• No results found

The laboratory fulfils the requirements for periodic emission measurement according to ČSN P CEN/TS 15675:2009

N/A
N/A
Protected

Academic year: 2021

Share "The laboratory fulfils the requirements for periodic emission measurement according to ČSN P CEN/TS 15675:2009"

Copied!
8
0
0

Loading.... (view fulltext now)

Full text

(1)

Working place 1: Technické služby ochrany ovzduší Praha a.s.

Testing Laboratory for Measuring Pollutants, Jenečská 146/44, 161 00 Praha Working place 3: Technické služby ochrany ovzduší Praha a.s., Organizational unit

Letná 27, 040 01, Košice, Slovensko

The laboratory fulfils the requirements for periodic emission measurement according to ČSN P CEN/TS 15675:2009

Tests:

The laboratory has a flexible scope of accreditation permitted as detailed in the Annex. Updated list of activities provided within the flexible scope of accreditation is available at the laboratory from the Quality Manager.

The Laboratory is qualified to provide expert opinions and to interpret test results.

Ordinal number 1)

Test procedure/method name Test procedure/method

identification Tested object 1* Determination of mass concentration of particulate matter in emissions by gravimetry IP 100/2005 (STN ISO 9096) (ČSN EN 13284-1) emission

2a* Determination of mass concentration of gaseous components in emissions by NDIR method (NO a NO2) (SO2) (CO) (CO2) (NO, NO2, SO2, CO2, CO, O2) IP 200a/2005 (STN ISO 10396) (ČSN EN 15259) (ČSN ISO 10849) (ČSN ISO 7935) (ČSN EN 15058) (STN ISO 12039) (STN ISO12039) (STN ISO 11042-1)1 emission

(2)

2b* Determination of mass concentration of gaseous components in emissions by chemiluminescence method (NO a NO2) IP 200b/2005 (STN ISO 10396) (ČSN EN 15259) (ČSN EN 14792) (ČSN ISO 12039) (STN ISO 11042-1) 1 emission 2c* Determination of mass concentration of gaseous components in emissions by FID method (TOC) IP 200c/2005 (STN ISO 10396) (ČSN EN 15259) (ČSN EN 13526) (ČSN EN 12619) (STN ISO 11042-1) 1 emission 2d* Determination of mass concentration of gaseous components in emissions by paramagnetic method (O2) IP 200d/2005 (STN ISO 10396) (ČSN EN 15259) (ČSN EN 14789) (ČSN ISO 12039) (STN ISO 11042-1) 1 emission

2e* Determination of mass concentration of gaseous components in emissions by electrochemical method (NO,NO2,CO,O2) IP 200e/2005 (SOP M-01) (ČSN EN 50379-1.2) (STN ISO 11042-1) 1 emission 2f* Determination of volume concentration of CO2 by

balance calculation from element analysis and amount of burned fuel

IP 200f/2005 IP 300-02 (OTN ŽP 2008)

(3)

3a* Determination of the velocity and volume flow rate IP 300/2005 (ČSN ISO 10780) emission 3b* Determination of volume concentration of CO2 by

balance calculation from element analysis and amount of burned fuel

IP 300-02 (OTN ŽP 2008)

emission

3c* Determination of the water vapour in ducts by manual electro-capacitance method (ČSN EN 14790, M-07) (SOP M-10) emission 4 Reserved

5E Determination of the mass concentration of gases and vapours taken into liquid by the calculation from measured values (SO2)* (HCl)* (HF)* (Ammonia)* (Sulfane)* (Cl2)* (HCN)* (HCOOH, CH3COOH)*

(Total Reduced Sulphur)*

IP 500/2007 (ČSN EN 14791, ČSN ISO 7934) (ČSN EN 1911, ČSN 834751) (ČSN 834752, STN ISO 15713) (ČSN 834728) (ČSN 834712) (ČSN 834751) (EPA CTM 33) (STN 834735) (EPA Met. 16A)

(4)

6 Determination of the mass concentration of metals by the calculation from measured values

(As, Cd, Cr, Co, Cu, Mn, Ni, Pb, Sb, Tl, V)* (Hg)* (Cr6+)* (Be, Se, Zn)* (Te, Sn)* IP 600/2006 (ČSN EN 14385) (ČSN EN 13211, EMEP) (EPA Met. 0061) (EPA Met. 29) (OTN ŽP 2028) emission 7 Determination of mass concentration of persistent organic compounds by the calculation from measured values (PCDD/PCDF, PCB)* (PAH)* IP700/2007 (ČSN EN 1948) (ISO 11338) emission 8 Determination of mass concentration of volatile organic compounds (VOCs*) by capture on solid sorbent by calculation from measured values IP 800/2007 (ČSN EN 13649) (ČSN EN ISO 16017) (EPA Met. 0011) emission 9 Reserved 10 Determination of concentration of odour substances by dynamic olfactometry IP 1000/2006 (ČSN EN 13725) emission 11* Demonstration of quality of IP 1100/2006 automated emission measuring systems

(5)

automated measuring systems (ČSN EN 14181) (art.6 (QAL2) art.8 (AST)) 12 Reserved 13* Measurement of operating efficiency of 2nd stage petrol vapour recovery system by "wet method" B IP 1300/2012 (prEN 16321-2) petrol vapours

1) Asterisk at the ordinal number identifies the tests performed outside the laboratory premises.

2) Asterisk at the test procedure name indicates that the laboratory determination of an analyte in the sample is subcontracted to an accredited testing laboratory.

3) Number one at the number of standard indicates that this standard applies to gas turbines only.

Annex:

Flexibility type:

according to MPA 30-04-… Ordinal numbers of tests

Type 1 All testing procedures Type 2

Type 3

Type 1 – The laboratory can include updated standardised and/or technically equivalent test methods in the scope of accreditation provided the measuring principle is observed,

Type 2 – includes type 1. In addition, the laboratory can modify the existing test methods (both standardised and in-house procedures) and/or extend the range of tested parameters in given scope of accreditation provided the measuring principle is observed,

Type 3 – includes types 1 and 2. Furthermore, the laboratory can develop other test methods within the accredited tests.

No changes can be made by the laboratory in the tests not included in the annex (fixed scope of accreditation).

Sampling: Ordinal number

Sampling procedure name Sampling procedure identification

Sampled object

1 Sampling of solid pollutants in emissions (Isokinetic sampling with

IP 100/2005 (STN ISO 9096)

(6)

automatic or manual

isokinetic control) (ČSN EN 13284-1) 2 – 4 Reserved

5

Sampling of gases and vapours by absorption of liquids (non-isokinetic and isokinetic sampling with automatic or manual isokinetic control) (SO2) (HCl) (HF) (Ammonia) (Sulfane) (Cl2) (HCN) (HCOOH, CH3COOH)

(Total Reduced Sulphur)

IP 500/2007 (ČSN EN 14791, ČSN ISO 7934) (ČSN EN 1911, ČSN 834751) (ČSN 834752, STN ISO 15713) (ČSN 834728) (ČSN 834712) (ČSN 834751) (EPA CTM 33) (STN 834735) (EPA Met. 16A)

(7)

6 Sampling of metals by condensation absorption method

(Isokinetic sampling with automatic or manual isokinetic control) (As ,Cd, Cr, Co, Cu, Mn, Ni, Pb, Sb, Tl, V) (Hg) (Cr6+) (Be, Se, Zn) (Te, Sn) IP 600/2006 (ČSN EN 14385) (ČSN EN 13211, EMEP) (EPA Met. 0061) (EPA Met. 29) (OTN ŽP 2028) emission 7 Sampling of persistent organic compounds by dilution method

(Isokinetic sampling with automatic or manual isokinetic control) (PCDD/PCDF, PCB) (PAH) IP 700/2007 (ČSN EN 1948-1) (ISO 11338-1) emission 8 Sampling of organic compounds by capture on a solid sorbent IP 800/2007 (ČSN EN 13649) (ČSN EN 16017-1) (EPA Met. 0011) emission 9 Reserved 10 Sampling of odour substances IP 1000/2006 (ČSN EN 13725) emission

(8)

SOP standard operating procedure NDIR nondispersive infrared spectrometry FID flame ionization detection

VOCs volatile organic compounds TOC total organic carbon

PCDD/PCDF polychlorinated dibenzodioxins/polychlorinated dibenzofurans PCB polychlorinated biphenyls

PAH polycyclic aromatic hydrocarbons

EMEP manual of sampling and chemical analysis

Emission waste gas containing pollutants, which is released in a controlled way or leaks into atmosphere from air pollution sources

air

OTN ŽP branch technical standard of environment - SR OU organizational unit

STN Slovak technical standard ČSN Czech technical standard

EPA U.S. Environmental protection agency prEN Draft European Standard

References

Related documents

The pattern for + NP was the most frequently used one of the new patterns, it appeared altogether in 10 tokens and in three varieties (Pakistani English, American English

Specifically, the study attempts to achieve the following objectives (1) to determine the financial factors on cross-border vertical integration of Thailand firms in ASEAN

Most scholars are of the opinion that possession of zakat must be taken by a qualifying person, and therefore cannot be given (for example) for the construction of Mosques etc.

In this PhD thesis new organic NIR materials (both π-conjugated polymers and small molecules) based on α,β-unsubstituted meso-positioning thienyl BODIPY have been

occurs after the corrosion products having filled the porous zone and results in the cracks of structures.. model presumed that before the internal tensile

• Joint-disribution of the two attributes of the data • Internal structure of the system • Systemically important participants participants Structure Matrix 2D- Histograms

I use two types of variables to measure accounting quality: (1) accruals variables that measure the difference between reported earnings and cash flows and

LDH release, (b) cellular ATP levels and (c) MMP were assessed in a set of age matched parkin-mutant (black) and control (grey) fibroblasts following 48 h incubation with PMPC 25