Magma-Shale Interaction in Large Igneous Provinces: Implications for Climate Warming and Sulfide Genesis

被引:9
作者
Deegan, Frances M. [1 ,2 ]
Bedard, Jean H. [3 ]
Grasby, Stephen E. [4 ]
Dewing, Keith [4 ]
Geiger, Harri [5 ]
Misiti, Valeria
Capriolo, Manfredo [6 ]
Callegaro, Sara [6 ]
Svensen, Henrik H. [6 ]
Yakymchuk, Chris [7 ]
Aradi, Laszlo E. [8 ]
Freda, Carmela [2 ,9 ]
Troll, Valentin R. [1 ,2 ]
机构
[1] Uppsala Univ, Nat Resources & Sustainable Dev NRHU, Dept Earth Sci, Villavagen16, S-75236 Uppsala, Sweden
[2] Ist Nazil Geofisica & Vulcanol INGV, Via Vigna Murata 605, I-00143 Rome, Italy
[3] Geol Survey Canada GSC Quebec, 490 Rue Couronne, Quebec City, PQ G1K 9A9, Canada
[4] Geol Survey Canada GSC Calgary, 3303-33 St NW, Calgary, AB T2L 2A7, Canada
[5] Univ Freiburg, Inst Earth & Environm Sci, Albertsr 23B, D-79104 Freiburg, Germany
[6] Univ Oslo, Ctr Earth Evolut & Dynam, Sem Saelands Vei 2A, N-0371 Oslo, Norway
[7] Univ Waterloo, Dept Earth & Environm Sci, 200 Univ Ave West, Waterloo, ON N2L 3G1, Canada
[8] Eotvos Lorand Univ, Inst Geog & Earth Sci, Lithosphere Fluid Res Lab, Pazmany Peterstny 1C, H-1117 Budapest, Hungary
[9] European Res Infrastruct Consortium ERIC, European Plate Observing Syst EPOS, Via Vigna Murata 605, I-00143 Rome, Italy
基金
瑞典研究理事会;
关键词
magma-shaleinteraction; large igneous provinces; High Arctic LIP (HALIP); C-cycle perturbations; sulfide genesis; SVERDRUP BASIN; ALBAN HILLS; CARBONATE ASSIMILATION; LIMESTONE ASSIMILATION; ARCTIC ISLANDS; BARENTS SEA; CO2; ROCKS; GEOCHRONOLOGY; GEOCHEMISTRY;
D O I
10.1093/petrology/egac094
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
Large igneous provinces (LIPs) whose magma plumbing systems intersect sedimentary basins are linked to upheavals of Earths carbon and sulfur cycles and thus climate and life history. However, the underlying mechanistic links between these phenomena are elusive. We address this knowledge gap through short time-scale petrological experiments (1200 degrees C and 150 MPa) that explore interaction between basaltic melt and carbonaceous shale (mudstone) using starting materials from the Canadian High Arctic LIP and the Sverdrup Basin in which it intrudes. Here we show that entrainment of shale xenoliths in basaltic melt causes shale to shatter due to incipient thermal stress and devolatilization, which accelerates assimilation by increasing reactive surface area. Shale assimilation therefore facilitates transfer of sediment-derived volatile elements to LIP magma plumbing systems, whereupon carbon dominates the vapor phase while sulfur is partitioned into sulfide melt droplets. This study reveals that although carbon and sulfur are efficiently mobilized as a consequence of shale assimilation, sulfides can sequester sulfuran important climate cooling agentthus enhancing net emissions of climate warming greenhouse gases by shale-intersecting LIPs.
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收藏
页数:10
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