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Experimental investigation on CO_2-light crude oil interfacial and swelling behavior 被引量:2
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作者 Mostafa Lashkarbolooki Shahab Ayatollahi 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2018年第2期373-379,共7页
A systematic series of experiments are designed and performed including interfacial tension(IFT) measurements concomitant with Bond(BN,the ratio of gravity forces to capillary forces) and swelling/extraction measureme... A systematic series of experiments are designed and performed including interfacial tension(IFT) measurements concomitant with Bond(BN,the ratio of gravity forces to capillary forces) and swelling/extraction measurements.Dynamic IFT, BN and swelling/extraction are measured as a function of pressure at temperatures of 30,50 and 80 ℃.In addition, in the light of measured IFT the minimum miscibility pressure(MMP) of CO_2 and light crude oil is determined based on a method called vanishing interfacial tension(VIT). The obtained results interestingly revealed that equilibrium IFT decreases linearly with pressure in two distinct pressure intervals while equilibrium BN shows an increasing trend as a function of pressure for all of the studied cases while no obvious trend is observed for swelling of crude oil and extraction of light-components regarding time, temperature and pressure. 展开更多
关键词 CO2 胀大 原油 试验 界面 行为 IFT 可混和性
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THERMAL PROPERTY, MISCIBILITY AND CRYSTALLIZATION BEHAVIOR OF POLY(3-HYDROXYBUTYRATE-co-3-YDROXYHEXANOATE) AND POLY(BUTYLENE SUCCINATE-ADIPATE) (PHBHHX/PBSA) BLENDS
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作者 WANG Shufang GUO Tianying +3 位作者 TAO Jian ZHENG Chenggang ZHANG Banghua SONG Cunjiang 《Chinese Journal of Reactive Polymers》 2005年第1期1-7,共7页
Blends of poly(3-hydroxybutyrate-co-3-hydroxyhexanoate) (PHBHHx) and poly(butylene succinate-adipate) (PBSA), both biodegradable semicrystalline polyesters, were prepared with the ratio of PHBHHx/PBSA ranging from 80/... Blends of poly(3-hydroxybutyrate-co-3-hydroxyhexanoate) (PHBHHx) and poly(butylene succinate-adipate) (PBSA), both biodegradable semicrystalline polyesters, were prepared with the ratio of PHBHHx/PBSA ranging from 80/20 to 20/80 by melt mixing method. Differential scanning calorimetry (DSC), thermogravimetry analysis (TGA), dynamic mechanical thermal analysis (DMA), polarizing optical microscopy (POM) and wide angle X-ray diffractometer (WAXD) were used to study the miscibility and crystallization behavior of PHBHHx/PBSA blends. Experimental results indicate that PHBHHx is immiscible with PBSA as shown by the almost unchanged glass transition temperature and the biphasic melt. 展开更多
关键词 结晶行为 聚(3-羟基丁酸基-共-3-羟基己酯)聚(丁烯琥珀酸酯-己二酸) 可混和性
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Electrochemical solid-state amorphization in the immiscible Cu-Li system 被引量:3
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作者 Muhua Sun Jiake Wei +4 位作者 Zhi Xu Qianming Huang Yu Zhao Wenlong Wang Xuedong Bai 《Science Bulletin》 SCIE EI CSCD 2018年第18期1208-1214,共7页
As a typical immiscible binary system, copper (Cu) and lithium (Li) show no alloying and chemical intermixing under normal circumstances. Here we show that, when decreasing Cu nanoparticle sizes into ultrasmall range,... As a typical immiscible binary system, copper (Cu) and lithium (Li) show no alloying and chemical intermixing under normal circumstances. Here we show that, when decreasing Cu nanoparticle sizes into ultrasmall range, the nanoscale size effect can play a subtle yet critical role in mediating the chemical activity of Cu and therefore its miscibility with Li, such that the electrochemical alloying and solidstate amorphization will occur in such an immiscible system. This unusual observation was accomplished by performing in-situ studies of the electrochemical lithiation processes of individual CuO nanowires inside a transmission electron microscopy (TEM). Upon lithiation, CuO nanowires are first electrochemically reduced to form discrete ultrasmall Cu nanocrystals that, unexpectedly, can in turn undergo further electrochemical lithiation to form amorphous Cu Lixnanoalloys. Real-time TEM imaging unveils that there is a critical grain size (ca. 6 nm), below which the nanocrystalline Cu particles can be continuously lithiated and amorphized. The possibility that the observed solid-state amorphization of Cu-Li might be induced by electron beam irradiation effect can be explicitly ruled out; on the contrary, it was found that electron beam irradiation will lead to the dealloying of as-formed amorphous Cu Lixnanoalloys. 展开更多
关键词 电气化学 混合 系统 固态 电子显微镜 CUO 可混和性 非结晶
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