 |
1. Direct Reading Scale.
In this type, the colorimetric stain varies in length
proportional to the amount of gas or vapor being measured.
The concentration is read directly off a scale etched
on each tube.
2. Chart Comparison Tubes. This type works similar to the direct reading
type above. A sample is taken and the stain length is
compared to a printed concentration chart enclosed with
each box of tubes.
3. Color Comparison Tubes. In this type, the intensity of color change,
rather than the length of stain, is compared to a standard
color chart.
4. Multi-Part Tube Sets. The
multi-part tube sets use a pre-treat or primary reaction
tube in addition to the detector tube. The front-end
tube scrubs the sample air of either moisture or potentially
interfering gases, which might otherwise cause erroneous
results. |
Toxic Gas Detector System
- Complete, easy-to-use sampling and analysis system
- Detects and measures hazardous gases and vapors
- Certified by the Safety Equipment Institute (SEI)
- Ideal for monitoring performance of Terra Exhaust Purification
Filters
- The most cost effective solution to air sampling and analysis
This Toxic Gas Detector System is an ideal, easy-to-use method
for day-to-day gas checking. It allows effective monitoring
of exhaust purification filter efficiency. It also provides
a valuable aid to QC in the lab, plant or office and spot
testing for a wide variety of hazardous gases and vapors.
This low-cost, portable system consists of two components:
detector tubes detect specific vapors; and a precision sampling
pump draws an air sample through the detector tube. One sample
is all that is needed for most analyses, compared to other
devices that require that you keep track of multiple strokes
and introduce the possibility of operator error.
More than 200 detector tubes are available to measure a wide
variety of hazardous gases and vapors. Each is formulated
with high purity reagents that absorb and react with the gas
or vapor being measured. The reaction causes a colorimetric
stain which corresponds in length to the concentration of
the gas or vapor being measured. Four types of tubes provide
the needed flexibility for different gases and sampling conditions.
Operation is Simple
Only three easy steps are needed to operate the detector:
first, you break off the tips of a fresh detector tube;
second, you insert the tube, with arrow pointing toward
the pump, into the pumps inlet; third, you pull
out the pump handle to automatically lock, and the pump
begins to draw a 100cc sample through the detector tube.
A proprietary Sample Vue indicator shows when sampling
is completed. More detailed information is on an instruction
card enclosed with each pump and box of detector tubes.
The precision sampling pump is certified by the Safety
Equipment Institute (SEI). |
|
Break tips in pump's tip cutter

|
Insert tube into pump's sample inlet

|
Pull out the pump handle to draw a 100cc sample

|
|
| Ordering Information |
 |
Cat.
# |
$/Each |
Toxic Gas Detector Kit
Includes pump, maintenance items and carrying case. Tubes not included. |
9002-00 |
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Replacement
Rubber Inlet
Flange and Ring |
9002-02 |
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| 5
Meter Extension Hose (with tube holder) |
9002-04 |
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| 10
Meter Extension Hose (with tube holder) |
9002-05 |
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| Air
Flow Indicator Kit (with aspirator bulb, case
and one box of Air Flow Indicator Tubes) |
9002-06 |
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|
|
Detector
Tube Ordering Information
See chart below |
| Notes |
(1) |
Tubes are packed
ten per box unless otherwise indicated. |
| |
(2) |
Measuring range
is in parts per million unless otherwise indicated. |
| |
(3) |
Each tube tests
for both NO (10-300 ppm) and NO2 (1- 40 PPM). Cat. No.
9003-88 is for air sampling, 9003-89 is for hot flue gases
(with pre-treat tubes to dehumidify). Each box has tubes
for 5 tests. |
Substance
to
Measured:
Acetaldehyde
to Copper Ion |
Measuring
Range
(PPM) |
Cat.
# |
$/Each |
| Acetaldehyde |
0.004-1% |
9002-07 |
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|
| Acetaldehyde |
5-140 |
9002-08 |
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|
| Acetic
Acid |
1-50 |
9002-09 |
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|
| Acetone |
0.1-5.0% |
9002-10 |
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|
| Acetone |
0.01-4.0% |
9002-11 |
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|
| Acetone |
100-5000 |
9002-12 |
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|
| Acetylene |
50-1000 |
9002-13 |
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|
| Acrolein |
0.005-1.8% |
9002-14 |
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|
| Acrylonitrile |
0.1-3.5% |
9002-15 |
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|
| Acrylonitrile |
10-500 |
9002-16 |
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|
| Acrylonitrile* |
1-120 |
9002-17 |
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|
| Acrylonitrile |
0.25-20 |
9002-18 |
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|
| Ammonia |
0.5-10.0% |
9002-20 |
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|
| Ammonia |
50-900 |
9002-21 |
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|
| Ammonia |
5-260 |
9002-22 |
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|
| Ammonia |
0.2-20 |
9002-23 |
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|
| Ammonia |
0.5-30% |
9002-24 |
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|
| Ammonia |
0.1-1.0% |
9002-25 |
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|
| Aniline |
1-30 |
9002-26 |
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|
| Arsine |
5-160 |
9002-27 |
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|
Benzene
in
presence
of
gasoline and/or other
aromatic
hydrocarbons * |
5-200 |
9002-29 |
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|
| Benzene |
1-100 |
9002-30 |
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|
| Bromine |
1-20 |
9002-31 |
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|
| Butadiene |
0.03-2.6% |
9002-32 |
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|
| Butadiene |
30-600 |
9002-33 |
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|
| Butadiene |
2.5-100 |
9002-34 |
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|
| n-Butane |
0.05-0.6% |
9002-35 |
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|
| 2-Butanol |
4-300 |
9002-37 |
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|
| Butyl
acetate |
15-400 |
9002-39 |
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|
| Butyl
acrylate |
5-60 |
9002-40 |
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|
| Carbon
dioxide |
.01-.7% |
9002-42 |
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|
| Carbon
dioxide |
0.1-2.6% |
9002-43 |
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|
| Carbon
dioxide |
0.05-1.0% |
9002-45 |
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|
| Carbon
dioxide |
1.0-20.0% |
9002-47 |
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|
| Carbon
dioxide |
5-50% |
9002-48 |
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|
| Carbon
disulfide* |
30-500 |
9002-49 |
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|
| Carbon
monoxide |
10-1000 |
9002-51 |
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|
| Carbon
monoxide |
10-250 |
9002-52 |
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|
| Carbon
monoxide |
0.1-2.0% |
9002-53 |
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|
| Carbon
monoxide |
0.1-20% |
9002-54 |
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|
| Carbon
monoxide |
10-1000 |
9002-55 |
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|
Carbon
monoxide
in
presence of ethylene
and
nitrogen oxides |
10-100 |
9002-56 |
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|
| Chloride
Ion |
10-2000 |
9002-61 |
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|
| Chloride
Ion |
3-200 |
9002-62 |
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|
| Chlorine |
1-40 |
9002-63 |
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|
| Chlorine |
0.1-10 |
9002-64 |
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|
| Chlorine |
0.05-2 |
9002-65 |
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|
| Free
residual chlorine |
0.4-5 |
9002-66 |
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|
| Chlorine
dioxide |
1-20 |
9002-67 |
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|
| Chlorobenzene |
5-140 |
9002-68 |
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|
| Chloroform* |
70-500 |
9002-69 |
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|
| Chloropicrin* |
0.1-16 |
9002-70 |
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|
| Chloroprene |
0.5-32 |
9002-71 |
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|
| Copper
Ion |
1-100 |
9002-72 |
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|
| Cyanide
Ion |
.2-5 |
9002-74 |
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|
| Cyclohexane |
0.01-0.6% |
9002-75 |
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|
| Cyclohexanol |
5-500 |
9002-76 |
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|
| Cyclohexanone |
2-100 |
9002-77 |
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|
| o-Dichlorobenzene |
5-100 |
9002-79 |
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|
| p-Dichlorobenzene |
10-150 |
9002-80 |
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|
| 1,1
Dichloroethane* |
10-160 |
9002-81 |
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|
| 1,2
Dichloroethane* |
5-50 |
9002-82 |
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|
| 1,2
Dichloroethylene* |
5-400 |
9002-84 |
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|
| Dichloromethane* |
30-1000 |
9002-85 |
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|
| 1,3
Dichloropropane* |
10-500 |
9002-86 |
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|
| Diethyl
ether |
0.04-1.4% |
9002-88 |
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|
| Diethyl
ether |
20-400 |
9002-89 |
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|
| Dimethyl
ether |
0.01-1.2% |
9002-90 |
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|
| N,N-Dimethylacetamide |
5-70 |
9002-91 |
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|
| N,N-Dimethyl
formamid |
1-30 |
9002-92 |
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|
| Epichlorohydrine* |
5-50 |
9002-95 |
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|
| Ethyl
acetate |
0.1-5.0% |
9002-98 |
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|
| Ethyl
benzene |
10-500 |
9003-02 |
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|
| Ethyl
cellosolve |
5-500 |
9003-03 |
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|
| Ethyl
cellosolve acetate |
5-150 |
9003-04 |
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|
| Ethylene |
0.1-100 |
9003-06 |
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|
| Ethylene |
20-1200 |
9003-07 |
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|
| Ethylene
dibromide* |
1-50 |
9003-08 |
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|
| Ethylene
glycol* |
20-250
mg/m3 |
9003-09 |
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|
| Ethylene
glycol |
3-40
mg/m3 |
9003-10 |
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|
| Ethylene
oxide |
0.01-1.8%
1-4% |
9003-11 |
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|
| Ethylene
oxide |
5-100 |
9003-12 |
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|
| Ethylene
oxide |
1-15 |
9003-13 |
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|
| Formaldehyde* |
1-35 |
9003-14 |
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|
| Formaldehyde* |
20-1500 |
9003-15 |
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|
| Gasoline |
0.05-0.6% |
9003-19 |
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|
| General
hydrocarbons |
50-1400 |
9003-20 |
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|
| Hexane |
0.05-0.6% |
9003-22 |
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|
| n-Hexane* |
50-1400 |
9003-23 |
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|
| Hydrazine |
0.1-10 |
9003-24 |
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|
| Hydrogen
chloride |
20-1200 |
9003-26 |
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|
| Hydrogen
chloride |
0.4-40 |
9003-27 |
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|
| Hydrogen
cyanide |
0.01-3.0% |
9003-28 |
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|
| Hydrogen
cyanide |
0.5-100 |
9003-29 |
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|
| Hydrogen
fluoride |
1-30 |
9003-30 |
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|
| Hydrogen
selenide |
1-600 |
9003-31 |
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|
| Hydrogen
sulfide |
50-2000 |
9003-32 |
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|
| Hydrogen
sulfide |
1-60 |
9003-33 |
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|
| Hydrogen
sulfide |
0.2-6.0 |
9003-34 |
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|
| Hydrogen
sulfide |
0.05-1.2% |
9003-35 |
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|
| Hydrogen
sulfide |
.75-150 |
9003-36 |
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|
| Hydrogen
sulfide |
.75-150 |
9003-36 |
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|
Hydrogen
sulfide
in
presence of
sulfur
dioxide |
0.005-0.16% |
9003-37 |
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|
| Hydrogen
sulfide |
0.1-4.0% |
9003-39 |
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|
| Hydrogen
sulfide |
2-20% |
9003-40 |
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|
| Hydrogen
sulfide* |
2.5-40% |
9003-41 |
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|
*
Packed five tubes per box, or five tests per box for multi-part
tube sets.
Tubes require refrigeration at 2°C to 10°C
(35.6°F) for storage |
Substance
to
Measured:
Inorganic
gases to Oxygen |
Measuring
Range
(PPM) |
Cat.
# |
$/Each |
| Inorganic gases, qualitative |
|
9003-42 |
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|
| Iron
ion |
50-400 |
9003-43 |
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|
| Isoamyl
acetate |
10-400 |
9003-44 |
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|
| Isobutyl
acetate |
10-400 |
9003-47 |
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|
| Isobutyl
alcohol |
5-100 |
9003-49 |
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|
| Isopentyl
alcohol |
5-100 |
9003-50 |
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|
| Isoproptyl
acetate |
20-1000 |
9003-52 |
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|
| Isopropyl
alcohol |
20-1200 |
9003-54 |
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|
| Mercaptans |
0.5-10 |
9003-56 |
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|
| Mercury
vapor |
0.1-10
mg/m3 |
9003-57 |
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|
| Methyl
alcohol |
0.05-6.0% |
9003-61 |
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|
| Methyl
alcohol |
20-1000 |
9003-62 |
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|
| Methyl
amine |
1-20 |
9003-63 |
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|
| Methyl
bromide* |
10-500 |
9003-64 |
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|
| Methyl
bromide* |
.04-80 |
9003-65 |
50.00 |
| Methyl
bromide* |
0.5-10 |
9003-66 |
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|
| Methyl
chloroform* |
15-400 |
9003-68 |
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|
| Methyl
cyclohexanol |
5-200 |
9003-69 |
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|
| Methyl
cyclohexanone |
2-100 |
9003-70 |
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|
| Methyl
ethyl ketone |
0.01-1.4% |
9003-72 |
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|
| Methyl
ethyl ketone |
20-1500 |
9003-73 |
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|
| Methyl
iodide* |
5-40 |
9003-74 |
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|
| Methyl
isobutyl ketone |
0.01-0.6% |
9003-75 |
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|
| Methyl
isobutyl ketone |
5-300 |
9003-76 |
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|
| Methyl
mercaptan |
5-140 |
9003-78 |
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|
| Methyl
mercaptan |
50-1000 |
9003-79 |
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|
| Methyl
methacrylate |
10-160 |
9003-80 |
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|
| Methyl
styrene |
10-500 |
9003-81 |
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|
| Monoethanol
amine |
0.5-50 |
9003-82 |
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|
| Nickel
carbonyl |
20-700 |
9003-84 |
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|
| Nitric
acid vapor* |
1-20 |
9003-85 |
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|
| Nitrogen
dioxide |
20-1000 |
9003-86 |
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|
| Nitrogen
dioxide |
0.5-30 |
9003-87 |
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|
Nitrogen
oxide and dioxide
(see
note 3) |
NO
10-300 |
9003-88 |
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|
Nitrogen oxide and dioxide
(see
note 3) |
NO
1-40 |
9003-89 |
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|
| Nitrogen
oxides* |
20-250 |
9003-90 |
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|
| Nitrogen
oxides |
100-2500 |
9003-91 |
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|
| Nitrogen
oxides |
0.5-30 |
9003-92 |
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|
| Organic
compounds |
5-2500 |
9003-93 |
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|
| Organic gases, qualitative |
|
9003-94 |
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|
| Oxygen (flame
req'd)* |
2-24% |
9003-95 |
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|
| Oxygen (no
flame)* |
2-24% |
9003-96 |
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|
| Oxygen (non-heating)* |
1.5-24% |
9003-97 |
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|
| Ozone |
0.05-3.0 |
9003-98 |
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|
| Ozone |
50-1000 |
9003-99 |
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|
| Ozone |
2.5-100 |
9004-00 |
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|
| Pentyl
acetate |
10-100 |
9004-02 |
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|
| Perchloroethylene* |
5-300 |
9004-03 |
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|
| Phenol |
0.5-25 |
9004-04 |
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|
| Phosgene |
0.1-20 |
9004-05 |
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|
| Phosphine |
20-700 |
9004-07 |
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|
| Phosphine |
0.25-10 |
9004-08 |
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|
| Phosphine
in acetylene |
20-800 |
9004-09 |
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|
| Phosphine
in acetylene |
5-90 |
9004-10 |
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|
| Propane |
0.02-0.5% |
9004-11 |
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|
| Propylene |
50-1000 |
9004-14 |
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|
| Propylene
oxide |
0.05-5.0% |
9004-15 |
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|
| Salinity |
0.01-0.8% |
9004-16 |
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|
| Smoke
tube (air flow indicator) |
|
9004-18 |
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|
| Styrene |
2.5-300 |
9004-19 |
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|
| Sulfide
ion |
2-1000 |
9004-20 |
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|
| Sulfide
ion |
0.5-10 |
9004-21 |
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|
| Sulfur
dioxide |
0.1-3% |
9004-22 |
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|
| Sulfur
dioxide |
0.02-0.3% |
9004-23 |
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|
| Sulfur
dioxide in flue gas |
0.02-0.3% |
9004-24 |
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|
| Sulfur
dioxide |
20-300 |
9004-25 |
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|
| Sulfur
dioxide |
1-60 | |