首页> 外文期刊>Neues Jahrbuch fur Mineralogie, Abhandlungen >Composition of minerals from the skarn deposits Vaster Silvberg (Sweden) and Tumurtijn-ovoo (Mongolia): Indications of different element supply in submarine hydrothermal-sedimentary ore genesis
【24h】

Composition of minerals from the skarn deposits Vaster Silvberg (Sweden) and Tumurtijn-ovoo (Mongolia): Indications of different element supply in submarine hydrothermal-sedimentary ore genesis

机译:来自Skarn Proposits Vaster Silvberg(瑞典)和Tumurtijn-Ovoo(蒙古)的矿物质的构成:潜艇水热沉积矿石创世纪不同元素供应的迹象

获取原文
获取原文并翻译 | 示例
       

摘要

We compare chemical compositions of the main minerals from two submarine exhalative sulfide-bearing manganiferous iron-ore deposits, i.e. Vaster Silvberg in Sweden (VS) and Tumurtijn-ovoo in Mongolia (TO). At VS, much Al is present in garnet (Fe-spessartine) and biotite, whereas at TO the ore-associated garnets are Al-poor (andradite) and minerals not associated with ore minerals are Al-rich (grossular, vesuvianite). The low-Al of andradite at TO agrees with the low-Al of volcanic ore-forming solutions from the modern oceans. The Al-rich minerals at both TO and VS indicate the assimilation of Al-rich volcanic material in both deposits. The elements Ca and Mg show opposite distributions: at VS much Mg is incorporated in kutnahorite, knebelite, biotite, and Mn-actinolite, Mg-rich minerals are absent at TO; in contrast, the garnets at TO contain more Ca than the garnets at VS. We explain these differences by the different carbonate minerals constituting the accompanying carbonate rocks at the two deposits, namely calcite and dolomite at VS, and only calcite at TO. These minerals primarily resulted from evaporation of seawater. Also during times, when they did not form massive carbonate rocks, they settled to the seafloor in minor amounts. There, they were partially combined with volcaniclastic Al-rich input. When the ore solutions spread on the seafloor and percolated through the bottomset they mixed with the seafloor mud producing ore-bearing sediments as precursors of Al-rich, Mg-rich skarn ores at VS and Al-poor, Mg-poor, Ca-rich skarn ores at TO. As a result, three sources supplied elements for the skarn-ore formation at the investigated deposits: volcanic ore solutions, Al-rich volcanic material and evaporitic carbonates of different composition.
机译:我们将主要矿物质的化学成分与两艘潜艇呼气耐硫化硫化锰铁矿矿床的化学成分进行比较,即瑞典的Vaster Silvberg和蒙古(蒙古)的肿瘤株(To)。在VS,大量Al存在于石榴石(Fe-Spessartine)和Biotite中,而在矿石相关的装甲上是贫血性(Andradite),与矿石矿物质无关的矿物质是富含的(GeSuvianite的矿物质)。 andradite的低级,同意从现代海洋的火山矿石溶液的低al。富含Al的富含铝矿物质,表明矿床中富含钙的火山材料的同化。 CA和MG的元素显示出相反的分布:在VS Mod Mg中掺入Kutnahorite,Knebelite,Biotite和Mn-Actinolite,不存在Mg-Rich矿物质;相比之下,装饰的装载量比在与vs的装备更多的Ca.我们通过在两种沉积物上的伴随碳酸盐岩石中的不同碳酸盐矿物质来解释这些差异,即在VS的方解石和白云石,并且只有方解石。这些矿物主要是由于海水蒸发。同样在次数期间,当他们没有形成巨大的碳酸盐岩石时,它们以少量的量落到海底。在那里,它们部分地与富含火山的富含摄入的输入。当矿石溶液在海底上涂在海底上并通过其渗透到它们与海底泥浆混合产生矿石沉积物,作为富含矿石,富含Mg的鞋类矿石的前体,在VS和Al-Pold,Mg-Per,Ca-Rich斯卡恩矿石。结果,在研究沉积物上的矽卡岩矿石形成的三种源供应元素:火山矿石溶液,富含铝的火山材料和不同组成的蒸发碳酸盐。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号