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Table 1

Mineralisation events and characteristics in the region of the Upper Rhine Graben.

Mineralisation stage and age Host-rock(s) Mineralogy Structural context Fluid type Min-Max Th Salinity wt.%eq. NaCl–CaCl2 Publication(s)
Carboniferous Carboniferous granites Quartz–tourmaline Geometrically associated with granites H2O–NaCl, eventually CO2.CH4 250–350 °C Low salinity
0–4
Boiron et al. (2011); Cathelineau et al. (2004); Schwinn et al. (2006); Walter et al. (2019)
Permian Basement Quartz
Barite
Fluorite
Fracture infill H2O–NaCl–KCl (a) 150–350 °C
(b) 90–150 °C
(a) Low salinity
< 10
(b) High salinity
23–27
Baatartsogt et al. (2007); Walter et al. (2018, 2019)
Triassic-Jurassic Basement Quartz–hematite Fracture network in granites and gneisses in Schwarzwald basement H2O–NaCl–KCl and H2O–NaCl–CaCl2 120–225 °C (a) Low salinity
0.5–3.5
(b) High salinity
23–26
Bons et al. (2014); Staude et al. (2012); Walter et al. (2016, 2019)
Jurassic-Early Cretaceous Basement up to the boundary between Lower/Middle Triassic sediments Fluorite–quartz–barite–illite Fracture network and MVT deposits H2O–NaCl–CaCl2 50–180 °C High salinity
20–28
Burisch et al. (2017a); Cathelineau et al. (2012); Pfaff et al. (2010); Walter et al. (2019)
Late Cretaceous-Paleogene Basement and overlaying Lower Triassic sandstones Fluorite–quartz–barite Fracture network and MVT deposits H2O–NaCl–CaCl2 50–150 °C Varying salinities
0–20
Burisch et al. (2017b); Pfaff et al. (2010); Walter et al. (2016, 2017)
Miocene-Pliocene Basement and overlaying Lower Triassic sandstones Quartz–barite–fluorite–carbonates Rhine Graben related faults H2O–NaCl–CaCl2 50–150 °C High salinity
13–18
Baatartsogt et al. (2007); Burisch et al. (2017a, 2017b); Walter et al. (2016)
Unknown age (This study) Buntsandstein Gp. sandstones Barite
Quartz
Barite
Fe–Mg carbonates
Fracture infill, and cements pervasive in sandstones matrices H2O–NaCl
HC fluids
80–240 °C Varying salinities
0–22
This study

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