BH GSO ISO 9487:2015
ISO 9487:1991
Bahraini Standard
Current Edition
·
Approved on
12 August 2015
Workplace air - Determination of vaporous aromatic hydrocarbons - Charcoal tube/solvent desorption/gas chromatographic method
BH GSO ISO 9487:2015 Files
Arabic
23 Pages
Current Edition
BHD
61.13
English
12 Pages
Current Edition
Reference Language
BHD
30.34
BH GSO ISO 9487:2015 Scope
This International Standard specifies a charcoal
tube/gas chromatographic method for the determination
of the concentration of vaporous aromatic
hydrocarbons in workplace air.
The method is valid for the measurement of the
concentrations of airborne vapours of any of the following
compounds:
a) benzene;
b) toluene;
c) ethylbenzene;
d) m-xylene;
e) o-xylene;
f) p-xylene;
g) styrene (vinylbenzene);
h) cumene (isopropylbenzene);
i) 1,2,3-trimethylbenzene;
j) 1,2,4-trimethylbenzene;
k) 1,3,5-trimethylbenzene;
I) 4-terf-butyltoluene;
m) 3-methylstyrene;
n) 4-methylstyrene;
o) isopropenylbenzene.
The method is valid for concentrations of airborne
vapours of these compounds in the range from approximately
1 mg/m3 to 1000 mg/m3 (about
0,2 ml/m3 to 200 mVm3; see 8.1) when sampling
10 litres of air.
NOTE 1 The upper limit of the useful range is set by the
adsorptive capacity of the first section of the charcoal
tube (5.1) used. This capacity is measured as a breakthrough
volume of air, which should not be exceeded
during sampling (see clause 6 and annex A).
The lower limit is set by a number of parameters, including
the noise level of the detector (5.9) blank concentrations
due to the contamination of the charcoal and
carbon disulfide by the substance analysed, desorption
efficiency (see annex B) and interference of the solvent
peak in the gas chromatographic analysis.
The method is also valid for the measurement of
airborne concentrations of mixtures of these compounds.
In such cases, the unique properties of each
compound have to be considered when determining
the volume of air to be sampled and the gas chromatographic
conditions to be used. The method may
be applicable for other substituted monocyclic
aromatic hydrocarbons, but its validity has to be
tested.
NOTE 2 When analysing aromatic hydrocarbon mixtures
with very large differences in concentrations and in
which several compounds are present, the reproducibility
and repeatability of the compounds of minor importance
might be influenced.
The method has been validated for a selection of
typical aromatic hydrocarbons[ll.
This procedure is compatible with low flow rate
personal sampling equipment, and can be used for
personal and fixed location sampling for obtaining
time-weighted-average concentrations of aromatic
hydrocarbon solvent vapours in air. It cannot be
used to measure instantaneous or short-term fluctuations
in concentrations. Alternative on-site pro-
Best Sellers From Metrology Sector
GSO OIML R87:2021
OIML R87:2016
Gulf Standard
Quantity of product in prepackages
BH GSO OIML R87:2022
OIML R87:2016
Bahraini Standard
Quantity of product in prepackages
GSO OIML R79:2021
OIML R79:2015
Gulf Standard
Labeling requirements for prepackages
BH GSO OIML R79:2022
OIML R79:2015
Bahraini Standard
Labeling requirements for prepackages
Recently Published from Metrology Sector
GSO ISO 10713:2026
ISO 10713:2025
Gulf Standard
Jewellery and precious metals — Gold alloy coatings
GSO IEC 61452:2026
IEC 61452:2021
Gulf Standard
Nuclear instrumentation - Measurement of activity or emission rate of gamma-ray emitting radionuclides - Calibration and use of germanium-based spectrometers
GSO ISO 5059-1:2026
ISO 5059-1:2025
Gulf Standard
Geometrical product specifications (GPS) — Dimensional measuring equipment — Part 1: Design and metrological characteristics of two-point inside micrometers
GSO ISO 25178-602:2026
ISO 25178-602:2025
Gulf Standard
Geometrical product specifications (GPS) — Surface texture: Areal — Part 602: Design and characteristics of non-contact (confocal chromatic probe) instruments