Geochemical Characterization of Podiform Chromite Ores from the Ultramafic Massif of Bulqiza (Eastern Ophiolitic Belt, Albania) and Hints for Exploration
{"title":"Geochemical Characterization of Podiform Chromite Ores from the Ultramafic Massif of Bulqiza (Eastern Ophiolitic Belt, Albania) and Hints for Exploration","authors":"A. Beqiraj, U. Masi, M. Violo","doi":"10.2113/0090149","DOIUrl":null,"url":null,"abstract":"Four main podiform occurrences of chromite have been distinguished in the ultramafic Bulqiza massif, Albania; they are associated from the bottom to the top with: i) basal harzburgites (lower tectonite sequence), ii) dunitic lens-bearing harzbugites (middle-upper tectonite sequence), iii) layered chromitite-bearing dunites of transitional zone, and, iiii) the stratigraphically lowermost part of the magmatic section. However, only the occurrences hosted by rocks ii) and iii) are economically important. Chromite compositions similar to those of other podiform chromites are bimodal. Thus, chromites from occurrences ii) and iii) are richer in Cr than chromites from the other two occurrences. Accessory chromite disseminated throughout the massif is richer in Fe than orebody chromite, displaying similar range of the Cr/Cr+Al ratios, with accessory residue chromite matching the characteristic (Cr/Cr+Al >0.6) range of type-III Alpine peridotites. Both orebody and accessory chromites show compositional ranges correlating with host-rock compositions, i.e., the Cr-rich chromites are hosted by the most refractory ultramafic rocks. Therefore, the Cr/Cr+Al and Mg/Fe tot (Cr/Fe tot ) ratios of chromite are useful for exploration of high-grade, metallurgical chromite ore at Bulqiza and in other massifs of similar geodynamic setting.","PeriodicalId":206160,"journal":{"name":"Exploration and Mining Geology","volume":"93 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2000-04-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"11","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Exploration and Mining Geology","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.2113/0090149","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 11
Abstract
Four main podiform occurrences of chromite have been distinguished in the ultramafic Bulqiza massif, Albania; they are associated from the bottom to the top with: i) basal harzburgites (lower tectonite sequence), ii) dunitic lens-bearing harzbugites (middle-upper tectonite sequence), iii) layered chromitite-bearing dunites of transitional zone, and, iiii) the stratigraphically lowermost part of the magmatic section. However, only the occurrences hosted by rocks ii) and iii) are economically important. Chromite compositions similar to those of other podiform chromites are bimodal. Thus, chromites from occurrences ii) and iii) are richer in Cr than chromites from the other two occurrences. Accessory chromite disseminated throughout the massif is richer in Fe than orebody chromite, displaying similar range of the Cr/Cr+Al ratios, with accessory residue chromite matching the characteristic (Cr/Cr+Al >0.6) range of type-III Alpine peridotites. Both orebody and accessory chromites show compositional ranges correlating with host-rock compositions, i.e., the Cr-rich chromites are hosted by the most refractory ultramafic rocks. Therefore, the Cr/Cr+Al and Mg/Fe tot (Cr/Fe tot ) ratios of chromite are useful for exploration of high-grade, metallurgical chromite ore at Bulqiza and in other massifs of similar geodynamic setting.
在阿尔巴尼亚的超镁质Bulqiza地块中发现了4个主要的脚状铬铁矿产状;它们从下往上依次与:1)基底黑陶粒岩(下构造岩序列),2)含双晶透镜状黑陶粒岩(中上构造岩序列),3)过渡带层状含铬铁矿的黑陶粒岩,3)岩浆剖面地层最下部。然而,只有由岩石(ii)和(iii)承载的矿点具有经济意义。与其他足状铬铁矿相似的铬铁矿成分是双峰的。因此,产自矿床ii)和iii)的铬铁矿比产自其他两个矿床的铬铁矿含铬量更丰富。弥散在整个岩体中的副渣铬铁矿铁含量高于矿体铬铁矿,Cr/Cr+Al比值范围相近,副渣铬铁矿符合iii型高寒橄榄岩特征(Cr/Cr+Al >0.6)范围。矿体和副铬铁矿均显示出与寄主岩组成相关的成分范围,富铬铬铁矿的寄主岩为最难熔的超镁铁质岩。因此,铬铁矿的Cr/Cr+Al和Mg/Fe tot (Cr/Fe tot)比值对布尔奇扎及其他具有类似地球动力背景的地块的高品位冶金铬铁矿具有指导意义。