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    题名 作者 年代 出处 被引量
1Detection of water in petroleum inclusions and its implications显示文摘FTIR spectra of inclusions sampled from fault-zone reservoirs of the northwestern Junggar Basin show that water, with different abundances, does exist in petroleum inclusions. It is thus implied that petroleum inclusions can seldom form without water. Different inclusions hosted in one single grain, and formed in one oil charging phase, have a largely varied ratio of water to oil and slightly changed CH3/CH2 ratio. This likely provides evidence for fault-related episodic migration and accumulation of hydrocarbons.CAO Jian YAO Suping HU Wenxuan ZHANG Yijie WANG Xulong ZHANG Yueqian TANG Yong 2006Chinese Science Bulletin2006,51,12:9
2Au plasmon enhanced high performance β-Ga_2O_3 solar-blind photo-detector显示文摘Surface plasmon polariton(SPP) is electro-magnetic wave coupled to free electron oscillations near the surface of metal, and has been used to improve the photoelectric properties in many optoelectronic devices. In the present study, the Au nanoparticles(NPs)/β-Ga_2O_3 composite thin film was fabricated through depositing Au ultra-thin film on the β-Ga_2O_3 thin film followed by post-thermal treatment. Compared to bare β-Ga_2O_3 thin film, a significant absorption around 510 nm, which is attributed to SPP of Au NPs, was observed in the UV–vis spectrum of Au NPs/β-Ga_2O_3 composite thin film. The results showed that the photoresponse of Au NPs/Ga_2O_3 photodetector illuminated under 254 nm +532 nm light was much higher than that illuminated under 254 nm light, indicating an enhancement of photoelectric property for the solar-blind photodetector based on β-Ga_2O_3 thin film.Yuehua An Xulong Chu Yuanqi Huang Yusong Zhi Daoyou Guo Peigang Li Zhenping Wu Weihua Tang 2016Progress in Natural Science:Materials International2016,26,1:5
3Petroleum migration and mixing in the northwestern Junggar Basin (NW China): constraints from oil-bearing fluid inclusion analyses显示文摘Jian Cao Suping Yao Zhijun Jin Wenxuan Hu Yijie Zhang Xulong Wang Yueqian Zhang Yong Tang 2006Organic Geochemistry2006,,:1
4Improved Understanding of Petroleum Migration History in the Hongche Fault Zone显示文摘Jian Cao Zhijun Jin Wenxuan Hu Yijie Zhang Suping Yao Xulong Wang Yucqian Zhang Yong Tang 2010Northwestern Junggar Basin (northwest China): Constrained by vein-calcite fluid inclusions and trace elements Marine and Petroleum Geology2010,27,:1
5The Permian hybrid petroleum system in the northwest margin of the Junggar Basin, northwest China显示文摘Jian Cao Yijie Zhang Wenxuan Hu Suping Yao Xulong Wang Yueqian Zhang Yong Tang 2005Marine and Petroleum Geology2005,,3:1
6The specific surface area of methane hydrate formed in different conditions and manners显示文摘The specific surface area of methane hydrates, formed both in the presence and absence of sodium dodecyl sulfate (SDS) and processed in different manners (stirring, compacting, holding the hydrates at the formation conditions for different periods of time, cooling the hydrates for different periods of time before depressurizing them), was measured under atmospheric pressure and temperatures below ice point. It was found that the specific surface area of hydrate increased with the decreasing temperature. The methane hydrate in the presence of SDS was shown to be of bigger specific surface areas than pure methane hydrates. The experimental results further demonstrated that the manners of forming and processing hydrates affected the specific surface area of hydrate samples. Stirring or compacting made the hydrate become finer and led to a bigger specific surface area.WANG XiuLin SUN ChangYu CHEN GuangJin YANG LanYing MA QingLan CHEN Jun TANG XuLong LIU Peng 2009Science China Chemistry2009,52,3:0
7Dissociation behavior of (CH_4+C_2H_4) hydrate in the presence of sodium dodecyl sulfate显示文摘Separation of a mixture of CH4+C2H4 gas by forming hydrate in ethylene production has become of interest,and the dissociation behavior of(CH4+C2H4) hydrate is of great importance for this process. The hydrate formation rate could be increased by adding a small amount of sodium dodecyl sulfate(SDS) into water. In this work,the kinetic data of CH4(18.5 mol%) +C2H4(81.5 mol%) hydrate decomposition in the presence of 1000 mg·L-1 SDS at different temperatures and pressures were measured with the depressurizing method using a sapphire cell apparatus. The experimental results show that the dissociation rate of(CH4+C2H4) mixed gas hydrate was large at high temperature and low pressure,and temperature had great influence on the dissociation rate at high pressure. A kinetic model for hydrate dissociation was proposed and the calculated results from the kinetic model were in good agreement with the experimental data. The activation energy for dissociation of the(CH4+C2H4) mixed gas hydrate was determined to be 43.9 kJ·mol-1,which is lower than that of methane(81.0 kJ·mol-1) and ethane(104.0 kJ·mol-1) hydrate in water(Clarke and Bishnoi,2004) . As the similar molecular dimensions between ethane and ethylene,the close activation energy need to be provided for ethylene hydrate dissociation. The obtained activation energy of the(CH4+C2H4) mixed gas hydrate dissociation indicates that the dissociation of the(CH4+C2H4) mixed gas hydrate is easier than that of pure CH4 or C2H4 gas hydrate.Peng Baozi Sun Changyu Chen Guangjin Tang Xulong Liu Peng Chen Jun Zhang Yanqin 2010Petroleum Science2010,7,1:0
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