Index
A
Abiotic reductive dechlorination, 68
Acidity, 141
aluminum-based, 141–142
groundwater, 141, 147
iron acidity, 147
iron-based, 142
Activated carbon (AC), 220–221, 281
adsorption isotherms on, 225
comparison, 232–233
ADRE, see Advective–dispersive–
reactive equation (ADRE)
Adsorption isotherms, 225
on activated carbon, 225
from column runs, 233–234
Freundlich parameters, 227–228
2-methylquinoline, 226, 229–230
of mixtures, 230–233
single compounds in water, 226
Adsorptive reactor and barrier system
(AR&B system), 291, 292
Advective–dispersive–reactive equation
(ADRE), 65
AHD, see Australian Height Datum
(AHD)
Alkalinity, 137, 142, 143
Alluvial unit, 114
Aluminum-based acidity, 141–142
Ammonium elimination
ammonium degradation, 206
BIOXWAND technology, 202
gas storage control, 204
mass balance approach, 202
site map of, 203
in situ gas storage monitoring, 204
in situ iron removal, 205
Aquifers, 47, 114
aquifer 1a, 286
aquifer 1b, 286
contaminant transport, 5
decreasing restoration, 13
gas storage in, 185
lithology, 251
shallow, 4
in Thun, 294
unconfined, 206
AR&B system, see Adsorptive reactor
and barrier system (AR&B
system)
Arsenic (As), 144–145
Australian Height Datum (AHD), 73, 113
Austria
PRBs in, 223, 291
reactive barrier in Brunn am
Gebirge, 224, 291–293
B
Base of Guildford unit, 114
below ground surface (bgs), 291
Bench-scale treatability study, 115
Benzene, toluene, ethylbenzenes and
xylene (BTEX), 225, 281
Berlin Water Company (BWB), 202
Best available technique (BAT), 167
β-elimination, 110, 131
Biological oxygen demand (BOD), 263
Biomineralization process, 165
Biopolymer trenching, 54
Biowalls, 31
BIOXWAND technology, 202
ammonium degradation, 206
gas storage control, 204
mass balance approach, 202
site map of, 203
in situ gas storage monitoring, 204
in situ iron removal, 205
Botany industrial park (BIP), 250
C
CAH, see Chlorinated aliphatic
hydrocarbon (CAH)
Caissons PRBs, 51–52
Calibration, 75–76
Canadian Environment Industry
(CEI), 2
309
A
Abiotic reductive dechlorination, 68
Acidity, 141
aluminum-based, 141–142
groundwater, 141, 147
iron acidity, 147
iron-based, 142
Activated carbon (AC), 220–221, 281
adsorption isotherms on, 225
comparison, 232–233
ADRE, see Advective–dispersive–
reactive equation (ADRE)
Adsorption isotherms, 225
on activated carbon, 225
from column runs, 233–234
Freundlich parameters, 227–228
2-methylquinoline, 226, 229–230
of mixtures, 230–233
single compounds in water, 226
Adsorptive reactor and barrier system
(AR&B system), 291, 292
Advective–dispersive–reactive equation
(ADRE), 65
AHD, see Australian Height Datum
(AHD)
Alkalinity, 137, 142, 143
Alluvial unit, 114
Aluminum-based acidity, 141–142
Ammonium elimination
ammonium degradation, 206
BIOXWAND technology, 202
gas storage control, 204
mass balance approach, 202
site map of, 203
in situ gas storage monitoring, 204
in situ iron removal, 205
Aquifers, 47, 114
aquifer 1a, 286
aquifer 1b, 286
contaminant transport, 5
decreasing restoration, 13
gas storage in, 185
lithology, 251
shallow, 4
in Thun, 294
unconfined, 206
AR&B system, see Adsorptive reactor
and barrier system (AR&B
system)
Arsenic (As), 144–145
Australian Height Datum (AHD), 73, 113
Austria
PRBs in, 223, 291
reactive barrier in Brunn am
Gebirge, 224, 291–293
B
Base of Guildford unit, 114
below ground surface (bgs), 291
Bench-scale treatability study, 115
Benzene, toluene, ethylbenzenes and
xylene (BTEX), 225, 281
Berlin Water Company (BWB), 202
Best available technique (BAT), 167
β-elimination, 110, 131
Biological oxygen demand (BOD), 263
Biomineralization process, 165
Biopolymer trenching, 54
Biowalls, 31
BIOXWAND technology, 202
ammonium degradation, 206
gas storage control, 204
mass balance approach, 202
site map of, 203
in situ gas storage monitoring, 204
in situ iron removal, 205
Botany industrial park (BIP), 250
C
CAH, see Chlorinated aliphatic
hydrocarbon (CAH)
Caissons PRBs, 51–52
Calibration, 75–76
Canadian Environment Industry
(CEI), 2
309
