id	author	title	date	pages	extension	mime	words	sentence	flesch	summary	cache	txt
gc-620	Toth, Tivadar M.	Geochemistry of the Görcsöny Ridge amphibolites (Tisza Unit, SW Hungary) and its geodynamic consequences	2014	16	.pdf	application/pdf	10594	471	60	Unit UU UU UU UU UU UU UU UU UU UU UU UU Sample B2-680 B2-681 B2-699 B2-701 B2-702 B2-703 B2-704 B2-706 B2-707 B2-708 B2-709 B2-711 Depth 827 m 829 m 846 m 850 m 853 m 854 m 854 m 857 m 859 m 861 m 864 m 866 m SiO2 49.09 48.88 47.22 46.24 47.13 47.49 50.43 48.15 46.67 47.49 46.48 44.73 TiO2 3.17 3.29 2.62 2.75 3.81 4.26 2.92 3.01 3.14 2.86 3.34 3.76 Al2O3 13.42 14.08 11.65 12.80 14.46 14.83 13.81 14.48 14.34 14.59 13.92 14.70 Fe2O3 tot 11.78 11.65 13.49 14.33 12.14 14.19 13.69 13.47 13.84 12.74 13.22 15.85 MnO 0.30 0.19 0.21 0.23 0.18 0.23 0.23 0.20 0.18 0.18 0.18 0.23 MgO 6.25 6.45 8.75 7.63 4.31 4.76 3.51 6.58 4.85 6.59 6.19 5.36 CaO 10.36 9.67 11.27 10.64 11.01 8.61 8.72 8.32 10.94 9.51 10.67 8.67 Na2O 3.10 3.18 2.51 2.61 4.13 4.15 5.20 3.69 3.25 3.55 3.07 3.34 K2O 1.15 1.32 0.82 0.99 0.57 0.87 0.50 1.17 1.24 0.85 1.21 0.43 P2O5 0.38 0.39 0.39 0.33 0.39 0.46 0.92 0.35 0.47 0.32 0.45 0.66 lOI 1.22 1.32 1.19 1.06 1.68 0.62 0.36 0.89 1.02 1.01 1.17 2.68 Total 100.21 100.40 100.12 99.61 99.81 100.45 100.29 100.32 99.93 99.72 99.89 100.41 Cr 93 94 188 132 14 9 15 92 43 101 147 80 Ni 79 62 97 89 15 11 1 65 30 66 65 31 v 398 428 342 396 403 421 174 372 397 378 409 381 Rb 80 81 30 37 13 25 2 32 54 21 41 22 Sr 433 492 235 305 450 511 416 553 429 430 426 491 Ba 171 263 165 148 111 137 92 254 215 138 226 70 Ga 18 21 15 19 26 25 24 22 22 21 21 33 Nb 31 31 24 25 32 39 65 29 34 29 37 45 Y 31 31 23 27 29 34 61 27 36 28 33 41 Zr 186 190 148 141 184 223 400 193 213 174 206 238 Unit lU lU lU lU lU lU lU lU lU lU lU lU Sample B2-803 B2-804 B2-810 B2-811 B2-816 B2-828 B2-832 B2-833 B2-889 B2-907 B2-911 B2-913 Depth 1020 m 1022 m 1035 m 1036 m 1044 m 1062 m 1066 m 1067 m 1128 m 1150 m 1152 m 1153 m SiO2 55.59 50.07 49.95 49.84 43.65 50.06 47.87 50.43 48.98 49.74 47.45 48.78 TiO2 1.40 2.10 3.83 0.86 3.62 2.94 2.68 2.72 2.11 2.82 3.07 3.75 Al2O3 18.15 14.78 14.16 10.55 10.68 11.14 14.43 14.68 15.44 17.37 16.24 14.27 Fe2O3 tot 8.27 11.69 14.21 12.25 14.74 13.22 12.03 12.59 12.99 11.75 12.24 13.75 MnO 0.06 0.15 0.19 0.18 0.15 0.17 0.16 0.19 0.21 0.19 0.22 0.27 MgO 4.49 8.44 4.73 12.87 8.03 9.62 6.66 6.74 7.38 3.64 5.25 5.28 CaO 3.89 7.55 8.31 10.04 14.10 9.08 8.12 8.27 9.02 10.87 11.23 10.08 Na2O 3.20 0.68 1.31 0.83 0.89 0.88 2.23 2.27 1.39 0.99 1.09 1.94 K2O 1.74 2.39 1.59 0.97 0.78 1.29 1.80 0.97 1.02 0.88 1.45 1.04 P2O5 0.18 0.24 0.76 0.10 0.75 0.39 0.37 0.40 0.28 0.48 0.69 0.21 lOI 3.05 2.26 1.25 1.86 2.27 1.65 3.45 1.07 1.62 1.29 1.33 0.77 Total 100.01 100.35 100.28 100.36 99.65 100.44 99.82 100.34 100.44 100.01 100.25 100.13 Cr 136 349 28 598 483 615 165 149 201 60 86 32 Ni 44 84 25 477 417 188 93 90 74 33 47 6 v 257 298 455 141 283 366 372 328 357 316 382 378 Rb 86 115 97 25 48 73 103 41 45 35 70 28 Sr 269 115 132 35 129 34 173 152 131 282 233 262 Ba 280 236 161 222 78 118 217 125 122 42 105 210 Ga 20 21 29 17 25 18 19 18 24 35 34 24 Nb 19 19 35 8 50 28 33 32 16 37 45 56 Y 21 22 33 19 33 21 32 32 24 38 33 51 Zr 177 130 200 82 308 154 196 192 122 244 219 360 Tivadar M. Tóth: Geochemistry of the Görcsöny Ridge amphibolites (Tisza Unit, SW Hungary) and its geodynamic consequences Geologia Croatica 23 Unit lU lU lU lU lU lU lU lU lU lU lU lU Sample B2-803 B2-804 B2-810 B2-811 B2-816 B2-828 B2-832 B2-833 B2-889 B2-907 B2-911 B2-913 Depth 1020 m 1022 m 1035 m 1036 m 1044 m 1062 m 1066 m 1067 m 1128 m 1150 m 1152 m 1153 m SiO2 55.59 50.07 49.95 49.84 43.65 50.06 47.87 50.43 48.98 49.74 47.45 48.78 TiO2 1.40 2.10 3.83 0.86 3.62 2.94 2.68 2.72 2.11 2.82 3.07 3.75 Al2O3 18.15 14.78 14.16 10.55 10.68 11.14 14.43 14.68 15.44 17.37 16.24 14.27 Fe2O3 tot 8.27 11.69 14.21 12.25 14.74 13.22 12.03 12.59 12.99 11.75 12.24 13.75 MnO 0.06 0.15 0.19 0.18 0.15 0.17 0.16 0.19 0.21 0.19 0.22 0.27 MgO 4.49 8.44 4.73 12.87 8.03 9.62 6.66 6.74 7.38 3.64 5.25 5.28 CaO 3.89 7.55 8.31 10.04 14.10 9.08 8.12 8.27 9.02 10.87 11.23 10.08 Na2O 3.20 0.68 1.31 0.83 0.89 0.88 2.23 2.27 1.39 0.99 1.09 1.94 K2O 1.74 2.39 1.59 0.97 0.78 1.29 1.80 0.97 1.02 0.88 1.45 1.04 P2O5 0.18 0.24 0.76 0.10 0.75 0.39 0.37 0.40 0.28 0.48 0.69 0.21 lOI 3.05 2.26 1.25 1.86 2.27 1.65 3.45 1.07 1.62 1.29 1.33 0.77 Total 100.01 100.35 100.28 100.36 99.65 100.44 99.82 100.34 100.44 100.01 100.25 100.13 on the TAS diagram (LE MAITRE, 1989, Fig. 4), rock samples of UU are plotted close to the alkali basalt field, while those belonging to LU are more differentiated and are subalkali in character (Fig. 4 inset, IRvINE & BARAGAR, 1971).	cache/gc-620.pdf	txt/gc-620.txt
