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基于“虚实结合”的成岩/成矿过程实验教学探索
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作者 谢宏 蒋玺 +1 位作者 唐波 杜丽娟 《大学教育》 2024年第6期49-51,59,共4页
岩石学、矿床学是地质类专业的核心课程,笔者针对这些课程传统实验教学中存在的真实场景及原理难以再现、教学资源有限、验证性实验过多等问题,基于“虚实结合”实践平台进行成岩/成矿过程实验教学探索,倡导集实操验证与虚拟仿真于一体... 岩石学、矿床学是地质类专业的核心课程,笔者针对这些课程传统实验教学中存在的真实场景及原理难以再现、教学资源有限、验证性实验过多等问题,基于“虚实结合”实践平台进行成岩/成矿过程实验教学探索,倡导集实操验证与虚拟仿真于一体的教学方式,构建了虚拟仿真实验教学平台,设计了实验教学内容及教学过程,实现了“虚”“实”教学方式的有效融合。 展开更多
关键词 “虚实结合” 虚拟仿真 教学方式 成岩/成矿过程 实验教学
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Evidence from pseudomorphous β-quartz phenocryst for decompression of rock-forming and ore-forming processes in Shapinggou porphyry Mo deposit 被引量:2
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作者 HE Jun XU XiaoChun +2 位作者 XIE QiaoQin FAN ZiLiang CHEN TianHu 《Science China Earth Sciences》 SCIE EI CAS CSCD 2016年第5期1014-1024,共11页
The Shapinggou porphyry molybdenum(Mo) deposit, located in Jinzhai County, Anhui Province, China, is the largest in the Qinling-Dabie Mo Metallogenic Belt. The intrusive rocks in the Shapinggou Mo ore district formed ... The Shapinggou porphyry molybdenum(Mo) deposit, located in Jinzhai County, Anhui Province, China, is the largest in the Qinling-Dabie Mo Metallogenic Belt. The intrusive rocks in the Shapinggou Mo ore district formed in the Yanshanian can be divided into two stages based on zircon U-Pb dating and geochemical features. This study focuses on the late stage intrusions(quartz syenite and granite porphyry), which are closely genetically related to molybdenum mineralization. Petrographic observations identified two quartz polymorphs in the quartz syenite and granite porphyry, which were derived from the same magmatic sources and similar evolutionary processes. The quartzes were identified as a xenomorphic β-quartz within quartz syenite, while the quartz phenocrysts within the granite porphyry were pseudomorphous b-quartz, characterized by a hexagonal bipyramid crystallography. The pseudomorphous b-quartz phenocrysts within the granite porphyry were altered from b-quartz through phase transformation. These crystals retained b-quartz pseudomorph. Combined with titanium-inzircon thermometry, quartz phase diagrams, and granitic Q-Ab-Or-H_2O phase diagrams, it is suggested that the quartz syenite and granite porphyry were formed under similar magmatic origins, including similar depths and magmatic crystallization temperatures. However, the β-quartz within quartz syenite indicated that the crystallization pressure was greater than 0.7 GPa, while the original b-quartz within the granite porphyry was formed under pressures between 0.4 and 0.7 GPa. The groundmass of the granite porphyry which formed after the phenocryst indicated a crystallizing pressure below 0.05 GPa. This indicates that the granite porphyry was formed under repetitive and rapid decompression. The decompression was significant as it caused the exsolution of the ore-forming fluids, and boiling and material precipitation during the magmatic-fluid process. The volumetric difference during the phase transformation from b-quartz to β-quartz caused extensive fracturing on the granite porphyry body and the wall rocks. As the main ore-transmitting and ore-depositing structures, these fractures benefit the hydrothermal alteration and stockwork-disseminated mineralization of the porphyry deposit. It is considered that the pseudomorphous β-quartz phenocrysts of the porphyritic body are metallogenic indicators within the porphyry deposits. The pseudomorphous β-quartzes therefore provide evidence for the formation of the porphyry deposit within a decompression tectonic setting. 展开更多
关键词 Porphyry Mo deposit Pseudomorphous β-quartz Decompression mechanism Rock-forming and ore-forming processes Shapinggou Mo deposit
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