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华北克拉通东南缘新元古代凤台组冰期沉积序列及演化 被引量:7
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作者 岳亮 刘自亮 +3 位作者 veerle vandeginste 马永生 陈洪德 张成见 《地质论评》 CAS CSCD 北大核心 2020年第2期307-323,共17页
新元古代冰期事件作为一个显著的沉积记录,广泛留存在各个古克拉通。新元古代凤台组肉红色冰碛杂岩仅发育在华北克拉通东南缘,以单一的碳酸盐成分为主要鉴定特征。本文通过细致研究,认为华北克拉通东南缘在新元古代中晚期为陡坡镶边碳... 新元古代冰期事件作为一个显著的沉积记录,广泛留存在各个古克拉通。新元古代凤台组肉红色冰碛杂岩仅发育在华北克拉通东南缘,以单一的碳酸盐成分为主要鉴定特征。本文通过细致研究,认为华北克拉通东南缘在新元古代中晚期为陡坡镶边碳酸盐台地环境,受到海洋型冰川作用,形成了凤台组为代表的大陆边缘型冰川沉积地层。冰川运动仅局限于大陆边缘而未引入腹地陆源碎屑,导致凤台组冰碛杂岩中的基质和角砾基本来源于下伏碳酸盐岩地层,并具有冰碛沉积和重力流沉积特征。结合前人的研究资料和成果,凤台组的发育时限为埃迪卡拉纪,可对比关联华北克拉通南缘罗圈组和西缘正目观组,从而在华北克拉通周缘形成了显著的埃迪卡拉纪冰川沉积。另外,凤台组包含多套冰期-间冰期的沉积地层,应指示着次一级的冷暖气候周期,可能记录着埃迪卡拉纪冰期的完整沉积记录。厘清凤台组的沉积序列及演化过程,有利于研究碳酸盐台地在冰期-间冰期的沉积历史,继而完善不同古地理背景下的冰期沉积类型,并补充低纬度地区的冰川作用案例。 展开更多
关键词 凤台组 新元古代 冰碛杂岩 重力流 碳酸盐台地 沉积序列
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Fluid-rock interaction experiments with andesite at 100℃ for potential carbon storage in geothermal reservoirs
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作者 Grace E.Belshaw Elisabeth Steer +4 位作者 Yukun Ji Herwin Azis Benyamin Sapiie Bagus Muljadi veerle vandeginste 《Deep Underground Science and Engineering》 2024年第3期369-382,共14页
Geothermal energy extraction often results in the release of naturally occurring carbon dioxide(CO_(2))as a byproduct.Research on carbon storage using volcanic rock types other than basalt under both acidic and elevat... Geothermal energy extraction often results in the release of naturally occurring carbon dioxide(CO_(2))as a byproduct.Research on carbon storage using volcanic rock types other than basalt under both acidic and elevated temperature conditions has been limited so far.Our study uses batch reactor experiments at 100℃ to investigate the dissolution of andesite rock samples obtained from an active geothermal reservoir in Sumatra(Indonesia).The samples are subjected to reactions with neutral-pH fluids and acidic fluids,mimicking the geochemical responses upon reinjection of geothermal fluids,either without or with dissolved acidic gases,respectively.Chemical elemental analysis reveals the release of Ca^(2+)ions into the fluids through the dissolution of feldspar.The overall dissolution rate of the rock samples is 2.4×10^(–11)to 4.2×10^(–11)mol/(m^(2)·s),based on the Si release during the initial 7 h of the experiment.The dissolution rates are about two orders of magnitude lower than those reported for basaltic rocks under similar reaction conditions.This study offers valuable insights into the potential utilization of andesite reservoirs for effective CO_(2) storage via mineralization. 展开更多
关键词 ANDESITE carbon sequestration geothermal reservoirs plagioclase dissolution
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Mineralogy,microstructures and geomechanics of rock salt for underground gas storage 被引量:2
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作者 veerle vandeginste Yukun Ji +1 位作者 Frank Buysschaert George Anoyatis 《Deep Underground Science and Engineering》 2023年第2期129-147,共19页
Rock salt has excellent properties for its use as underground leak‐proof containers for the storage of renewable energy.Salt solution mining has long been used for salt mining,and can now be employed in the construct... Rock salt has excellent properties for its use as underground leak‐proof containers for the storage of renewable energy.Salt solution mining has long been used for salt mining,and can now be employed in the construction of underground salt caverns for the storage of hydrogen gas.This paper presents a wide range of methods to study the mineralogy,geochemistry,microstructure and geomechanical characteristics of rock salt,which are important in the engineering of safe underground storage rock salt caverns.The mineralogical composition of rock salt varies and is linked to its depositional environment and diagenetic alterations.The microstructure in rock salt is related to cataclastic deformation,diffusive mass transfer and intracrystalline plastic deformation,which can then be associated with the macrostructural geomechanical behavior.Compared to other types of rock,rock salt exhibits creep at lower temperatures.This behavior can be divided into three phases based on the changes in strain with time.However,at very low effective confining pressure and high deviatoric stress,rock salt can exhibit dilatant behavior,where brittle deformation could compromise the safety of underground gas storage in rock salt caverns.The proposed review presents the impact of purity,geochemistry and water content of rock salt on its geomechanical behavior,and thus,on the safety of the caverns. 展开更多
关键词 CREEP hydrogen IMPURITIES rock salt salt solution mining underground gas storage
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