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下扬子皖东南地区二叠系页岩储层特性及甲烷吸附能力 被引量:7
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作者 黄保家 黄灏 +2 位作者 金秋月 周刚 赵幸滨 《天然气地球科学》 EI CAS CSCD 北大核心 2015年第8期1516-1524,共9页
为深入研究皖东南地区二叠系页岩储层微观特征及其储气能力,选取2口钻井岩心样品进行负离子抛光—场发射扫描电子显微镜、氮吸附/脱附实验、甲烷吸附能力测定以及相关地球化学分析。结果表明,二叠系富Ⅱ—Ⅲ型有机质泥页岩石英等脆性矿... 为深入研究皖东南地区二叠系页岩储层微观特征及其储气能力,选取2口钻井岩心样品进行负离子抛光—场发射扫描电子显微镜、氮吸附/脱附实验、甲烷吸附能力测定以及相关地球化学分析。结果表明,二叠系富Ⅱ—Ⅲ型有机质泥页岩石英等脆性矿物含量较高,存在晶间孔、粒间孔以及粒内孔、次生溶孔、有机质孔及微裂缝、构造缝等多种储集空间类型。采用He气法所测孔隙度为2.15%-6.10%、渗透率平均值为0.002 57×10^-3μm^2。该套页岩以中孔为主,含少量大孔和微孔,大多数的孔径分布在2-50nm之间。BJH孔容为3.30-11.23mm^3/g,其中,中孔和大孔孔容约占总孔容的80%;BET比表面积介于3.91-20.84m^2/g之间。T-图法计算微孔比表面积介于1.015-4.053m^2/g之间,中孔和微孔是页岩比表面积的主要贡献者。大量纳米级孔隙的发育及具有较大的比表面积,为页岩储层提供了良好的吸附聚气能力,实验模拟地层温压测定页岩甲烷最大吸附量达2.3-3.2m^3/t。说明研究区二叠系页岩具有良好的储集性能及甲烷吸附能力。 展开更多
关键词 皖东南 二叠系页岩 页岩储层特征 孔隙结构 氮吸附/脱附 甲烷吸附能力
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Adsorption Refrigeration Performance of Shaped MIL-101-Water Working Pair 被引量:1
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作者 芮征球 李全国 +3 位作者 崔群 王海燕 陈海军 姚虎卿 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2014年第5期570-575,共6页
A new metal-organic framework of MIL-101 was synthesized by hydrothermal method and the powder prepared was pressed into a desired shape. The effects of molding on specific surface area and pore structure were investi... A new metal-organic framework of MIL-101 was synthesized by hydrothermal method and the powder prepared was pressed into a desired shape. The effects of molding on specific surface area and pore structure were investigated using a nitrogen adsorption method. The water adsorption isotherms were obtained by high vacuum gravimetric method, the desorption temperature of water on shaped MIL-101 was measured by thermo gravimetric analyzer, and the adsorption refrigeration performance of shaped MIL-101-water working pair was studied on the simulation device of adsorption refrigeration cycle system. The results indicate that an apparent hysteresis loop ap-pears in the nitrogen adsorption/desorption isotherms when the forming pressure is 10 MPa. The equilibrium ad-sorption capacity of water is up to 0.95 kg·kg^-1 at the forming pressure of 3 MPa (MIL-101-3). The desorption peak temperature of water on MIL-101-3 is 82℃, which is 7 ℃ lower than that of silica gel, and the desorption temperature is no more than 100 ℃. At the evaporation temperature of 10 ℃, the refrigeration capacity of MIL-101-3-water is 1059 kJ·kg^-1, which is 2.24 times higher than that of silica gel-water working pair. Thus MIL-101-water working pair presents an excellent adsorption refrigeration performance. 展开更多
关键词 adsorption refrigeration MIL-101 FORMING adsorption capacity refrigeration capacity
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