- - H - -
heavy metal 49; 52: 55: 60; 63
hydrogen 1; 2; 18; 22; 24: I44; t57; t60
hydrosphere 11; 76
hydrothermal 5; 14; 90-92; 100; 107111; 144; 185; 187; 190; 201-202
hydroxides 33; 38; 42; 55; 120; 123;
192; 205; 208
I.
lapetus ocean 127
illite 19; 24: 156-165; 179-182; 186192; 197; 199-202; 207
Indian ocean 112; 128; 130: 132; 139
Industrial lead 50
industrialization I 1:49
inherited 162; 166; 168; 171; 192; 194,
inital 3; 166; 179
Iridium 146:148
isochron 4: 12-14: 17; 20-21: 25-29:
166: 169-182; 188; 192; 194: 197;
200: 203; 207
isotopic composition I-2: 5; 6
~sotopic equiJibrium 11: 17-18; 22; 24.;
94; 155-157; 162: 164: 178-181: 196.
197:200-203
isotopic homogenization 4
~ K ~
kaolinite 12; ld,: 18-21; 24-25: 170-I7I
K-At 6: 14: 16; 19; 162-168: 171-173;
178-179: 185; 187
K-At ages 162; 16.1.
K-Ar apparent ages 178
K-T boundary 146; 148
- - L - - -
Lake Erie 52-53
Lake Ontario 52-53
Lanthanum 140
laterite 12
Subject Index 215
leachate-residue pairs 191; 194
leachates 141; 1J;8; 166; 169; I73; 174;
175; 180; 190; 192; 195; 201-209
leaching 25-26: 28; 43; 55, I00: 102;
1"-44: 166: 172-175; 190; 209
Lead 2; 49; 51 ; 59-60
lead tetramethyt 59
limestone 59:102-103
Loire 54
low-grade metamorphism 180
~ M ~
Malta 96
manganese nodules 114; 123; 136-137:
139-143
mantle 7: 8; 6t; 63: 9(?-91; t00; 108;
112: 126: 129: 141-142; 148
mass balance 25; 33: 41-43; 89; 106,
107-111: 114; 143; 166
Mediterranean 96; 128; 132-135
meteoric water 22-25
meteorites 7; 147
micro~lratigraphy 93
migration 14: 49: 5.5; 63: 64: 77-78; 200
Miocene 94; 95; 96; 132; 133
mixing age 162
mixing diagram 21-22; 44; 203; 208
mixing line 59-60; 75: 90: 166-167; 178:
180: 198-199; 203
mixing time 10; 90: 115; 118
Mn crust 119; 121
Mn crusts 119
monazite 56
montmorillonite 2'4-25
muscovite I I; 14; 18-19; 25; 159
~ N ~
NADW 139
natural lead 49; 50: 53; 55; 57:60
Nd 5-10; 36: 38-43; 89; 121: t23; 176
Neodymium 2; 5: 7; 36:41
Neogene oceans 94
nuclear plant 76
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