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重大研究成果评述:火星曾有过生命的新发现

发布时间:2018-12-08 17:45
【摘要】:为进一步促进学术交流,提升学会作为学术发布和交流平台的功能,加速分享相关科研成果并激励广大青年地学工作者投身科研创新事业,从本期起,本刊将专门开辟"亮点评述"栏目,推介在近期(2~3月左右)中国主要高校院所相关专业最新科研成果,特别是在国际专业期刊上发表的论文。我们并将适时择其中重要成果请相关专家点评。作为首发栏目,我们特别高兴能在本期转载,并向广大读者推荐本会名誉理事长和本刊主编欧阳自远先生关于火星陨石研究最新亮点的述评:火星可能存在过生命!同时也热烈欢迎广大同行和会员积极提供相关信息。
[Abstract]:In order to further promote academic exchanges, enhance the function of the Institute as a platform for academic publication and exchange, accelerate the sharing of related scientific research results and encourage young geoscientists to devote themselves to the cause of scientific research and innovation, starting from this issue, The journal will set up a special "bright spot review" column to introduce the latest scientific research achievements of major colleges and universities in China in the near future (from February to March), especially the papers published in international professional journals. We will also select important results in time to request relevant experts to comment. As the first column, we are particularly pleased to be reproduced in this issue, and recommend to the readers of the Honorary Chairman of the Association and our editor Ouyang Ziyuan on the latest highlights of Mars meteorite research review: Mars may exist life! At the same time also warmly welcome the majority of peers and members to actively provide relevant information.
【分类号】:P185.3

【共引文献】

相关期刊论文 前1条

1 杨晶;林杨挺;欧阳自远;;地外有机化合物[J];地学前缘;2014年06期

相关会议论文 前2条

1 Yangting LIN;Ahmed EL GORESY;Sen HU;Jianchao ZHANG;Philippe GILLET;Yuchen XU;Jialong HAO;Masaaki MIYAHARA;Ziyuan OUYANG;Eiji OHTANI;Lin XU;Wei YANG;Lu FENG;Xuchao ZHAO;Jing YANG;Shin OZAWA;;Nano SIMS analysis of organic carbon from the Tissint Martian meteorite:Evidence for the past existence of subsurface organic-bearing fluids on Mars[A];中国科学院地质与地球物理研究所2014年度(第14届)学术年会论文汇编——地球深部结构与过程研究室[C];2015年

2 S.Hu;Y.Lin;J.Zhang;J.Hao;L.Feng;L.Xu;W.Yang;J.Yang;;Nano SIMS analyses of apatite and melt inclusions in the GRV 020090 Martian meteorite:Hydrogen isotope evidence for recent past underground hydrothermal activity on Mars[A];中国科学院地质与地球物理研究所2014年度(第14届)学术年会论文汇编——地球深部结构与过程研究室[C];2015年



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