sample (source) |
analysis |
U conc. |
Th conc. |
K conc. |
comments |
|
by |
method |
|||||
|
||||||
Acrylic (-?-) (Perspex?) |
0.7 |
1.6 |
|
|
||
Acrylic (-?-) (Perspex?) |
< 10 |
< 2 |
1.39(3) |
|
||
Acrylic (Perspex) (Harris Spur Ltd) |
< 0.01 |
< 0.01 |
< 0.05 |
DRIFT inner shield |
||
Acrylic (Lucite; RAL stores) |
< 3 |
0.64 |
< 1.7 |
|
||
Acrylic (-?-) (Plexiglass) |
< 10 |
< 4 |
0.69(1) |
|
||
Acrylic (Polycast UVT 450) |
< 1.2 |
< 1.2 |
0.33(1) |
|
||
Al block (-?-) |
-120(20) |
|
||||
Al: Kryal UTH 5 (VAW) |
2.1 |
2.8 |
- |
|
||
Al sheet (-?-) |
-70(30) |
|
||||
Al tube (ICST) (used in April 92 Boulby run) |
|
|||||
Alumina (CERN, 96%) |
139 |
< 5 |
62 |
|
||
Alumina (Quartz & Silice) |
400(10) |
16.2(5) |
< 19 |
used in JCB NaI(Tl) |
||
Alumina powder, 0.3 mm |
< 46 |
< 430 |
4.7(1.8) |
Used in polishing NaI crystals |
||
Aluminized Melinex/Mylar: see Melinex |
|
|
|
|
|
|
Ano-Fol (Ano-Coil) |
25 |
110 |
10 |
Rb < 10 ppb; Lu < 5 ppb
|
||
APD (Si photodiode; from IC) |
< 1.5 |
< 7 |
< 0.6 |
K > 0.2 ? |
||
Araldite (CIBA) (twin-pack) |
- |
- |
< 2 |
|
||
Araldite (CIBA) (twin-pack) |
< 1 |
< 1 |
0.254(6) |
|
||
Araldite (CIBA) (twin-pack rapid) |
< 1.2 |
< 1.4 |
0.37(2) |
|
||
Araldite 139 (Harshaw) |
< 5 |
< 22 |
< 0.13 |
in NaI(Tl) assemblies. |
||
Araldite AV123+HV953B (Q&S) |
1.8(2) |
447(22) |
305(13) |
|
||
Araldite AW106+HV953U (Q&S) |
9.7(5) |
< 6 |
0.42(2) |
|
||
Araldite AW106+HV953U (B&K Resins) |
< 1.2 |
< 1.0 |
0.052(3) |
10:8 by weight, RAL |
||
Araldite 2014 (B&K Resins) |
< 2600 |
980(50) |
27(1) |
2:1 resin 950, HV997(?), RAL |
||
|
||||||
BaF2 (Merck low a) |
< 1000 |
< 4000 |
< 0.3 |
a ~ 5 Bq/kg |
||
Barytes (-?-) (BaSO4) |
1000(100) |
160(20) |
- |
|
||
Barytes DM/SB (Tilcon) |
- |
- |
54 |
|
||
Bicron paint, 620 |
40(b) |
100(e) |
100 |
|
||
Bicron paint, 622 |
< 10(b) |
< 10(e) |
< 10 |
|
||
Bi4Ge3O16 (-?-) |
< 60 |
< 10 |
62(9) |
|
||
Bis-MSB (NE) (scintillator) |
< 3 |
< 3 |
0.20(1) |
|
||
ZS3 Evaporite (halite) |
-
|
-
|
|
|||
ZS3 Evaporite (halite), JIF area |
15(2) |
25(2) |
1200(120) |
~ 1 g paler part of mid-JIF sample |
||
ZS3 Evaporite (halite) |
`Old' cavern |
|||||
ZS3 Evaporite (polyhalite) |
3.8 |
28 |
- |
One end of sample, limits only from other. K formss matrix |
||
Brass nuts (Clerkenwell) (used in GaAs rig) |
< 0.03 |
≤ 0.12 |
< 5 |
|||
`Brattish' sheeting (Boulby) |
40(30) |
|
||||
Brazil nuts |
2.380 × 104 |
|
||||
Brazing rod (95% Cu, 5% Sn) |
< 0.046 |
< 0.018 |
< 0.004 |
|||
Britomya C (Croxton) (CaCO3) |
- |
- |
50 |
|
||
Britomya V (Croxton) |
- |
- |
205 |
|
||
Bronze (mesh) |
< 1.5 |
< 1 |
0.49(4) |
|
||
< 3 |
< 10 |
1.5% component of modified NE226 |
||||
Butyl rubber (-?-) |
? |
100 |
|
|||
|
||||||
C6F6 (NE) |
-
|
-
|
< 10-3 |
98.5% component of modified NE226 |
||
CaF2 (Aldrich) (4N powder) |
< 20 |
< 33 |
||||
CaF2 (Aldrich) (5N crystals) |
< 16, ³ 6 |
23(3) |
- |
|
||
CaF2 (Merck) (`as mined') |
9(1) |
96(3) |
used for IR grade crystals |
|||
CaF2 (Merck) (IR grade crystal) |
< 8 |
5(1) |
|
|||
CaF2 (Merck) (`Optipur' powder) |
-
|
-
|
used (allegedly) for UV grade crystals |
|||
CaF2 (Merck) (UV grade crystal) |
< 6 |
63(7) |
|
|||
CaF2 (Merck) (UV, 0.5% Eu doped) |
< 80 |
< 1200 |
- |
|
||
CaF2 (Quartz & Silice) |
< 5 |
< 2.5 |
- |
|
||
CaF2 (Quartz & Silice) (Eu doped) |
< 5 |
< 5 |
-
|
dissolution(h) |
||
Calcite MOS 40 (Tilcon) (CaCO3) |
- |
- |
10 |
|
||
Capacitor, ceramic, 100pF |
860(120) |
|
||||
Capacitor, ceramic, 2200pF |
320(80) |
|
||||
Capacitor, ceramic, 3300pF (SGS Thomson) |
1300(350) |
|
||||
Chalk (South coast quarries) |
- |
- |
> 71(a) |
|
||
Chalk (Tidpit) |
- |
- |
42 |
|
||
CsI (BDH) |
< 30 |
< 30 |
0.62(25) |
|
||
CsI (BDH, sublimed) |
-
|
-
|
1.9 |
|
||
CsI (-?-) |
-20(10) |
|
||||
CsI (Chemstall) |
< 1900 |
< 1400 |
< 30 |
|
||
CsI (Hilger) |
< 300 |
< 110 |
< 240 |
|
||
CsI(Tl) (Hilger) |
< 800 |
< 600 |
2(1) × 103 |
|
||
CsI(Tl) (Hilger) |
-30(10) |
|
||||
Cu (APL) (0.999998?) (sample) |
< 1 |
< 1 |
< 0.001 |
|
||
Cu (APL) (0.999996) (ingot) |
< 1 |
< 1 |
0.035(1) |
|||
Cu (detector shield) |
< 0.02 |
< 0.02 |
< 0.0032 |
|||
Cu (`first' castle) |
< 3 |
< 3 |
0.015(3) |
|
||
Cu (German, via JCB) |
< 0.5 |
< 0.5 |
0.026(5) |
|
||
Cu (mesh) |
< 1 |
< 1 |
0.34(1) |
|
||
Cu C101 (RAL stores) |
|
|
|
|||
Cu C101 |
< 0.09 |
< 0.08 |
< 0.002 |
|||
Cu C101 |
< 0.5 |
< 0.5 |
< 0.01 |
|
||
Cu C103 (Outokumpu) |
< 1 |
3(1) |
0.018(1) |
|||
Cu C103 |
< 0.5 |
< 0.5 |
< 0.01 |
|
||
Cu C106 |
< 0.02 |
< 0.02 |
< 0.005 |
|||
Cu C110 (Outokumpu) |
< 1 |
2(1) |
0.035(10) |
|||
Cu, electroformed |
< 0.018 |
< 0.018 |
< 0.0029 |
|||
Cu, electroformed (Waveform) |
< 0.012 |
< 0.013 |
11(2) |
|||
Cu, electroformed (Waveform) |
< 0.012 |
< 0.011 |
< 0.0056 |
|||
Cu (-?-) |
< 0.015 |
< 0.016 |
0.050 |
|||
Cu |
< 0.5 |
< 0.5 |
< 0.01 |
ZEPLIN II vessel |
||
Cu used in brazing 2 kg NaI cooled castle assembly |
< 0.005 |
< 0.004 |
< 0.01 |
Rb 2.6 ppb |
||
Cu(90)Ti(10) alloy |
2.0(2) |
70(7) |
3.5(4) |
possible high-strength alloy for ZEPLIN vessels |
||
Cu alloy swarf ( |
< 0.5 |
< 0.5 |
≤ 0.5 |
swarf from US ZEPLIN-II vessel |
||
CS2 |
< 0.0006 |
< 0.001 |
-
|
(29/11/05) Fresh CS2 from SIgma Aldrich for DRIFT |
||
|
||||||
Diamond paste, 0.25 mm
|
< 31 |
114(34) |
< 5.8 |
Used in polishing NaI crystals |
||
Diamond paste, 10 mm
|
< 33 |
61(23) |
< 5.1 |
Used in polishing NaI crystals |
||
Dolomite (Cookson) |
- |
- |
23 |
|
||
Dolomite ( |
-
|
-
|
14 |
|
||
Dolomite (Tilcon, ex Raisby) |
? |
- |
- |
200 |
high in Ca |
|
Dolomite ( |
-
|
-
|
< 100 |
|
||
|
||||||
Eccobond 45 (Harshaw) |
400(30) |
1550(40) |
5220(130) |
in `bad' NaI(Tl) assembly. |
||
Elvalloy (-?-) |
? |
70(27) |
|
|||
Emery cloth, P600 |
< 67 |
< 170 |
< 1.3 |
Used in polishing NaI crystals |
||
Epicure 3800 / CY221 (Quartz & Silice) |
9(2) |
< 4 |
< 0.26 |
high in Na |
||
Epotek 301 (Hilger) |
< 30(b) |
< 80(e) |
< 70 |
|
||
Epotek 301 (Hilger) |
< 3 |
24(1) |
surface contamination |
|||
Epotek 301 (Quartz & Silice) |
< 3 |
< 5 |
0.59(2) |
|
||
Epotek 301 (Quartz & Silice) |
< 1.2 |
< 2 |
0.034(2) |
Batch 2322 |
||
Epotek 302 |
< 1 |
< 1.2 |
0.021(1) |
optical coupling |
||
Epotek 310 (Hilger) |
< 30(b) |
< 80(e) |
< 70 |
|
||
Epotek 310 (Hilger) |
< 2 |
< 4 |
0.47(1) |
|
||
Epotek 310 (Hilger) |
< 1.2 |
< 1.7 |
0.42(1) |
|
||
Epoxy resin (NE 581) |
< 0.5 |
< 0.9 |
< 0.008 |
optical coupling |
||
|
||||||
Filler, black (Hilger) |
< 30 |
< 27 |
< 1.4 |
may be used in resins |
||
Filler, white (Hilger) |
< 11 |
< 10 |
170(4) |
ditto |
||
Fluorspar (Tilcon) (CaF2) |
|
|
|
|
|
|
Furnace lining (-?-) |
6560(50) |
|
||||
|
||||||
GaAs (-?-) |
< 2 |
< 0.2 |
< 0.002 |
|||
GaAs (MCP) |
< 0.5 |
< 0.5 |
< 0.002 |
|
||
Glass, B47.2 |
180(20) |
|
||||
Glass, Duran 8830 |
2000(30) |
|
||||
Glass, Hamamatsu PM (n) |
-
|
-
|
150(15) |
error estimates based on < 10% observed error in `quality control' samples |
||
Glass, Hamamatsu PM (n) |
-
|
-
|
120(25) |
errors (except U) based on analyst's estimate of 20% |
||
Glass, |
870(30) |
|
||||
Glass, Pyrex (EMI) |
-50(20) |
|
||||
Glass, Schott 8245 |
290(50) |
|
||||
Glass, Schott 8246 |
-50(20) |
|
||||
Glass, Soveril |
2.28(0)×104 |
|
||||
Gorilla Braid |
< 0.2 |
< 3 |
|
fishing line |
||
Granite (-?-) |
1.62(0)×104 |
|
||||
|
(15/07/05) Cross check sample: used by SNO for calibrating
background radiation measurements. |
|||||
|
||||||
H3BO3 |
< 1 |
< 1 |
< 0.1 |
|
||
|
||||||
|
||||||
Kapton film (-?-) |
< 8 |
< 9 |
1.9(1) |
|
||
|
||||||
LDPE (commercial grade: QX-D) |
< 0.5 |
< 5 |
< 0.3 |
(Low Density PolyEthylene) |
||
LDPE (neutron shielding grade: A) |
< 0.5 |
< 4 |
< 0.2 |
|
||
LiF (BDH) |
< 5 |
< 7 |
< 0.1 |
|
||
LiF (BDH) (sublimed) |
< 6 |
< 7 |
< 0.1 |
two samples |
||
Limestone (-?-) |
-70(20) |
|
||||
Limestone (ex Raisby) |
- |
- |
42 |
|
||
Limestone (ex Stainton) |
? |
- |
- |
30 |
|
|
|
||||||
Magnesite (Tilcon) (MgO) |
- |
- |
95 |
|
||
Marble (Tilcon) |
-
|
-
|
11 |
|
||
Marine basalt (Fawcett) |
? |
- |
- |
7000 |
|
|
Melinex/Mylar, aluminized (AS) |
20(20) |
12 µm sheet |
||||
Melinex/Mylar, aluminized (RAL stores) |
< 1000 |
< 2000 |
3.0(3) |
high in Sb; 50 µm |
||
Melinex/Mylar, aluminized (Oxford Instruments) |
< 0.2 |
< 3 |
|
|
||
Metal polish (Carr, Day, Martin) |
170(35) |
1200(150) |
790(140) |
RAL stores |
||
Mg alloy (Ortec Ge detector) |
0.5 |
61 |
< 0.02 |
proposed housing |
||
|
||||||
NaI (BDH, sublimed) |
-
|
-
|
3500 |
|
||
NaI (Hilger) |
- |
- |
71(11) |
Boulby test: > 60 ppm |
||
NaI (Hilger) |
< 0.3 |
< 1 |
0.19(7) |
Boulby test |
||
NaI (Quartz & Silice) |
< 0.3 |
< 1 |
0.07(6) |
Boulby test |
||
NaI ingot AF/25/7390, `top' (Hilger) |
-
|
-
|
18.4(3) |
|
||
NaI ingot AF/25/7390, `bottom' (Hilger) |
-
|
-
|
51.3(5) |
|
||
NaI ingot AF/25/7390, `residue' |
- |
- |
24.3(5) |
|
||
NaI (Hilger) |
- |
- |
0.60(5) |
used for ingot AF/25/7390 |
||
NaI(Tl) (Harshaw) (boule 1) |
GES? |
- |
- |
0.3 |
|
|
NaI(Tl) (Harshaw) (boule 2) |
GES? |
- |
- |
0.3 |
|
|
NaI (low Tl) (Hilger) |
< 3 |
< 2 |
14(4) |
|
||
NaI(Tl) (Hilger) |
< 3 |
< 3 |
950(80) |
|
||
NaI processed by QMW (k) |
< 0.006 |
< 0.009 |
|
Report to John Eddington definitely states LODs of 6pg/g, 9 pg/g. However, I suspect these should be ng/g, since claimed sensitivity isn't attained in any other samples except following enrichment. |
||
Naphthalene (NE) (scintillator) |
< 3 |
< 6 |
0.085(3) |
|
||
Nb (single crystal) |
< 0.29 |
< 0.28 |
< 0.037 |
|||
Nb wire |
< 0.064 |
< 0.054 |
0.15 |
|||
NE118 (NE) (plastic scintillator) |
< 2 |
< 2 |
< 0.13 |
|
||
NE224 (NE) (pseudocumene-based) |
< 1.5 |
< 6 |
< 0.117 |
|
||
NE224 (NE) (pseudocumene-based) |
< 0.02 |
< 0.02 |
0.0035 |
(concentrated by evaporation) |
||
NE226, mod (NE) (C6F6 -based) |
< 0.007 |
< 0.013 |
-
|
|||
NE581: see epoxy |
|
|
|
|
|
|
NE588: see silicone |
|
|
|
|
|
|
NiCu (Le Bronze Industriel) |
3.7(4) |
0.37(4) |
< 0.01 |
(2/05) Possible new alloy |
||
Ni pellets (from carbonyl) |
< 0.032 |
< 0.022 |
< 0.013 |
|||
Ni (electroformed from pellets from carbonyl) |
0.20(4) |
< 0.076 |
< 0.0074 |
|||
Noryl engineering plastic |
70 |
|
70 |
|
||
|
|
|
|
|
|
|
|
||||||
|
||||||
Paint, reflective (Eljen EJ-520): sample 1 |
(15/07/05) ZEPLIN-II |
|||||
Paraffin wax, borated |
6.4(13) |
4(1) |
-
|
(15/07/05) ZEPLIN-II: top neutron shielding |
||
Pb (Associated Lead) |
< 0.07 |
< 0.06 |
< 0.001 |
|||
Pb (Boliden) |
2(1) |
10(4) |
< 0.02 |
85Rb 18(4) ppb; 87Rb
18(1) ppb; |
||
Pb (Calder) |
< 0.1 |
< 0.1 |
< 0.01 |
|
||
Pb (GEC shielding) |
< 1 |
< 1 |
0.004(1) |
|
||
Pb (ICST) |
|
|
|
|||
Pb (RAL `B2') |
< 0.7 |
< 0.5 |
< 0.01 |
|
||
Pb ( |
< 0.1 |
< 0.1 |
||||
Pb ( |
< 0.4 |
< 0.03 |
< 0.003 |
|||
Pb ( |
< 0.1 |
< 0.03 |
0.85 |
|||
Pb (Victorian, |
< 110 |
< 240 |
< 4 |
|
||
PCB (-?-) |
990(120) |
|
||||
PCB (Electron Tubes) |
380(76) |
1100(220) |
-
|
(19/10/04) PCB for ZEPLIN-II PMTs. Note the mentioning of PCB resistor in the report is wrong and the results refer to the whole board. |
||
Perspex: see acrylic |
|
|
|
|
|
|
Phosphor-bronze (Cu 95%, Sn 4%, P 1%) (`old' sample) |
< 0.1 |
< 0.1 |
< 0.01 |
|||
Phosphor-bronze (Cu 95%, Sn 4.7%, Zn, P 0.04%) (GaAs rig contacts) |
< 0.03 |
< 0.03 |
0.5 |
|||
Phosphor-bronze (Cu 94%, Sn 5.2%, P 0.05%, Zn 0.04%) (GaAs repeat) |
< 0.06 |
< 0.06 |
1.0 |
|||
Phosphor-bronze (Cu 96%, Sn 4.4%, P 0.06%) (`old' sample repeat(?)) |
0.8 |
0.8 |
0.6 |
|||
Pipe insulation/lagging (Armaflex) |
52(5) |
10(5) |
< 30 |
|||
Platinum sensors, PT100 (Hereaus) |
< 4 × 104 |
< 9.5 × 104 |
2250(75) |
(mostly alumina) |
||
Plasterboard: sample 1 |
(29/07/05) Plasterboard in the JIF area. |
|||||
Plywood (sample 1) |
0.46(9) |
0.79(16) |
-
|
(07/11/04) Boulby floor plywood that will cover the DRIFT-II underfloor shielding. |
||
Plywood (sample 2) |
0.67(13) |
4.3(9) |
-
|
(07/11/04) Boulby floor plywood that will cover the DRIFT-II underfloor shielding. |
||
PM bulb (Hamamatsu R5912)(m) |
81 |
74 |
97 |
|
||
PM bulb (Hamamatsu R7081)(m) |
537 |
36 |
122 |
|
||
PM tube (Burle 5") |
≤ 200 |
≤ 200 |
~ 2000 |
assume 100g glass. |
||
PM tube, ceramic (EMI) `small' |
~ 200? |
~. 200? |
50(50) |
U + Th 400 ppm |
||
PM tube, ceramic (EMI) `large' |
~ 250? |
~ 250? |
|
U + Th 500 ppm |
||
PM tube, low b/g (EMI) |
GES? |
250(40) |
200(50) |
90(40) |
|
|
PM tube, low b/g (EMI 5"; 9390B53) |
|
27(20) |
33(8) |
74(16) |
|
|
PM tube (ET 9823B)(o) |
245(9) |
280(9) |
340(17) |
|
||
PM tube (ET 9823QB)(o) |
215(13) |
240(13) |
1400(110) |
quartz window |
||
PM tube, 8" (ET 9354B)(o) |
30(17) |
30(10) |
70(17) |
low b/g |
||
PM tube (Hamamatsu R1250)(m) |
307 |
306 |
17900 |
|
||
PM tube (Hamamatsu R1250)(m) |
309 |
306 |
464 |
" |
||
ZS3 Evaporite (polyhalite): sample 1 |
< 1 |
< 5 |
Matrix |
(3/05) Two samples for possible new cavern |
||
Polypropylene balls |
0.14(1) |
< 0.1 |
ashed and digested; neutron shielding. 0.1 ppb Sm |
|||
Polypropylene netting (on ends of 5 kg detector) |
< 16 |
< 25 |
4.5(4) |
|
||
Polypropylene - pellets |
0.13(3) |
< 0.05 |
-
|
DRIFT-II pellets for shielding (Manufacturer: Albis) |
||
Polypropylene - pellets 2nd batch: sample 1 |
(29/07/05) Polypropylene pellets (2nd batch) for DRIFT-II shielding. |
|||||
Polypropylene - sheet |
0.12(2) |
< 0.05 |
-
|
DRIFT-II sheet for shielding (Manufacturer: ISPL) |
||
Polythene (grey, barrel, |
< 0.3 |
0.69 |
2.0 |
|||
Polythene (grey, granules, |
|
|
|
|||
Polythene (white, barrel, |
< 7 |
< 4 |
1.6 |
Th sensitivity limited by high Co content |
||
Polythene (white, granules, |
< 330 |
|||||
Polythene rope (for netting) |
4(27) |
|
||||
POPOP (NE) (scintillator) |
< 4 |
< 5 |
0.85(3) |
|
||
PPO (NE) (scintillator) |
< 3 |
< 3 |
0.48(1) |
|
||
P-terphenyl (NE) (scintillator) |
< 3 |
< 5 |
0.25(1) |
|
||
PTFE: sample 1 |
(13/06/05) ZEPLIN-II |
|||||
PTFE block (-?-) (liq. scint. cell) |
< 0.8 |
< 0.8 |
18(1) |
surface contamination |
||
PTFE block (-?-) |
- |
- |
< 9 × 10-4 |
above, surface layer removed |
||
PTFE clips |
< 1.7 |
< 1.7 |
0.25(1) |
in GaAs rig |
||
PTFE plumber's tape (RAL) |
< 1 |
3(1) |
0.288(8) |
|
||
PTFE sheet, foamed (Gortex) |
< 2 |
< 2 |
0.82(3) |
Hilger wrapper |
||
PVC adhesive tape (RAL stores) |
< 1500 |
< 1600 |
30(2) |
(black tape) |
||
|
||||||
Quartz flour (Tilcon) |
? |
- |
- |
≤ 330 |
K2O + Na2O 400ppm |
|
Quartz powder (-?-) |
110(30) |
|
||||
|
||||||
Resin (Magnex, 2:1 Thiokol 308) (RAL) |
18(2) |
59(2) |
0.78(2) |
|
||
Resin (Magnex, 1:1 Versamid 840) (RAL) |
17(2) |
65(2) |
0.52(1) |
|
||
Resistor (Allen-Bradley) |
50(30) |
160(110) |
7(120) |
< 20g sample |
||
Resistor (Allen-Bradley) |
275(20) |
500(15) |
310(10) |
without leads |
||
Resistor, 1 MW (Croster, C film) |
700(170) |
|
||||
Resistor, 1 MW (Dale, metal film) |
130(500)(e) |
1200(300) |
|
|||
Resistor, 1 MW (Welwyn, met. film) |
790(230) |
|
||||
Resistor, 1 MW (Kamaya, C core) |
1100(230) |
|
||||
Resistor, 1.2 MW (Philips, metal on ceramic) |
820(180) |
|
||||
Resistor components: SnPb |
~ 5 |
ZEPLIN-II |
||||
Resistor components: Blue ceramic |
ZEPLIN-II |
|||||
Rexalite (PCB?) (-?-) |
< 1 |
< 1 |
7.2(2) |
|
||
Rexalite (Cu removed) |
< 3 |
< 1 |
8.9(2) |
|
||
|
||||||
ZS3 Evaporaite (halite) (cavern wall) |
-
|
-
|
|
|||
Salt (BSL, pure dried vacuum) |
? |
- |
- |
< 240 |
|
|
Salt (ICI granulated) |
- |
- |
< 10 |
|
||
Salt (ICI, pure dried vacuum) |
-
|
-
|
15 |
Co, Cs, I, Sr: all < 90 kru |
||
Salt (WIPP cavern wall) |
440(80) |
970(260) |
4870(60) |
|
||
Sand (BIS) |
? |
- |
- |
80 |
|
|
Si |
< 1 |
< 1 |
< 0.22 |
|||
Si (Topsil HP) |
< 5 |
< 4 |
< 0.02 |
|
||
Si photodiode (APD; from IC) |
< 1.5 |
< 7 |
< 0.6 |
K > 0.2 ? |
||
Sifsilcopper 968 (Sifbronze) |
< 0.033 |
< 0.025 |
0.028 |
|||
Silatin (RBH) (quartz + kaolite) |
? |
- |
- |
≤ 1700 |
K2O + Na2O 0.2% |
|
Silfos (Ag, Cu, Sn solder) |
< 0.05 |
< 0.05 |
< 0.04 |
|||
Silica (Cookson) |
? |
- |
- |
250 |
`ground Loch Aline sand' |
|
Silica (Heraeus, `Herasil', etc.) |
NAA? |
- |
- |
0.8 |
|
|
Silica (Heraeus, `Suprasil') |
0.01 - 0.2 |
0.01 - 0.2 |
0.01 |
|
||
Silica (RBH) |
? |
- |
- |
750 |
Welsh, quarried |
|
Silica fibre (TSL, `Spectrosil') |
? |
- |
- |
0.03 |
|
|
Silica fibre (TSL, `Vitreosil') |
? |
- |
- |
1.1 |
|
|
Silica flour CW 5/300 (Tilcon) |
? |
- |
- |
5800 |
|
|
Silica rod (TSL, Spectrosil B) |
< 1.0 |
< 1.2 |
0.016(1) |
|
||
Silica rod (TSL, Vitreosil B) |
< 1.0 |
< 1.6 |
0.103(3) |
`good' quality |
||
Silica rod (TSL, Vitreosil M) |
< 1.0 |
< 1.5 |
0.134(4) |
`medium' quality |
||
Silica sand (Blubber house) |
? |
- |
- |
3.3 × 104 |
|
|
Silica sand (Tilcon) |
? |
- |
- |
5300 |
|
|
Silicone (Harshaw, `Sylgard') |
< 2 |
< 10 |
1.0(1) |
|
||
Silicone compound (Dow Corning M 54) |
< 1 |
< 1 |
0.21(2) |
optical coupling |
||
Silicone elastomer (Dow Corning 732 RTV) |
< 1 |
< 2 |
2.30(6) |
optical coupling |
||
Silicone elastomer (Nusil CV1142) |
< 1 |
< 1 |
0.193(5) |
low temperature sealant |
||
Silicone grease, DC/200/500000 (IC) |
< 5 |
< 3 |
0.69(2) |
Dow-Corning |
||
Silicone grease, DC/200/500000 (IC) |
< 1 |
< 1.7 |
0.099(2) |
from previously unused 250g bottle |
||
Silicone grease (Dow Corning 3145 RTV) |
< 1 |
< 1 |
1.2(1) |
optical coupling |
||
Silicone grease (Dow Corning) (h = ?) |
< 1 |
< 1 |
0.02(1) |
optical coupling |
||
Silicone grease (Nusil S-7400) (h = 106 ) |
< 1 |
< 2 |
1.55(4) |
optical coupling |
||
Silicone oil (NE 588) (h = ?) |
< 1 |
< 1.2 |
< 0.01 |
optical coupling |
||
Silicone oil (Rhône Poulenc) (h = 6 × 105) |
< 1 |
< 1.6 |
3.4(1) |
optical coupling |
||
Silver solder |
< 0.10 |
< 0.072 |
< 0.013 |
|||
SnCu |
< 5 |
< 1 |
0.26(3) |
(2/05) Sn99%Cu1% lead free solder |
||
Snowcal 20 (Croxton) (CaCO3) |
- |
- |
85 |
|
||
Snowcal 60 (Croxton) |
- |
- |
130 |
|
||
Solder (Farnell) |
110(20) |
|
||||
Steel |
< 1 |
0.4 |
1.1 |
|||
Steel (hundred-year-old) (ex |
< 0.4 |
1.3 |
0.32 |
|||
Steel (mild) |
< 60(c) |
< 100(d) |
|
|||
Steel (mild, I-beam) |
0.45(0.04) |
0.45(0.04) |
< 0.01 |
(21/10/04) Possible support for DRIFT-II floor |
||
Steel (scaffold) |
< 160(c) |
< 150(d) |
|
|||
Steel (sheet) |
< 160(c) |
< 150(d) |
|
|||
Steel (stainless 304, wire, 100mm dia) |
1.5(3) |
5(1) |
≤ 0.2 |
DRIFT-I grid wire |
||
Steel (stainless 304) |
3.2(3) |
3.6(4) |
≤ 0.15 |
|
||
Steel (stainless 304L) ( |
0.6(1) |
0.7(1) |
≤ 0.26 |
Tested as possible DRIFT-II vessel |
||
Steel (stainless 316L, block) ( |
≤ 0.06 |
(10/03) DRIFT-I vessel (manf: Portabello) |
||||
Steel (stainless 316L) ( |
< 0.5 |
2.0(2) |
≤ 0.32 |
Tested as possible DRIFT-II vessel |
||
Steel (stainless 316L) |
1.3(1) |
1.7(2) |
≤ 0.10 |
|
||
Steel (stainless, body) ( |
0.81(8) |
0.51(5) |
< 0.05 |
(14/10/04) DRIFT-II vessel, main body (Manufacturer: Royal Welding) |
||
Steel (stainless, cryogenic) |
3 |
2 |
0.10 |
|||
Steel (stainless, frame) ( |
0.37(4) |
1.6(2) |
< 0.05 |
(14/10/04) DRIFT-II vessel, frame (Manufacturer: Royal Welding) |
||
Steel (stainless, hinge) ( |
5.7(6) |
3.9(4) |
≤ 0.15 |
(14/10/04) DRIFT-II vessel, hinge (Manufacturer: Royal Welding) |
||
Steel (stainless, mesh) |
< 4 |
< 4 |
0.195(7) |
|
||
Steel (stainless, rod) ( |
0.24(2) |
0.24(2) |
< 0.05 |
(14/10/04) DRIFT-II vessel, welding rod (Manufacturer: Royal Welding) |
||
Steel (stainless, wire, 20mm dia) |
< 0.5 |
< 0.5 |
≤ 0.4 |
|
||
Steel (stainless, wire, 100mm dia) |
< 0.5 |
< 0.5 |
≤ 0.05 |
|
||
Steel, stainless ( |
< 2 |
< 8 |
- |
for ZEPLIN II grid wires |
||
Steel, stainless ( |
≤ 0.31 |
ZEPLIN II vacuum jacket (samples from 3 different lifting lugs) |
||||
Sugar (W. Indies cane) |
- |
- |
13 |
|
||
Sulquisa (Tilcon) (Na2SO4) |
- |
- |
9 |
|
||
|
||||||
Talc RB 143 (Tilcon) (Mg3Si4O10(OH)2) |
? |
- |
- |
80 |
350 mesh powder |
|
Tensol perspex cement |
< 1 |
< 1 |
< 0.04 |
in light-guides |
||
Thermocouple connectors |
330(130) |
in Xe system |
||||
Tl metal, 6N (BDH) |
< 30 |
< 30 |
0.3 |
|
||
TlBr (-?-) |
130(15) |
800(90) |
0.22(1) |
|
||
TlBr, from 5N Tl (BDH) |
< 30 |
100 |
3 |
|
||
TlBr, from 6N Tl (BDH) |
< 30 |
< 30 |
0.3 |
|
||
TlI (Hilger) |
- |
- |
1.24(35) |
|
||
Trucarb 299 (Tilcon) |
- |
- |
34 |
carboniferous limestone |
||
|
||||||
|
||||||
Varnish (GE) |
< 6(15) |
includes container |
||||
|
||||||
W(72)Cu(28) alloy |
130(13) |
0.7(1) |
2.8(3) |
possible high-strength alloy for ZEPLIN vessels |
||
Water (Boulby tank) |
4 × 10-4 |
< 5 × 10-5 |
-
|
Feb 92 |
||
Water (Boulby tank) |
? |
- |
7(2) × 10-4 |
- |
Nov 91 |
|
Water (Boulby tank) |
- |
- |
0.210(3) |
~ 10 µS; Feb 93 |
||
Water (Boulby tank) |
- |
- |
0.058(4) |
~ 2 µS; Feb/Mar 93 |
||
Water (Boulby tank) |
- |
- |
0.027(3) |
1.1 µS; Mar 93 |
||
Water (Boulby tank) |
- |
- |
0.012(?) |
1.3 µS; Apr 93 |
||
Water (Boulby tank) |
< 0.01 |
< 0.01 |
0.0160(5) |
1.4 µS; May 93 |
||
Water, distilled (Analar) |
- |
- |
0.011(3) |
|
||
Water, distilled (Analar) |
< 0.008 |
< 0.009 |
0.0084(2) |
|
||
Water, distilled (Analar), contaminated |
- |
- |
2.00(3) |
one (unwashed) hand immersed 60s in 1 |
||
Water (Fisons demin) |
4 × 10-4 |
10-4 |
-
|
|
||
Water (`blind' sensitivity test: 75% Analar, 25% Feb 93 tank water) |
- |
- |
0.065(3) |
expect 0.062(2) |
||
Water (RAL demin) |
-
|
-
|
< 0.1 |
|
||
WIPP cavern wall |
440(80) |
970(260) |
4870(60) |
|
||
Wollastonite (Tilcon) (CaSiO4) |
? |
- |
- |
830 |
|
|
Wood (Boulby floor supports) |
< 400(b) |
< 250(d) |
1000(600) |
|||
Wood (DRIFT-II; Boulby floor supports) |
4.2(8) |
3.8(8) |
-
|
DRIFT-II wooden beam supports for floor pallet |
||
Wood (RAL; Boulby floor) |
< 60(b) |
< 100(d) |
< 1000 |
|||
|
||||||
ZnWO4 (-?-) |
< 3 |
< 2 |
< 0.05 |
|
Analysis methods: |
|
A: IC |
|
E: Charles Evans/Cascade Scientific |
|
H: Harwell (AEA Technology) |
|
|
|
|
|
U: |
|
Notes:
K extraction by H2O - may be incomplete (where both acid and H2O extraction have been tried, K levels with acid are typically twice those with H2O). |
|
from 214Bi g count, U chain assumed in equilibrium (JCB uses other lines to enhance statistics). |
|
from 226Ra g count, U chain assumed in equilibrium. |
|
from 228Ac g count, Th chain assumed in equilibrium. |
|
from 208Tl g count, Th chain assumed in equilibrium (JCB uses other lines to enhance statistics). |
|
a-count < 0.01
cph cm-2 (Ritala, Johnson
Matthey, |
|
Harwell tests on CaF2 are exploratory. HCl leach gives minimal contamination, but may be incomplete; complete solution (in boric acid) gives poor sensitivity. |
|
Harwell now dissolve CaF2 in nitric/perchloric acid mixture, with improved sensitivity. |
|
ICI now acknowledge that the K positives reported in Issue 1 of this document were in fact largely due to Ca. It is difficult to separate the (weak) Ca line from the K line, so I take the previously reported values as upper limits. |
|
Uranide removal as part of KARMEN programme. |
|
Measurements reported as Bq/kg or (raw) counts/1000s/100g. My conversions to ppm (mg/g) or ppb (ng/g), with certain assumptions - details here (Excel). |
|
Manufacturer's reported Bq/kg convert to: 80 ppb U, 74 ppb Th, 100 ppm K. Manufacturer claims "16 ppb 40K", which corresponds to 140 ppm K. |
|
Manufacturer's itemized report here (Excel). |
|
Two runs: 0.87, 0.74 for U; 0.14 Th for both. |
Other remarks:
Internal Use Only!