| Index | Group Name | Decomposition | Technique |
|---|---|---|---|
| 1 | Ti | - | - | ||
| 2 | Ti | NONE | INAA | None | Instrumental neutron activation analysis |
| 3 | Ti | NONE | ICP-MS | None | IC plasma / mass spectrometry |
| 4 | Ti | NONE | Powder D-C | None | Powder D-C Arc |
| 5 | Ti | NONE | WD-XRF | None | WD-XRF |
| 6 | Ti | NONE | pXRF | None | pXRF |
| 7 | Ti | STR ACID | ICP-ES | Strong Acid | IC plasma – emission spectroscopy |
| 8 | Ti | STR ACID | ICP-MS | Strong Acid | IC plasma / mass spectrometry |
| 9 | Ti | AR | ROOT | Aqua Regia (sensu lato) | Technique |
| 10 | Ti | AR | FLUOR | Aqua Regia (sensu lato) | Fluorescence |
| 11 | Ti | AR | ICP-ES | Aqua Regia (sensu lato) | IC plasma – emission spectroscopy |
| 12 | Ti | AR (ss) | ICP-ES | Aqua Regia (sensu stricto) | IC plasma – emission spectroscopy |
| 13 | Ti | 4-acid | ICP-ES | 4-acid | IC plasma – emission spectroscopy |
| 14 | Ti | AR (Acme[1]) | ICP-MS | Aqua regia (Acme[1]) | IC plasma / mass spectrometry |
| 15 | Ti | AR (Acme[1]) | ICP-MS/ES | Aqua regia (Acme[1]) | ICP-MS and ICP-ES |
| 16 | Ti | 4-acid (Acme) | ICP-MS | Four-acid (Acme) | IC plasma / mass spectrometry |
| 17 | Ti | Unknown | ICP-MS | Unknown | IC plasma / mass spectrometry |
| 18 | Ti | BO2/B4O7 | Powder D-C | Borate and/or tetraborate | Powder D-C Arc |
| 19 | Ti | Aqua regia (NASGLP) | ICP-MS/ES | Aqua regia (NASGLP) | ICP-MS and ICP-ES |
| 20 | Ti | Water | ICP-MS/ES | Water | ICP-MS and ICP-ES |
| 21 | Ti | HF-HCl-HClO4 | ICP-ES | 3 acid mixture | IC plasma – emission spectroscopy |
| 22 | Ti | AR (BVM) | ICP-MS | Aqua regia (BVM) | IC plasma / mass spectrometry |
| 23 | Ti | AR (Acme[2]) | ICP-MS | Aqua regia (Acme[2]) | IC plasma / mass spectrometry |
| 24 | Ti | Multiple | INA/ICP-MS | Multiple | INAA and ICP-MS |
| 25 | Ti | Multiple | MULTIPLE | Multiple | Multiple |
Keywords
Titanium
Keyword Definition
Titanium
Category: Analysed quantities
Subcategory: Element
Keywords corresponding to analysed quantities. The types of analysed quantities have been grouped into eleven different subcategories.Examples: “Au”, “pH”.Taken from the “Analytical_Quantities_SHARED” database table. The subcategories are taken from the “Analytical_Quantity_Types_SHARED” database table.
| ID | Units | Det. Limit | Technique | Decomposition |
|---|---|---|---|---|
| 1 | ppm | 500 | Instrumental neutron activation analysis | None |
| 2 | ppb | 0.5 | IC plasma / mass spectrometry | None |
| 3 | percent | 0.01 | Fluorescence | Aqua Regia (sensu lato) |
| 4 | percent | 0.01 | Technique | Aqua Regia (sensu lato) |
| 5 | percent | 0.01 | Technique | Aqua Regia (sensu lato) |
| 6 | percent | 0.01 | IC plasma – emission spectroscopy | Aqua Regia (sensu lato) |
| 7 | percent | 0.01 | IC plasma – emission spectroscopy | Aqua Regia (sensu stricto) |
| 8 | percent | 0.01 | INAA and ICP-MS | Multiple |
| 9 | percent | 0.001 | ICP-MS and ICP-ES | Aqua regia (Acme[1]) |
| 10 | percent | 0.001 | ICP-MS and ICP-ES | Aqua regia (NASGLP) |
| 11 | percent | 0.01 | IC plasma – emission spectroscopy | Aqua Regia (sensu lato) |
| 12 | percent | IC plasma – emission spectroscopy | 4-acid | |
| 13 | percent | IC plasma – emission spectroscopy | Aqua Regia (sensu stricto) | |
| 14 | ppb | 40 | ICP-MS and ICP-ES | Water |
| 15 | ppm | 7 | IC plasma / mass spectrometry | Strong Acid |
| 16 | percent | 0.01 | IC plasma – emission spectroscopy | Strong Acid |
| 17 | percent | 0.01 | IC plasma – emission spectroscopy | Strong Acid |
| 18 | percent | 0.01 | IC plasma – emission spectroscopy | Strong Acid |
| 19 | percent | 0.01 | IC plasma – emission spectroscopy | Aqua Regia (sensu lato) |
| 20 | percent | 0.01 | IC plasma – emission spectroscopy | Aqua Regia (sensu lato) |
| 21 | ppm | 500 | Instrumental neutron activation analysis | None |
| 22 | ppm | 10 | IC plasma / mass spectrometry | Aqua regia (Acme[1]) |
| 23 | percent | 0.01 | IC plasma – emission spectroscopy | 4-acid |
| 24 | percent | 0.01 | IC plasma – emission spectroscopy | 4-acid |
| 25 | ppm | 10 | IC plasma / mass spectrometry | Aqua regia (Acme[1]) |
| 26 | ppm | 8 | WD-XRF | None |
| 27 | ppm | 10 | IC plasma / mass spectrometry | Unknown |
| 28 | ppm | Multiple | Multiple | |
| 29 | ppm | Multiple | Multiple | |
| 30 | ppm | Multiple | Multiple | |
| 31 | ppm | Multiple | Multiple | |
| 32 | ppm | Multiple | Multiple | |
| 33 | percent | 0.01 | IC plasma – emission spectroscopy | 4-acid |
| 34 | percent | 0.001 | IC plasma / mass spectrometry | Four-acid (Acme) |
| 35 | ppm | pXRF | None | |
| 36 | ppm | 1 | pXRF | None |
| 37 | ppm | 1 | pXRF | None |
| 38 | ppm | 1 | IC plasma – emission spectroscopy | 3 acid mixture |
| 39 | percent | 0.001 | IC plasma / mass spectrometry | Aqua regia (BVM) |
| 40 | percent | 0.01 | IC plasma – emission spectroscopy | Aqua Regia (sensu lato) |
| 41 | ppm | 7 | Powder D-C Arc | None |
| 42 | ppm | 2 | Powder D-C Arc | None |
| 43 | ppm | Powder D-C Arc | Borate and/or tetraborate | |
| 44 | ppm | 1 | IC plasma / mass spectrometry | Aqua regia (Acme[1]) |
| 45 | ppm | 0.001 | IC plasma / mass spectrometry | Aqua regia (Acme[2]) |
| Index | Suite ID | Suite Name |
|---|---|---|
| 1 | 61 | ActLabs ICP-AES (19 elements; 1999; 4-acid) |
| 2 | 62 | ActLabs ICP-AES (19 elements; 2001; 4-acid) |
| 3 | 63 | ActLabs ICP-AES (19 elements; 2002; 4-acid) |
| 4 | 65 | ActLabs ICP-AES (19 elements; 4-acid) |
| 5 | 94 | Chemex ICP-AES (Hg ppm) (32 elements) |
| 6 | 95 | Chemex/TSD ICP-AES/MS ? (38 elements) |
| 7 | 96 | Chemex/TSD ICP-AES/MS ? (24 elements) |
| 8 | 99 | Chemex ICP-AES (Hg ppb, Cd:0.05, La:0.5) (32 elements) |
| 9 | 102 | Geoscience Labs, (OGS) MRD143 Lithogeochemical Database: miscellaneous analytical methods |
| 10 | 104 | Geoscience Labs, (OGS) MRD 155, Teck-Gauthier A3, miscellaneous analytical methods |
| 11 | 107 | Geoscience Labs, (OGS) MRD 155, Carscallen-Thornburn, miscellaneous analytical methods |
| 12 | 108 | Geoscience Labs, (OGS) MRD 155, Munroe-Currie, miscellaneous analytical methods |
| 13 | 111 | Geoscience Labs, (OGS) MRD 155, Ben Nevis-Katrine, miscellaneous analytical methods |
| 14 | 135 | Chemex ICP-AES (Hg ppm) (33 elements) |
| 15 | 140 | Chemex ICP-AES (Hg ppb, Cd:0.5, La:10) (32 elements) |
| 16 | 141 | Bondar Clegg ICP-AES (38 elements) |
| 17 | 145 | Becquerel INAA (35 elements, inc Ni, Ti) |
| 18 | 156 | ACME ICP-MS (Group 1F-MS Basic Suite v1, including weight; B dl=1 ppm, Ga dl=0.1 ppm, S dl=0.01%, W dl=0.1 ppm) |
| 19 | 159 | ActLabs ICP-AES (19 elements; 4-acid; inc Bi, ex S; Pb:5) |
| 20 | 160 | ActLabs ICP-AES (20 elements; 4-acid; inc Bi, S; Pb:5) |
| 21 | 162 | ActLabs ICP-AES (19 elements; 4-acid; inc S, ex Bi) |
| 22 | 190 | Acme Group 1F-MS Basic Suite (15 grams; 37 elements; B dl=1 ppm, Ga dl=0.1ppm, S dl=0.02%, W dl=0.1 ppm) (v2) |
| 23 | 192 | Acme Group 1T-MS (55 elements) |
| 24 | 225 | Acme 1F-MS (B dl = 1 ppm; Ga dl = 0.1 ppm; S dl=0.01 %, W dl=0.1 ppm) |
| 25 | 229 | Becquerel INAA (35 elements, including Ti) |
| 26 | 230 | GSC/AMD (surface water) ICP-MS (51 elements) |
| 27 | 323 | OGS Geoscience Laboratories, suite IMC-100; ICP-MS, multi-acid closed vessel digestion |
| 28 | 334 | ActLabs Au+48 1H ( INAA + ICP-ES) |
| 29 | 511 | ACME (stream sediment) ICP-MS / ICP-ES (35 elements, W, d.l. = 0.2 ppm) |
| 30 | 519 | ACME (stream sediment) ICP-MS (35 elements + Au) – details unknown |
| 31 | 520 | GSC (surface water) ICP-MS (31 elements) |
| 32 | 525 | ACME (stream sediment) ICP-MS / ICP-ES (35 elements, (Ga, d.l.=0.1 ppm, S, d.l.=0.01%, W, d.l.=0.1 ppm )) |
| 33 | 528 | ACME Analytical Labs (stream sediment) ICP-MS / ICP-ES (35 elements+ Au; Ga, d.l.=0.2ppm, W, d.l.=0.2 ppm) |
| 34 | 533 | ACME (stream sediment) ICP-MS / ICP-ES (35 elements, (Ga, d.l.=0.2 ppm, S, d.l.=0.01%, W, d.l.=0.1 ppm )) |
| 35 | 534 | ACME (stream sediment) ICP-MS / ICP-ES (36 elements, (Ga, d.l.=0.2 ppm, S, d.l.=0.01%, W, d.l.=0.1 ppm )) |
| 36 | 539 | Becquerel (stream sediment) INAA (34 + Au) |
| 37 | 540 | ACME (stream sediment) ICP-MS / ICP-ES (35 elements, (Ga dl=0.1ppm, S dl=0.02%, W dl=0.1ppm)) |
| 38 | 542 | ACME (stream sediment) ICP-MS / ICP-ES (36 elements + Au; B dl=1 ppm, Ga dl=0.2ppm, S dl=0.01 %; W dl=0.2 ppm) |
| 39 | 549 | ActLabs ICP-ES 34 elements |
| 40 | 559 | GSC NASGLP modified EPA 3050B digestion / ICP-MS/ES |
| 41 | 561 | GSC NASGLP water leach ICP-MS/ES for 64 elements |
| 42 | 589 | ActLabs ICP-ES 3 elements (Ti, P, S) (part of the Ultratrace 2 aqua regia package) |
| 43 | 590 | ACME 1F-MS ICP-MS, aqua regia digestion (53 elements, (B dl=20 ppm, Ga dl=0.2 ppm, S dl=0.01%, W dl=0.1 ppm)) |
| 44 | 591 | Becquerel INAA 33 elements (missing Ag, Se; Ba dl=40 ppm) |
| 45 | 595 | Acme Laboratories ICP-AES, 34 elements, near-total 4-acid digestion |
| 46 | 596 | Acme Laboratories ICP-AES, 29 elements; aqua regia digestion |
| 47 | 602 | Chemex ICP-AES (Hg: 1 ppm, Cd:0.5, La:10) (32 elements) |
| 48 | 619 | Geoscience Labs, (OGS) MRD123 Lithogeochemical Database: ICP-MS; decomposition method unstated |
| 49 | 620 | Geoscience Labs, (OGS) MRD123 Lithogeochemical Database: wavelength-dispersive XRF of pressed powder pellets |
| 50 | 640 | pXRF (Mining Mode) |
| 51 | 643 | pXRF (Mining Mode), 40 elements reported |
| 52 | 644 | pXRF (Soil Mode), 33 elements reported |
| 53 | 645 | NL Geochemical Laboratory ICP-ES |
| 54 | 647 | BVM AQ250-EXT ICP-MS, aqua regia digestion (53 elements) |
| 55 | 653 | BVM AQ250 ICP-MS, aqua regia digestion (37 elements) |
| 56 | 691 | Acme Group 1F-MS Basic Suite (37 elements; B dl=1 ppm, Ga dl=0.2 ppm, S dl=0.01%, W dl=0.1 ppm) (v3) |
| 57 | 719 | GSC: direct-reading emission spectrophotometry (20 elements) |
| 58 | 734 | GSC: emission spectrography (26 elements) |
| 59 | 735 | GSC: DROS, lithium tetraborate fusion |
| 60 | 743 | ACME ICP-MS (Group 1F-MS Basic Suite v4, including weight; B dl=20 ppm, Ga dl=0.1 ppm, S dl=0.02%, W dl=0.1 ppm) |
| 61 | 745 | ACME 1F-MS ICP-MS, aqua regia digestion (53 elements, (B dl=20 ppm, Ga dl=0.1 ppm, S dl=0.02%, W dl=0.1 ppm)) |
| 62 | 750 | Acme/BVM VG101-EXT + REE |
| 63 | 757 | Acme Group 1F30 (2011-2013; 65 elements), ICP-MS |
| 64 | 758 | Acme Group 1T-MS (60 elements) |
| 65 | 766 | BVM AQ250 ICP-MS, aqua regia digestion (65 elements, V dl=1 ppm) |
| Index | Package ID | Package Name |
|---|---|---|
| 1 | 3 | Acme 1F-MS + LOI, Sn, F |
| 2 | 4 | Becquerel INAA (NGR) |
| 3 | 5 | GSC/AMD ICP-MS |
| 4 | 43 | ActLabs INAA + ICP-AES (19 elem) + Hg CV-AAS + Sn |
| 5 | 44 | ActLabs INAA, ICP-AES, Hg CV-AAS, ICP-MS (2001) |
| 6 | 45 | ActLabs INAA, ICP-AES, Hg CV-AAS, ICP-MS (2002) |
| 7 | 48 | ActLabs INAA + ICP-AES + Hg ICP-AES + FIMS |
| 8 | 61 | Chemex ICP-AES (Hg ppm) |
| 9 | 63 | Chemex ICP ? (1999-2000) |
| 10 | 64 | Chemex ICP ? (2001) |
| 11 | 67 | Chemex ICP-AES (Hg ppb) |
| 12 | 87 | Chemex ICP-AES (Hg ppm) (33 elements) |
| 13 | 93 | Chemex ICP-AES (Hg ppb) (31 elements) |
| 14 | 94 | Bondar Clegg ICP-AES (38 elements) |
| 15 | 96 | Chemex ICP-AES + Hg CV-AAS |
| 16 | 98 | Bondar Clegg ICP-AES (38 elements) + Hg CV-AAS |
| 17 | 104 | OGS / MRD123 miscellaneous methods |
| 18 | 105 | OGS / MRD143 miscellaneous methods |
| 19 | 107 | OGS / MRD155/Teck-Gauthier A3 miscellaneous methods |
| 20 | 110 | OGS / MRD155/Carscallen-Thornburn miscellaneous methods |
| 21 | 111 | OGS / MRD155/Munroe-Currie miscellaneous methods |
| 22 | 114 | OGS / MRD155/Ben Nevis-Katrine miscellaneous methods |
| 23 | 120 | Acme ICP-MS (1F-MS Basic Suite, with weight) |
| 24 | 121 | ActLabs INAA + ICP-AES + Hg CV-AAS + ICP-AES Sn fusion |
| 25 | 122 | ActLabs INAA + ICP-AES(20) + Hg CV-AAS + ICP-AES Sn fusion |
| 26 | 124 | ActLabs INAA + ICP-AES(20) + Hg CV-AAS + ICP-MS |
| 27 | 126 | ActLabs ICP-AES (19 elements) [UNUSED] |
| 28 | 127 | ActLabs INA, ICP-AES [UNUSED] |
| 29 | 128 | Becquerel INAA (2003-2010) |
| 30 | 129 | ActLabs (1H2 + 1G2) (v2) INAA + ICP-AES + ICP-MS + Hg CV-AAS FIMS |
| 31 | 130 | ActLabs (1H2) (v2) INAA + ICP-AES + ICP-MS |
| 32 | 139 | Acme 1F-MS Basic Suite (37 elements) 15g + REE |
| 33 | 140 | Acme 1T-MS (41 elements + 14 REEs) |
| 34 | 157 | Acme 1F-MS + Sn, F |
| 35 | 245 | OGS XRF + ICP-MS + H2O, CO2, S |
| 36 | 259 | GSC EPA3050B (modif) ICP-MS/ES |
| 37 | 261 | GSC water leach ICP-MS/ES + pH |
| 38 | 275 | ActLabs Ultratrace 2 – aqua regia (2010) (S dl = 0.001 %) |
| 39 | 276 | Acme 1F-MS (53 elements) (B dl=20 ppm, Ga dl=0.2 ppm, S dl=0.01%, W dl=0.1 ppm) |
| 40 | 277 | Becquerel INAA 33 elements (missing Ag, Se; Ba dl=40 ppm) |
| 41 | 278 | Acme ICPES near-total digestion, 34 elements |
| 42 | 279 | Acme ICPES aqua regia, 29 elements + 6 by hydride evolution |
| 43 | 284 | Chemex ICP-AES (Hg 1 ppm) (32 elements) |
| 44 | 300 | pXRF “Mining” and “Soil” modes |
| 45 | 302 | pXRF “Mining” and “Soil” modes; full suites |
| 46 | 303 | NL Geochemical Laboratory ICP-ES analysis |
| 47 | 304 | BVM AQ250-EXT + REE (65 elements) |
| 48 | 308 | BVM combined aqua regia and borate fusion suites |
| 49 | 318 | BVM combined aqua regia and borate fusion suites + FA-ICPES |
| 50 | 322 | ActLabs aqua regia ICP-ES (2003) |
| 51 | 326 | Acme ICP-MS (1F-MS Basic Suite) |
| 52 | 344 | GSC Resource Geochemistry lake sediment analysis, Bear-Slave Operation |
| 53 | 351 | Atomic emission spectrography of heavy mineral concentrates |
| 54 | 352 | GSC lithogeochemical analysis of 22 elements |
| 55 | 354 | Acme ICP-MS (1F-MS Basic Suite + 4B (Sn)) |
| 56 | 355 | Acme ICP-MS (1F 53 elements) + F (ISE) + LOI |
| 57 | 357 | Acme 1F-MS |
| 58 | 359 | Acme VG101-EXT + REE (65 elements) |
| 59 | 362 | Acme 4A-4B, 2A Leco, 1F30 (117 parameters) |
| 60 | 363 | Acme 1T-MS (46 elements + 14 REEs) |
| 61 | 463 | Acme (NGR stream sediment) ICP-MS / ICP-ES (35 elements, W, d.l.=0.2 ppm), Sn, LOI |
| 62 | 466 | Acme 1F-MS Basic Suite (37 elements) 1g |
| 63 | 471 | Acme (NGR stream sediment) ICP-MS (35+Au), LOI |
| 64 | 472 | GSC (NGR surface water) ICP-MS (31 elements), ICP-ES (7 elements) |
| 65 | 476 | Acme (NGR stream sediment) ICP-MS / ICP-ES (35 elements, W, d.l.=0.1 ppm), Sn, LOI |
| 66 | 478 | Acme (NGR stream sediment) ICP-MS/ICP-ES (35+Au), LOI |
| 67 | 482 | Acme (NGR stream sediment) ICP-MS / ICP-ES (35 elements), LOI, Sn, F |
| 68 | 483 | Acme (NGR stream sediment) ICP-MS / ICP-ES- HMC (36 elements), Sn, F |
| 69 | 485 | Acme (NGR stream sediment) ICP-MS / ICP-ES (35 elements, W, d.l.=0.1 ppm), LOI |
| 70 | 489 | Acme (NGR stream sediment) ICP-MS / ICP-ES (35 elements), LOI, Sn (LiBO2 fusion), F |
| 71 | 490 | Becquerel (NGR stream and lake sediments) INAA (34 + Au) |
| 72 | 491 | Acme (NGR stream and lake sediments) ICP-MS / ICP-ES (35 elements, Ga, d.l.=0.1; S, d.l.=0.02;W, d.l.=0.1 ppm) |
| 73 | 493 | Acme (NGR stream sediment) ICP-MS / ICP-ES (36 elements + Au, Ga, d.l.=0.2; S, d.l.=0.01;W, d.l.=0.2 ppm) |
| 74 | 497 | Acme 4A-4B, 2A Leco, 1F30, 1T-MS (177 parameters) |
| 75 | 498 | Acme 4A-4B, 2A Leco, 1F30, 1T-MS (172 parameters) |
| 76 | 500 | ActLabs 1H (Au+48) and 1C-EXP2 (Au, Pt, Pd) |
| 77 | 506 | BVM INAA |
| 78 | 507 | BVM AQ250 (65 elements) |
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