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| 1 | 地球系统变化对叠层石衰减影响的研究综述显示文摘关于叠层石衰减的影响因素至今存在争议。现今研究多集中于显生宙后生动物及微观环境的影响,而忽略了地球系统变化的作用。地史中全球变化从区域尺度调控着大气圈、生物圈、水圈,共同影响叠层石生长所必需的一系列环境因素,与全球叠层石衰减的时间和因果关系具有良好的相关性。在不同地质时期,全球变化以不同的事件组合选择性地作用于造叠层石微生物群落发育以及碳酸盐岩沉积速率上,从而主导着叠层石的兴衰。在综述国内外研究进展的基础上,综合分析了不同时期叠层石衰减与全球变化的响应关系,为今后的相关研究提出了重要线索,同时对未来研究应关注的问题及方向提出了建议。 | 房启飞 张虎权 | 2014 | 地球科学进展2014,29,9: | 5 |
| 2 | Nanorocks, volatiles and plate tectonics显示文摘The global geological volatile cycle(H,C,N)plays an important role in the long term self-regulation of the Earth system.However,the complex interaction between its deep,solid Earth components(i.e.crust and mantle),Earth’s fluid envelopes(i.e.atmosphere and hydrosphere)and plate tectonic processes is a subject of ongoing debate.In this study we want to draw attention to how the presence of primary melt(MI)and fluid(FI)inclusions in high-grade metamorphic minerals could help constrain the crustal component of the volatile cycle.To that end,we review the distribution of MI and FI throughout Earth’s history,from ca.3.0 Ga ago up to the present day.We argue that the lower crust might constitute an important,longterm,volatile storage unit,capable to influence the composition of the surface envelopes through the mean of weathering,crustal thickening,partial melting and crustal assimilation during volcanic activity.Combined with thermodynamic modelling,our compilation indicates that periods of well-established plate tectonic regimes at<0.85 Ga and 1.7-2.1 Ga,might be more prone to the reworking of supracrustal lithologies and the storage of volatiles in the lower crust.Such hypothesis has implication beyond the scope of metamorphic petrology as it potentially links geodynamic mechanisms to habitable surface conditions.MI and FI in metamorphic crustal rocks then represent an invaluable archive to assess and quantify the co-joint evolution of plate tectonics and Earth’s external processes. | Gautier Nicoli Silvio Ferrero | 2021 | Geoscience Frontiers2021,12,5: | 0 |
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