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1.西北大学地质学系/西北大学-香港大学地球与行星科学联合中心/大陆演化与早期生命全国重点实验室,陕西 西安 710069
2.香港大学地球科学系,香港 999077
[ "刘潜,女,1988年生,西北大学地质学系教授,国家级青年人才项目入选者,长期从事岩石学、大地构造与超大陆古地理重建研究。共发表SCI论文60余篇,其中第一/通讯作者SCI论文18篇。先后获得香港政府奖学金、香港大学杰出研究生荣誉称号、日本学术振兴会博士后奖学金。主持国家级青年人才项目1项、科技部重点研发项目课题1项、国家自然科学基金面上项目1项、省级人才项目1项。担任SCI期刊Lithosphere副主编、《西北大学学报(自然科学版)》青年编委。" ]
收稿日期:2025-03-15,
纸质出版日期:2025-06-25
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刘潜, 赵国春, 韩以贵, 等. 中亚造山带中元古代微陆块构造归属及其对中元古代地球系统演化的启示[J]. 西北大学学报(自然科学版), 2025,55(3):489-500.
LIU Qian, ZHAO Guochun, HAN Yigui, et al. Tectonic affinity of Mesoproterozoic microcontinents in the Central Asian orogenic belt and implications for the evolution of the Mesoproterozoic Earth system[J]. Journal of northwest university (natural science edition), 2025, 55(3): 489-500.
刘潜, 赵国春, 韩以贵, 等. 中亚造山带中元古代微陆块构造归属及其对中元古代地球系统演化的启示[J]. 西北大学学报(自然科学版), 2025,55(3):489-500. DOI: 10.16152/j.cnki.xdxbzr.2025-03-002.
LIU Qian, ZHAO Guochun, HAN Yigui, et al. Tectonic affinity of Mesoproterozoic microcontinents in the Central Asian orogenic belt and implications for the evolution of the Mesoproterozoic Earth system[J]. Journal of northwest university (natural science edition), 2025, 55(3): 489-500. DOI: 10.16152/j.cnki.xdxbzr.2025-03-002.
与古元古代和新元古代时期重大的地球表生环境生命系统变革明显不同,中元古代时期(1.6~1.0 Ga)的表生环境相对稳定、生命演化也相对有限,但见证了从Nuna(Columbia)超大陆聚合形成后的外围俯冲增生、伸展裂解并再次拼合形成Rodinia超大陆等一系列深部地质过程变动。中亚造山带南缘广泛分布中元古代微陆块,发育1.56~1.36 Ga的结晶基底和绿片岩相至角闪岩相变质火山沉积岩,其构造归属仍存在很大争议。最新的研究通过基底组成、岩浆活动性质及碎屑锆石U-Pb年龄谱和Hf同位素组成的综合对比,揭示中亚造山带南缘中元古代微陆块与亚马逊克拉通西部具有亲缘性,构成了Nuna超大陆边缘俯冲增生带的一部分。该文进一步综合中元古代时期地球表生环境生命与深部系统各指标,揭示中元古代时期并非地球演化进程中的停滞期,Nuna超大陆边缘持续的俯冲增生很可能是促使中元古代大气呈波动式短期增氧以及真核生命向多细胞演化的关键控制因素。中元古代时期地球深部过程与表生环境生命演化之间的时空耦合关系及其主要机制仍是有待进一步深入研究的重要科学问题。
Contrasting the dramatic changes in the preceding and succeeding eras
the Mesoproterozoic era (1.6~1.0 Ga) witnessed environmental and evolutionary stasis. However
during Mesoproterozoic time
accretionary orogeny was intensely operative in the periphery of the Nuna supercontinent after its amalgamation
followed by the extension and breakup of Nuna
and paved the way to the formation of the Rodinia supercontinent. Several Mesoproterozoic microcontinents have been identified along the southern margin of the Central Asian orogenic belt (CAOB) and consist of 1.56~1.36 Ga crystalline basements and greenschist-to amphibolite-facies metamorphosed volcanic-sedimentary rocks
whose tectonic affinity remains controversial. Based on an integrated comparison of basement composition
nature of magmatic activity
and detrital zircon U-Pb ages and Hf isotopes
a western Amazonian affinity in the Nuna's periphery was established for the Mesoproterozoic microcontinents in the southern CAOB. Reconsidering the multiple proxies of the Earth's surface and deep systems in the Mesoproterozoic
we emphasize the energetic Mesoproterozoic era
during which the intense accretionary orogeny along the Nuna's periphery might have stimulated environmental oxygenation and eukaryotic innovation in the Mesoproterozoic. The spatiotemporal correlations between the deep Earth processes and surficial environmental and biotic evolution
along with their primary mechanism
represent critical scientific issues that warrant further in-depth investigation.
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