Sulfur isotope signatures of sulfides from the Khibina and Lovozero massifs (Kola Alkaline Province, Fennoscandian Shield)

M. Huber, A. Mokrushin
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Abstract

The sulfur isotope geochemistry of the Khibina and Lovozero agpaitic massifs provides an opportunity to understand the role of plume-lithosphere interaction processes responsible for the Paleozoic alkaline igneous activity in the north-eastern part of the Fennoscandian Shield. The stable sulfur isotope δS analysis using triple collector isotope ratio mass spectrometer (IRMS) has been carried out on the pentlandite, chalcopyrite and pyrite from nepheline syenites. The δS values for pentlandite from Khibina rocks range from +0.69 to +2.06 ‰ relative to the Vienna Canyon Diablo Troillite standard (VCDT), and the pyrite has significantly higher δS values up to +4.92 ‰ VCDT. The pentlandite from the Lovozero samples has value +1.48 ‰ VCDT, δS values of chalcopyrite is +2.85 ‰ VCDT. The maximum positive δS values are obtained for Lovozero pyrite, which vary from +5.41 to +6.30 ‰ VCDT. Comparison of sulfur-geochemical features of Khibina and Lovozero nepheline syenite with δS data for the carbonatites from the Khibina, Sallanlatvi, Seblyavr, Vuoriyarvi, Salmagora and Kovdor massifs show later carbonatite formation relatively to associated alkaline rocks. Geochemical sulfur isotope δS investigations emphasizes that parental magmas of the Khibina and Lovozero alkaline massifs were derived from a metasomatized subcontinental lithospheric mantle (SCLM). We suggest that high-δS signature on the SCLM (δS of +1 to +6 ‰ VCDT) can be explained by subduction of the high-δS Archaean crust.
芬诺斯坎地盾科拉碱性省Khibina和Lovozero地块硫化物硫同位素特征
Khibina和Lovozero agpatic地块的硫同位素地球化学为了解芬诺斯坎德地脉东北部古生代碱性火成岩活动中羽流-岩石圈相互作用过程的作用提供了机会。采用三捕集剂同位素比质谱仪(IRMS)对霞石正长岩中的镍黄铁矿、黄铜矿和黄铁矿进行了稳定硫同位素δS分析。相对维也纳峡谷Diablo Troillite标准(VCDT), Khibina岩石中镍黄铁矿的δS值为+0.69 ~ +2.06‰,黄铁矿的δS值高达+4.92‰。Lovozero样品中镍黄铁矿的δS值为+1.48‰VCDT,黄铜矿的δS值为+2.85‰VCDT。Lovozero黄铁矿的最大正δS值为+5.41 ~ +6.30‰VCDT。通过对比希比纳和Lovozero的正长岩硫化物地球化学特征与希比纳、Sallanlatvi、Seblyavr、Vuoriyarvi、Salmagora和Kovdor地块碳酸盐岩的δS数据显示,碳酸盐岩形成相对晚于伴生碱性岩。地球化学硫同位素δS研究强调,Khibina和Lovozero碱性地块的母岩浆来源于交代的次大陆岩石圈地幔(SCLM)。高δS特征(+1 ~ +6‰VCDT)可以解释为太古宙高δS地壳的俯冲作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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