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地球宜居性的深部驱动机制 被引量:3
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作者 徐义刚 黄小龙 +6 位作者 王强 王煜 李高军 刘耘 毛河光 倪怀玮 朱茂炎 《科学通报》 EI CAS CSCD 北大核心 2024年第2期169-183,共15页
除与太阳之间的距离和行星的大小有关外,地球之所以宜居的一个重要因素是其拥有动力十足的地球内部.与地球宜居性是地球表生作用结果的传统认识不同,本文认为地球深部驱动着对宜居环境至关重要的外部层圈,并提出地球内外层圈间的联动机... 除与太阳之间的距离和行星的大小有关外,地球之所以宜居的一个重要因素是其拥有动力十足的地球内部.与地球宜居性是地球表生作用结果的传统认识不同,本文认为地球深部驱动着对宜居环境至关重要的外部层圈,并提出地球内外层圈间的联动机制是地球系统科学研究的突破口.在调研和评述的基础上,本文建议未来研究需要关注早期地球、地磁场、深地挥发分循环、超级火山、深地新化学反应和地质空调器等方向,围绕地球宜居性的深部驱动机制这一主题,开展地球固体层圈与流体层圈的整合研究,助力我国地球科学研究从单一学科研究向多学科交叉融合研究的转变,推动我国固体地球科学从跟踪前沿向开拓前沿的跨越式发展. 展开更多
关键词 地球宜居性 深部引擎 深地过程 层圈相互作用 地球系统科学
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Introduction to advances in the study of supercritical geofluids 被引量:2
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作者 huaiwei ni 《Science China Earth Sciences》 SCIE EI CAS CSCD 2023年第10期2391-2394,共4页
The role of supercritical geofluids has received increasing attention in frontier research of geological processes in the deep Earth(Ni,2020).Supercritical geofluids(hereafter referred to as supercritical fluids)are a... The role of supercritical geofluids has received increasing attention in frontier research of geological processes in the deep Earth(Ni,2020).Supercritical geofluids(hereafter referred to as supercritical fluids)are a special type of fluids permitted by complete miscibility between rock components(e.g.,silicates,carbonates,and sulfates)and water under high conditions of temperature and pressure. 展开更多
关键词 FLUIDS hereafter FRONTIER
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Dehydration at subduction zones and the geochemistry of slab fluids 被引量:5
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作者 Wancai Li huaiwei ni 《Science China Earth Sciences》 SCIE EI CSCD 2020年第12期1925-1937,共13页
Subducting oceanic slabs undergo metamorphic dehydration with the increase of temperature and pressure during subduction.Dehydration is an essential step for element recycling,and slab fluids are critical agents for m... Subducting oceanic slabs undergo metamorphic dehydration with the increase of temperature and pressure during subduction.Dehydration is an essential step for element recycling,and slab fluids are critical agents for mediating slab-mantle interaction.Dehydration is mainly controlled by the thermal structure of subduction zones and the stability of hydrous minerals.At fore-arc depths,slab dehydration produces aqueous fluid with dissolved salts such as NaCl.As subduction proceeds deeper,the content of silicate components increases.At sub-arc and post-arc depths,a hydrous silicate melt is likely to form,or a supercritical fluid could arise from complete miscibility between silicates and H_(2)O.The partitioning of elements between slab fluid and the residual solid rock is controlled by the type of fluid,and generally it is the supercritical fluid that is the most capable of mobilizing trace elements,being an effective carrier even for high field strength elements.Understanding the chemistry of slab fluids relies on sophisticated integration of experiments,theoretical computation and investigation of natural rock samples.This contribution focuses on the content and speciation of key volatiles,including carbon,nitrogen and sulfur,in slab fluids as well as important fluid properties such as oxygen fugacity and acidity.The properties of slab fluids show complicated variation under the control of mineral assemblages and T-P conditions.Slab fluids at great depths of subductions have been inferred to be modestly alkaline and not necessarily very oxidizing as often assumed.Further progress in the research of slab dehydration and the chemistry and properties of slab fluids demands urgently the development of innovative experimental and computational technology including in situ analytical methods at high T-P. 展开更多
关键词 Subduction zone DEHYDRATION Slab fluids VOLATILES Oxygen fugacity ACIDITY
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