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东太平洋远洋粘土中玄武质玻璃粒球的成分和成因
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作者 张留琴 《海洋地质译丛》 1989年第3期12-19,共8页
东太平洋 DSDP 站位32的早中新世玄武质玻璃球粒成分各异,现已对早期地质工作者所研究的玄武质玻璃球粒作了新分析和解释。这些球粒是钛铁质玄武岩。高度演化的深海玄武岩和一些洋岛上的喷发岩在成分上与其相似。球粒多半是在多次独立... 东太平洋 DSDP 站位32的早中新世玄武质玻璃球粒成分各异,现已对早期地质工作者所研究的玄武质玻璃球粒作了新分析和解释。这些球粒是钛铁质玄武岩。高度演化的深海玄武岩和一些洋岛上的喷发岩在成分上与其相似。球粒多半是在多次独立喷发期中熔岩强烈喷涌时形成的。这些喷发事件导致了许多截然不同成分而有关联的岩浆。例如它们具有较高的 SiO_2和 FeO 含量。其年龄与哥伦比亚河某些高原玄武岩喷发年龄相重迭。但是,球粒在成分上与大多数后者的玄武岩不同。虽然球粒约为15百万年,但其蚀变极小。与深海铁质玄武岩相比氯和硫的低含量是跟地表喷发停息前的脱气有关,从而否定了球粒是由海底熔老喷涌产生的观点。因为仅熔岩喷涌难以说明甚至距最近的、可能的海山源区也有约100千米的距离。大型岩浆蒸气喷发柱包括初始火山爆发后旋即产生的熔岩喷涌必颁达到至少15千米。换言之,令人难以置信的是球粒由来之于先期海山的浊流沉积。 展开更多
关键词 粘土 玄武岩 玻璃粒球 成分 海洋
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Surface microstructures of lunar soil returned by Chang’e-5 mission reveal an intermediate stage in space weathering process 被引量:1
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作者 Jian-Gang Guo Tianping Ying +8 位作者 Hanbin Gao Xu Chen Yanpeng Song Ting Lin Qinghua Zhang Qiang Zheng Chunlai Li Yigang Xu Xiaolong Chen 《Science Bulletin》 SCIE EI CAS CSCD 2022年第16期1696-1701,M0004,共7页
The lunar soils evolution over time is mainly caused by space weathering that includes the impacts of varying-sized meteoroids and charged particles implantation of solar/cosmic winds as well.It has long been establis... The lunar soils evolution over time is mainly caused by space weathering that includes the impacts of varying-sized meteoroids and charged particles implantation of solar/cosmic winds as well.It has long been established that space weathering leads to the formation of outmost amorphous layers(50–200 nm in thickness)embedded nanophase iron(npFe^(0))around the mineral fragments,albeit the origin of the npFe^(0) remains controversial.The Chang’e-5(CE-5)mission returned samples feature the youngest mare basalt and the highest latitude sampling site,providing an opportunity to seek the critical clues for understanding the evolution of soils under space weathering.Here,we report the surface microstructures of the major minerals including olivine,pyroxene,anorthite,and glassy beads in the lunar soil of CE-5.Unlike the previous observations,only olivine in all crystals is surrounded by a thinner outmost amorphous SiO_(2) layer(∼10 nm thick)and embedded wüstite nanoparticles FeO(np-FeO,3–12 nm in size)instead of npFe^(0).No foreign volatile elements deposition layer and solar flare tracks can be found on the surface or inside the olivine and other minerals.This unique rim structure has not been reported for any other lunar,terrestrial,Martian,or meteorite samples so far.The observation of wüstite FeO and the microstructures support the existence of an intermediate stage in space weathering for lunar minerals by thermal decomposition. 展开更多
关键词 Lunar soil Wüstite FeO Nanoparticle Nanophase Fe Amorphous rim
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