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Wellbore Engineering Technologies for Ultra-deep Oil and Gas Exploration:Challenges and Trend
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作者 Zhang Jinshuang Sun Lianzhong Niu Xinming 《China Oil & Gas》 CAS 2017年第1期23-27,共5页
Ultra-deep formations hold abundant oil and gas resources.As the demand for oil and gas increases with economic development,more and more efforts are putting into the exploration and development of oil and gas reservo... Ultra-deep formations hold abundant oil and gas resources.As the demand for oil and gas increases with economic development,more and more efforts are putting into the exploration and development of oil and gas reservoirs in deep formations around the world.In China,the exploration and development of deep oil and gas are pacing up,especially in ultra-deep formations in the Sichuan Basin,Tarim Basin and Ordos Basin.The reservoirs in these basins feature extremely large depth(over 7000 m),super high temperature(150°C-210°C),super high pressure(over 150 MPa),high acid gas content(H_2S and CO_2),strong heterogeneity,and multiple pressure systems,which pose a series of challenges to wellbore engineering technologies including drilling,drilling fluid,cementing,logging,and completion testing.Therefore,it is necessary to delve into core drilling and testing technologies for deep formations. 展开更多
关键词 Ultra-deep formation Drilling and completion technology CHALLENGE Development direction
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Synthesis of methanol and ethanol over CuZnAl slurry catalyst prepared by complete liquid-phase technology 被引量:3
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作者 Wei HUANG Linmei YU +1 位作者 Wenhui LI Zhili MA 《Frontiers of Chemical Science and Engineering》 SCIE EI CSCD 2010年第4期472-475,共4页
A new method,named the complete liquid-phase technology,has been applied to prepare catalysts for methanol synthesis.Its main innovative thought lies in preparing slurry catalysts directly from raw solution.Activity t... A new method,named the complete liquid-phase technology,has been applied to prepare catalysts for methanol synthesis.Its main innovative thought lies in preparing slurry catalysts directly from raw solution.Activity tests indicate that the CuZnAl slurry catalyst prepared by the new method can efficiently catalyze conversion of syngas to ethanol in a slurry reactor,while CO conversion reaches 35.9%and ethanol selectivity is more than 20%,with a total alcohol selectivity of more than 87%.No deactivation was found during the 192 h reaction. 展开更多
关键词 METHANOL SLURRY ETHANOL complete liquidphase technology CuZnAl catalyst
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