、葡、高油层油之间关系,研究了敖古拉断裂对萨、葡、高油层油侧向运移的作用。结果表明:敖古拉断裂北部对萨、葡、高油层油侧向运移的侧接作用,使油向西部斜坡区侧向运移,而中部和南部对油侧向运移起阻挡作用,使油在敖古拉断裂附近聚集分布;敖古拉断裂南部对高台子油层油侧向运移不起向上变径作用,油只在高台子油层中聚集分布,而中部和北部对高台子油层油侧向运移起向上变径作用,使油在高台子油层和葡萄花油层中聚集分布;敖古拉断裂对葡萄花油层油侧向运移起向上变径作用,造成萨尔图油层油比葡萄花油层油富集;敖古拉断裂对葡萄花油层和高台子油层油侧向运移起向北变径运移作用,造成葡萄花油层和高台子油层油在敖古拉断裂北部比南部更富集。 展开更多
关键词 敖古拉断裂 萨、葡、高油层 向运移 侧接作用 变径作用
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Significant enhancement of crystallization kinetics of polylactide in its immiscible blends through an interfacial effect from comb-like grafted side chains
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作者 Yin Chen Yaqiong Zhang +3 位作者 Feng Jiang JunyangWang Zhaohua Xu Zhigang Wang 《Science China Chemistry》 SCIE EI CAS CSCD 2016年第5期609-618,共10页
A significant enhancement in isothermal crystallization kinetics of biodegradable polylactide(PLA) in its immiscible blends can be accomplished through blending it with a comb-like copolymer. PLA was blended with poly... A significant enhancement in isothermal crystallization kinetics of biodegradable polylactide(PLA) in its immiscible blends can be accomplished through blending it with a comb-like copolymer. PLA was blended with poly(ethylene glycol) methyl ether acrylate(PEGA) and poly[poly(ethylene glycol) methyl ether acrylate](PPEGA, a comb-like copolymer), respectively. The results measured from phase contrast optical microscopy(PCOM) and differential scanning calorimetry(DSC) indicate that PLA and PEGA components are miscible, whereas PLA and PPEGA components are immiscible. The study of crystallization kinetics for PLA/PEGA and PLA/PPEGA blends by means of polarized optical microscopy(POM) and DSC indicates that both PEGA and PPEGA significantly increase the PLA spherulitic growth rates, G, although PLA/PPEGA blends are immiscible and the glass transition temperatures of PLA only have slight decreases. PPEGA component enhances nucleation for PLA crystallization as compared with PEGA component owing to the heterogeneous nucleation effect of PPEGA at the low composition of 20 wt%, while PLA crystallization-induced phase separation for PLA/PEGA blend might cause further nucleation at the high composition of 50 wt%. DSC measurement further demonstrates that isothermal crystallization kinetics can be relatively more enhanced for PLA/PPEGA blends than for PLA/PEGA blends. The "abnormal" enhancement in G for PLA in its immiscible blends can be explained by local interfacial interactions through the densely grafted PEGA side chains in the comb-like PPEGA, even though the whole blend system(PLA/PPEGA blends) represents an immiscible one. 展开更多
关键词 biodegradable polymer SPHERULITE growth rate phase separation NUCLEATION
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