Jökull


Jökull - 01.01.2017, Side 32

Jökull - 01.01.2017, Side 32
Holocene lavas in Bárðardalur, NE-Iceland Figure 4. MgO vs. K2O (wt%): (a) Bárðarbunga basement rocks and other eruptive units north of Vatnajökull and (b) the Bárðardalur region. Y vs. Zr (ppm): (c) Bárðarbunga basement rocks and other eruptive units north of Vatnajökull and (d) the Bárðardalur region. Grey points denote published data from Bárðarbunga and the NRZ (Jakobsson, 1979; Nicholson et al., 1991; Stracke et al., 2003; Halldórsson et al., 2008; Óladóttir, 2009; Hartley, 2012; Manning and Thirlwall, 2014; Halldórsson, unpublished). Error bars are smaller than or identical to the size of the symbols. WR: whole rock; GR: groundmass. – MgO á móti K2O (þunga%): (a) berggrun- nur Bárðarbungu og aðrar goseiningar norðan Vatnajökuls og (b) hraun Bárðardals. Y á móti Zr (ppm): (c) berggrunnur Bárðarbungu og aðrar goseiningar norðan Vatnajökuls og (d) hraun Bárðardals. Áður birt gögn frá Norðurgosbeltinu og Bárðarbungu eru merkt með gráum punktum. Radiogenic Isotope Characteristics Bárðarbunga and eruptive units north of Vatnajökull Sr-Nd-Hf isotopic ratios of samples from Bárðar- bunga basement rocks, Dyngjuháls and Gígöldur (Ta- ble 2 and Figure 5a, c and e) are in good agreement with published data for Bárðarbunga and the NVZ, but differ from most other rift and flank zones, which gen- erally extend to more radiogenic values (e.g. Thirlwall et al., 2004; Peate et al., 2010). Strontium isotope ratios of basement rocks from the Bárðarbunga central volcano and Dyngjuháls fall JÖKULL No. 67, 2017 27

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