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高起点基础研究助力我国橡胶行业快速做大做强--访怡维怡橡胶研究院院长王梦蛟博士
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作者 本刊记者 王梦蛟 《橡塑技术与装备》 CAS 2018年第15期1-4,共4页
我国橡胶轮胎行业经过二三十年的高速发展,在用胶量、轮胎产量等很多方面已经成为世界第一,但是在高端技术及基础技术研究方面仍然相对落后,存在着大而不强的现象,一遇贸易摩擦便会受到极大的冲击。在这种情况下,国家橡胶与轮胎工程技... 我国橡胶轮胎行业经过二三十年的高速发展,在用胶量、轮胎产量等很多方面已经成为世界第一,但是在高端技术及基础技术研究方面仍然相对落后,存在着大而不强的现象,一遇贸易摩擦便会受到极大的冲击。在这种情况下,国家橡胶与轮胎工程技术研究中心应运而生,而怡维怡橡胶研究院作为国橡中心的直属研发机构,一直专注于橡胶基础研究,致力于橡胶新材料的研发与创新。经过不懈努力,怡维怡橡胶研究院也取得了相当丰硕的成果,其中"轮胎用合成橡胶连续液相混炼新技术"在行业内被称为"液体黄金",获得了广泛关注。本刊为此专门采访了怡维怡橡胶研究院院长王梦蛟博士,请他为广大读者介绍"液体黄金"和怡维怡橡胶研究院的相关情况,以飨读者。 展开更多
关键词 轮胎 基础 “液体黄金”
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Gold and tin of fluid-magmatic systems:causes of combination-separation of concentration elements
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作者 I.I. Fatyanov V.G. Khomich 《Global Geology》 2009年第3期134-144,共11页
The aim of the investigation is to reveal possible causes of isolation and co-occurrence of the economically significant concentrations of gold and tin. Comparative analysis of the different-rank factors that influenc... The aim of the investigation is to reveal possible causes of isolation and co-occurrence of the economically significant concentrations of gold and tin. Comparative analysis of the different-rank factors that influenced migration and concentration of these elements show that different geochemical properties of Au and Sn are responsible for isolation of their big concentrations giving rise to independent metallogenic provinces, zones, and ore nodes. These differences resulted in individualization of the element migration ways to the level of ore concentration within the fluid-magmatie columns. Three main factors influenced the Au and Sn migration activity: different patterns of metal connection with the meh structure, different relation with oxygen, and different relation with other strong oxidizers. By the moment when ore-bearing fluid became isolated from magmas, the metallogenic signature of the melts, contrasting in redox-potential, had already been defined that was confirmed by the fact that tin ores associate predominantly with the granitoids of ilmenite series and gold ores - with those of magnetite series. The fluid-magmatic systems with an intermediate degree of the melt reduction-oxidation may be considered the potential producers of the combined metal concentrations. In these cases, the combined con- centrating of tin and gold is plagued by an opposite direction of the oxidation-reduction reactions when their most common minerals are formed: the main migration form of Sn^+2 must be oxidized (with cassiterite portioning) , and the forms of Au^+ or Au^+3 must be reduced (with native gold portioning). Probably, because of this the combined tin and gold concentrations are dominated by one of the metals with a tendency of accumulation in different-stage mineral complexes. 展开更多
关键词 GOLD tin migration CONCENTRATING fluid-magmatic systems redox-potential
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