G'/> The possible synglaciogenic Ediacaran hematitic banded iron salt formation (BISF) at Hormuz Island, southern Iran: Implications for a new style of exhalative hydrothermal iron-salt system
首页> 外文期刊>Ore Geology Reviews: Journal for Comprehensive Studies of Ore Genesis and Ore Exploration >The possible synglaciogenic Ediacaran hematitic banded iron salt formation (BISF) at Hormuz Island, southern Iran: Implications for a new style of exhalative hydrothermal iron-salt system
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The possible synglaciogenic Ediacaran hematitic banded iron salt formation (BISF) at Hormuz Island, southern Iran: Implications for a new style of exhalative hydrothermal iron-salt system

机译:在伊朗南部霍尔杜兹岛的可能的Synglacioganic eDiCaran血液带状铁盐形成(BISF):对新型呼气热液铁盐系统的影响

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Graphical abstractDisplay OmittedHighlights?A new record of salt-BIF at Hormuz Island is documented.?The banded iron salt formation is composed of hematite-salt bands.?The bullet-shape metamorphogenic dropstones are of glaciogenic origin.?The marked negative 13 C excursion indicates Late Ediacaran glaciation timeline.AbstractThe Ediacaran BISF at Hormuz Island is a newly identified glaciogenic iron-salt deposit in the Tethyan margin of Gondwana. The BISF was formed by synchronous riftogenic A-type submarine felsic volcanism and evaporate deposition. The mineralization occurs in a proximal felsic tuff cone and jaspilitic distal zones and contains 1 million tonne of hematite-rich ore with an average grade of 58% Fe. The ore structure shows cyclicity of macrobandings, mesobandings and microbandings of anhydrite, halite, hematite and chert, which marks a new record in BIFs geohistory. The alteration minerals in the proximal and distal zones are actinolite, ripidolite, epidote, sericite, tourmaline, clinochlore, anhydrite and clay minerals. The occurrence of metamorphosed polygenetic bullet-shape dropstones in BISF attests that there was probably a continuous process of ice melting, episodic submarine volcanism and exhalative hydrothermal banded iron salt formation during the Late Ediacaran time. The non-metamorphosed Neoproterozoic stratigraphy, the presence of genus Collenia, U-Pb dating (558±7Ma) and the marked negative δ13C excursion in cap carbonates are representative of Late Ediacaran glaciation, which has been identified worldwide. The REE+Y display light REE enrichment, unusually strong Tb-Tm anomaly, a weak positive Y anomaly, but no distinguished Eu and Ce anomalies, reflecting the glaciogenic nature of the BISF. The contents of Zr, Hf, Nb, Ta, Th, La, Ce and Y in BISF, dropstones, halite and cap carbonates are similar to those of the Neoproterozoic glaciogenic BIFs. Also, the Ni/Fe, P/Fe ratios and Fe/Ti – Al/Al+Fe+Mn+Ca+Na+K diagram suggest an exhalative hydrothermal Ediacaran-type BISF. The absence of brecciated magnetite in the ore association and the low contents of copper (9–493ppm) and gold (<5–8ppb) are not in favor of the IOCG – Kiruna-type iron oxide ores. The co-paragenesis of hematite with several alteration minerals, in particular actinolite, tourmaline and anhydrite, indicates that the exhalative hydrothermal fluids were generated by the interaction of seawater with the felsic rocks and sediments at about 200–500°C. The interaction of seawater with felsic magma and sediments led to the formation of Mg-rich alteration miner
机译:<![cdata [ 图形摘要 显示省略 突出显示 < CE:简单段ID =“SP0010”View =“全部”> 记录了Hormuz Island的盐BIF的新记录。 带状铁盐形成由赤铁矿 - 盐带组成。 子弹形状变晶滴剂冰川原始。 标记的负13 c偏移表明晚埃德拉兰冰川冰川时间线。 抽象 Hormuz Island的Ediacaran BISF是Thethyan的新发现的冰川原料矿床Gondwana边缘。通过同步的X型潜艇肠道术和蒸发沉积来形成BISF。矿化发生在近侧肠凝锥和吉西岩远端区中,含有100万吨富含血质矿石,平均级别为58%Fe。矿石结构显示了一种宏观体,中间酵母,卤化石,赤铁矿和燧石的循环性,Messobandings和Microbandings,它标志着BIFS地质杂志的新记录。近端和远端区域的改变矿物质是肌肌岩,RIPIDOLITE,ePIDOTE,绢云母,胰管林,CLINOCHLORE,ANHEDDRITE和粘土矿物质。 BISF中的变质多因子子弹形滴剂的发生证明,在晚期埃迪纳拉班时间期间可能存在连续的冰熔化,发出潜水火山和呼气热热带铁盐。非变质的新核古代地层性质,Genus Gentenia的存在,U-Pb约会(558±7mA)和标记的阴性δ 13 c excopmention在碳酸盖中已在全球范围内识别的晚埃德加伦冰川冰川的代表。 Ree + Y显示轻质REE富集,异常强烈的TB-TM异常,弱阳性异常,但没有杰出的欧盟和CE异常,反映了BISF的冰川原性。 BISF,滴石,宿骨和帽子中的Zr,Hf,Nb,Ta,Th,La,Ce和Y的含量与Neoproterozoic血管生成BIF类似。此外,Ni / Fe,P / Fe Ratios和Fe / Ti-Al / Al + Fe + Mn + Ca + Na + K图表明了呼气的热热埃迪基甘酰胺BISF。在矿石结合中没有抗强磁铁矿和铜(9-493ppm)和金(<5-8ppb)的低含量不赞成IOCG - 基鲁纳型氧化铁矿石。具有几种改变矿物质的赤铁矿的共瓣,特别是散剂石,电气石和空气水石,表明呼吸水热流体由海水与肠岩和沉积物的相互作用在约200-500℃下产生。海水与肠道岩浆和沉积物的相互作用导致了富含MG的改变矿工

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