Test Report- VOC emission regulations in Europe

Similar documents
Test Report- VOC emission regulations in Europe

Test Report- VOC emission regulations in Europe

Test Report- VOC emission regulations in Europe

Test Report- VOC emission regulations in Europe

EMICODE Test Report. 1 Sample Information. 2 Evaluation of the Results. Report No. G12871B_02

Test Report. Tremco-Illbruck GmbH & Co KG. Product Emissions Test (AgBB/DIBt Test Protocol) Butyl und Bitumenprimer. June 2011

EMICODE Test Report. 1 Sample Information. 2 Evaluation of the Results. Report No A_04

VOC TEST REPORT Indoor Air Comfort GOLD

Test Report in accordance CDPH-IAQ

VOC EMISSION TEST REPORT Indoor Air Comfort

VOC TEST REPORT Tarkett Indoor Air Quality

Test Report in accordance CDPH-IAQ

VOC TEST REPORT AgBB

VOC TEST REPORT Indoor Air Comfort GOLD

VOC TEST REPORT Indoor Air Comfort

VOC EMISSION TEST REPORT Indoor Air Comfort GOLD

VOC TEST REPORT M1. 23 October Regulation or protocol Conclusion Version of regulation or protocol

VOC EMISSION TEST REPORT Indoor Air Comfort GOLD

VOC TEST REPORT Indoor Air Comfort

VOC TEST REPORT Indoor Air Comfort GOLD

VOC EMISSION TEST REPORT ISO 16000

VOC EMISSION TEST REPORT Indoor Air Comfort GOLD

VOC TEST REPORT M1. 6 April Regulation or protocol Conclusion Version of regulation or protocol

VOC TEST REPORT Indoor Air Comfort GOLD

VOC TEST REPORT Indoor Air Comfort GOLD

VOC EMISSION TEST REPORT BREEAM NOR

VOC TEST REPORT Indoor Air Comfort GOLD

VOC TEST REPORT EMICODE

VOC TEST REPORT M1. 16 August Regulation or protocol Conclusion Version of regulation or protocol

VOC EMISSION TEST REPORT Indoor Air Comfort GOLD

VOC TEST REPORT Indoor Air Comfort GOLD

VOC TEST REPORT EMICODE

Test Report ROMA USA LLC. Product Emissions of Furniture in accordance with. Cradle to Cradle section 5.8 ECODOMUS SATIN BASE TR.

Test Report. Muovihaka Oy. Product Emissions in accordance with the Swedish Building Material Assessment Ultima graphite.

M1 Test Report. 1 Sample Information. 2 Evaluation of the Results. Report No A_04

VOC TEST REPORT CDPH

VOC TEST REPORT CDPH

VOC TEST REPORT CDPH

Test Report. Glava AS. Emission test of Ecophon Venus according to M1 classification. October / November Smedeskovvej 38, DK-8464 Galten

TEST REPORT Formaldehyde Reduction

ASTM D5116 Emissions Test Report with CDPH SM V Loading Scenarios per Cradle to Cradle Standard v3.0 Sect. 5.8

Emission measurements according to, M1 (3 appendices)

Test Report No II

COMPLIANCE EMISSIONS TEST California Dept. of Public Health Standard Method Version 1.1 and FloorScore Flooring Evaluation

Determination of Total Volatile Organic Compounds in Indoor Air Using Agilent 7667A mini TD and 7820A GC

Test report No. MAIC Testing and evaluating of a digital printed paper material according to AgBB/DIBt-scheme.

ANALYTICAL METHOD DETERMINATION OF VOLATILE ALDEHYDES IN AMBIENT AIR Page 1 of 11 Air sampling and analysis

BERKELEY ANALYTICAL 815 Harbour Way South, Suite 6 Richmond, CA Ph ; Fax

BERKELEY ANALYTICAL 815 Harbour Way South, Suite 6 Richmond, CA Ph ; Fax

SURVEY OF CHEMICALS EMISSION FACTORS FROM BUILDING MATERIALS FOR INTERIORS

AA-ANSIBIFMA-Jun2408, Page 1 of 16

MOLEKULE INC. TEST REPORT

Test report No. MAIC Chamber emission test of a leather sample.

Thermal Desorption Technical Support. Note 56: TD-GC/MS analysis of vapour-phase organic compounds for materials emissions testing.

Influence Of The Substrates On Water-based Paints Emissions Fabio Abbà,1*, Mikaela Decio 2, Tiziano Cerulli 2 and Roberto Leoni 2

Intertek Environmental VOC Emissions

THEORETICAL DETERMINATION OF THE SAMPLING RATES OF DIFFUSION SAMPLERS FOR VOCS AND ALDEHYDES

BERKELEY ANALYTICAL 815 Harbour Way South, Suite 6 Richmond, CA Ph ; Fax

BERKELEY ANALYTICAL 815 Harbour Way South, Suite 6 Richmond, CA Ph ; Fax

Detection of Volatile Organic Compounds in polluted air by an Agilent mini Thermal Desorber and an Agilent 5975T LTM GC/MS

Application Note 116 Monitoring VOCs in Ambient Air Using Sorbent Tubes with Analysis by TD-GC/MS in Accordance with Chinese EPA Method HJ

Magnitudes of Back Diffusion During Long-Term Diffusive Sampling of Volatile Organic Compounds Using Carbotrap and Chromosorb 106

INNOVATIVE PRODUCTS, SUPERIOR SUPPORT. Presenter: Anne Jurek, Senior Applications Chemist, EST Analytical

DETERMINATION OF UPTAKE RATES FOR VOCs IN AMBIENT AIR BY USING AXIAL TYPE THERMAL DESORPTION PASSIVE TUBES

Author. Abstract. Introduction

Copyright 2009 PerkinElmer LAS and CARO Analytical Services, Inc.

HJ/T Translated English of Chinese Standard: HJ/T

UV-PCO DEVICE FOR INDOOR VOCS REMOVAL: INVESTIGATION ON MULTIPLE COMPOUNDS EFFECT

Tar analysis by Solid Phase Adsorption (SPA) associated with Thermal Desorption (TD) and Gas Chromatography (GC) analysis

PRO LIGNO Vol. 11 N pp

Characterising Volatile Organic Compounds from Sewer Emissions by Thermal Desorption coupled with Gas- Chromatography-Mass Spectrometry

Determination of Formaldehyde and VOCs in Wood-based Products using an Automated Micro-Scale Chamber

Application Note. Abstract. Introduction. Experimental-Instrument Conditions. By: Anne Jurek

Analyzing Residual Solvents in Pharmaceutical Products Using GC Headspace with Valve-and-Loop Sampling

This document is a preview generated by EVS

BERKELEY ANALYTICAL 815 Harbour Way South, Suite 6 Richmond, CA Ph ; Fax

Determination of VOC in Artificial Runway by Multiple Headspace Extraction-GC/MS. Gas Chromatography/ Mass Spectrometry APPLICATION.

Determination of Volatile Organic Compounds in Air

TPH Methods and Measurements and Petroleum Vapor Intrusion (PVI) Risks

Certificate of Analysis

Application Note 032

Applying the Technology of the TurboMatrix 650 ATD to the Analysis of Liquid Accelerants in Arson Investigation

Maximizing Sample Throughput In Purge And Trap Analysis

System and JUREK ANNE. Introduction: in an in purge and. trap sampling. Discussion: As part of. consistent and reliable data. (MoRT) to.

Application Note. Application Note 081 Innovative Cryogen-Free Ambient Air Monitoring in Compliance with US EPA Method TO-15. Abstract.

Certificate of Analysis

ECMA Determination of Chemical Emission Rates from Electronic Equipment - Part 2 (not using-consumables) 8 th Edition / June 2017

Analysis of Low Level Volatile Organic Compounds in Air Anne Jurek

TÜV NORD Umweltschutz Sector: Hazardous substances

M+W Products. Controlled Environments Trace Analysis

Thermal Desorption Technical Support

Volatile Organic Compound (VOC) Vluchtige Organische Stoffen (VOS)

TDTS 16 Round-the-clock, on-line and cryogen-free monitoring of hydrocarbons from acetylene to trimethylbenzene in ambient air

SUMMARY REPORT OF AIR MONITORING FOR LEED CERTIFICATION PHASE 2 SWANSFIELD ELEMENTARY SCHOOL 5610 CEDAR LANE COLUMBIA, MD PREPARED FOR:

Analysis of Trace (mg/kg) Thiophene in Benzene Using Two-Dimensional Gas Chromatography and Flame Ionization Detection Application

Exploring US EPA Method 524 Purge and Trap Variables: Water Vapor Reduction and Minimizing Cycle Time

Optimizing of Volatile Organic Compound Determination by Static Headspace Sampling

Chemistry Gas Chromatography: Separation of Volatile Organics

Certificate of Analysis

Atmospheric Analysis Gases. Sampling and analysis of gaseous compounds

Transcription:

Protox Fabriksvej 19 6000 Kolding DENMARK Eurofins Product Testing A/S Smedeskovvej 38 8464 Galten Denmark voc@eurofins.com www.eurofins.com/voc-testing Date 13 August 2015 Test Report- VOC emission regulations in Europe 1 Sample Information Sample identification Protox Hysan Batch no. 202041 Production date 29-05-15 Product type Coating Date when sample was received 02.06.2015 Testing (start - end) 10.06.2015-08.07.2015 2 Evaluation of the Results Germany The tested product complies with the requirements of DIBt (October 2010) and AgBB (June 2012). France CMR-Substances The tested product fulfills the requirements of the French regulation DEVP0908633A of 30 April 2009 and DEVP0910046A of 28 May 2009. VOC-emission classification The tested product is classified to emission class A+.This recommendation is based on the French regulations of March 23 2011 (décret DEVL1101903D) and of April 19 2011 (arrêté DEVL1104875A). The product was assigned a VOC emission class without taking into account the measurement uncertainty associated with the result. As specified in French Decree no. 2011-321 of March 23 2011, correct assignment of the VOC emission class is the sole responsibility of the party responsible for distribution of the product in the French market. Belgium The tested product complies with the requirements of the Royal Decree for establishing threshold levels for the emissions to the indoor environment from construction products for certain intended uses (May 2014). Page 1 of 14

Table of contents 1 Sample Information 1 2 Evaluation of the Results 1 3 Test Method 2 4 Results 3 4.1 Emissions Test after 3 Days 3 4.2 Emissions Test after 7 Days 4 4.3 Emissions Test after 14 Days 5 4.4 Emissions Test after 28 Days 6 4.5 Chromatograms 8 4.6 Image of the sample 10 5 Appendices 11 5.1 Description of the applied test method 11 5.2 AgBB/DIBt Limit values 2012 13 5.3 Classification according to French VOC-regulation 13 5.4 Limit-values according to the Royal Belgian Decree for establishing threshold levels for the emissions to the indoor environment from construction products for certain intended uses (May 2014) 14 3 Test Method Method Principle Parameter Quantification limit Uncertainty AgBB Method (version June 2012), DIBt (version October 2010) ISO 16000 parts -3, -6, -9, -11 Internal method numbers: 9810, 9811, 9812, 2808, 8400 GC/MS GC/MS HPLC VVOC, VOC, SVOC TVVOC, TVOC, TSVOC Volatile Aldehydes 5 µg/m³ 5 µg/m 3 3 µg/m 3 22% (RSD) U m = 2 x RSD= 45 % Test chamber parameter Chamber volume, l 119 Temperature, C 23±1 Relative humidity, % 50±3 Air exchange rate, 1/h 0.5 Loading ratio, m²/m³ 1 Sample preparation Application amount, g/m² 250 Sample was mixed in a ratio Sample:Water = 1:1. The sample was homogenised and applied onto petri discs with planar bottom. Deviations from the test method None For detailed method description see below Page 2 of 14

4 Results 4.1 Emissions Test after 3 Days CAS No. Retention time ID- Cat Concentration NIKvalue R- value Emission rate Toluene equivalent min µg/m³ µg/m³ µg/(m 2 *h) µg/m 3 TVOC (C 6 -C 16 ) < 5 - - < 3 < 5 VOC with NIK n.d. - - < 5 - - < 3 < 5 R-value = S Conc i /NIK i 0 VOC without NIK Total VOC without NIK < 5 - - < 3 < 5 Total VVOC (< C 6 ) < 5 - - < 3 < 5 Total SVOC (> C 16 ) < 5 - - < 3 < 5 Total Carcinogens < 1 - - < 1 < 1 n.d. - - - < 1 - - < 1 < 1 n.d. Not detected < Means less than * Not a part of our accreditation. Page 3 of 14

4.2 Emissions Test after 7 Days CAS No. Retention time ID- Cat Concentration NIKvalue R- value Emission rate Toluene equivalent min µg/m³ µg/m³ µg/(m 2 *h) µg/m 3 TVOC (C 6 -C 16 ) < 5 - - < 3 < 5 VOC with NIK n.d. - - < 5 - - < 3 < 5 R-value = S Conc i /NIK i 0 VOC without NIK Total VOC without NIK < 5 - - < 3 < 5 Total VVOC (< C 6 ) < 5 - - < 3 < 5 Total SVOC (> C 16 ) < 5 - - < 3 < 5 Total Carcinogens < 1 - - < 1 < 1 n.d. - - - < 1 - - < 1 < 1 n.d. Not detected < Means less than * Not a part of our accreditation. Page 4 of 14

4.3 Emissions Test after 14 Days CAS No. Retention time ID- Cat Concentration NIKvalue R- value Emission rate Toluene equivalent min µg/m³ µg/m³ µg/(m 2 *h) µg/m 3 TVOC (C 6 -C 16 ) < 5 - - < 3 < 5 VOC with NIK n.d. - - < 5 - - < 3 < 5 R-value = S Conc i /NIK i 0 VOC without NIK Total VOC without NIK < 5 - - < 3 < 5 Total VVOC (< C 6 ) < 5 - - < 3 < 5 Total SVOC (> C 16 ) < 5 - - < 3 < 5 Total Carcinogens < 1 - - < 1 < 1 n.d. - - - < 1 - - < 1 < 1 n.d. Not detected < Means less than * Not a part of our accreditation. Page 5 of 14

4.4 Emissions Test after 28 Days CAS No. Retention time ID- Cat Concent ration NIKvalue R- value Emission rate Toluene equivalent min µg/m³ µg/m³ µg/(m 2 *h) µg/m 3 TVOC (C 6 -C 16 ) < 5 - - < 3 < 5 VOC with NIK n.d. - - < 5 - - < 3 < 5 R-value = S Conc i /NIK i 0 VOC without NIK Total VOC without NIK < 5 - - < 3 < 5 Total VVOC (< C 6 ) < 5 - - < 3 < 5 Total SVOC (> C 16 ) < 5 - - < 3 < 5 Total Carcinogens < 1 - - < 1 < 1 Benzene 71-43-2 - - < 1 - - < 1 < 1 Trichlorethylene 79-01-6 - - < 1 - - < 1 < 1 Dibutylphthalate 84-74-2 - - < 1 - - < 1 < 1 Diethylhexylphthalate 117-81-7 - - < 1 - - < 1 < 1 Volatile Aldehydes C 1 -C 6 measured with DNPH-Method Formaldehyde 50-00-0 - - < 3 - - < 2 - Acetaldehyde 75-07-0 - - < 3 - - < 2 - Propionaldehyde 123-38-6 - - < 3 - - < 2 - Butyraldehyde 123-72-8 - - < 3 - - < 2 - Single VOC for French VOC Label Toluene 108-88-3 - - < 2 - - < 2 < 2 Tetrachloroethylene 127-18-4 - - < 2 - - < 2 < 2 Ethylbenzene 100-41-4 - - < 2 - - < 2 < 2 Xylene 1330-20-7 - - < 2 - - < 2 < 2 Styrene 100-42-5 - - < 2 - - < 2 < 2 2-Butoxyethanol 111-76-2 - - < 2 - - < 2 < 2 Trimethylbenzene 95-63-3 - - < 2 - - < 2 < 2 1,4-Dichlorobenzene 106-46-7 - - < 2 - - < 2 < 2 n.d. Not detected < Means less than * Not a part of our accreditation. Page 6 of 14

Categories of Identity: 1: Identified and specifically calibrated 2: Identified by comparison with a mass spectrum obtained from library and supported by other information. Calibrated as toluene equivalent 3: Identified by comparison with a mass spectrum obtained from a library. Calibrated as toluene equivalent 4: Not identified, calibrated as toluene equivalent Thomas Bjerring Analytical Service Manager Maria Pelle Chemist Page 7 of 14

4.5 Chromatograms 4.5.1 Chromatogram after 3 days 4.5.2 Chromatogram after 7 days Please consider the different scales Page 8 of 14

4.5.3 Chromatogram after 14 days 4.5.4 Chromatogram after 28 days Please consider the different scales Page 9 of 14

4.6 Image of the sample Page 10 of 14

5 Appendices 5.1 Description of the applied test method 5.1.1 Test Chamber The test chamber is made of stainless steel. A multi-step air clean-up is performed before loading the chamber, and a blank check of the empty chamber is performed. The operation parameters are 23 C, 50 % relative air humidity in the supply air. 5.1.2 Sampling, Desorption, Analysis Testing for Carcinogens The presence of carcinogens (EU Categories C1A and C1B, as per the latest publication on the homepage of German BGIA Institute) was tested by drawing sample air from the chamber outlet through 2 Tenax TA tubes (main tube and backup tube). Analysis was performed by thermal desorption and gas chromatography / mass spectroscopy (30 m column, 0.25 mm ID, 0.25 µm HP-5 film, Agilent) (internal methods no.: 9812 / 2808). The absence of a listed carcinogen was stated if the specific combination of fragment ions was absent at the specific retention time in the chromatogram. If no listed carcinogens were found but the required detection limit was exceeded, the identity was checked by comparing full scan sample mass spectra with full scan standard mass spectra. This test covered only substances that can be adsorbed on to Tenax TA and that can be thermally desorbed. If other emissions occurred, then these substances cannot be detected (or with limited reliability only). VOC Emissions Testing The emissions of organic compounds were tested by drawing sample air from the chamber outlet through 2 Tenax TA tubes (main tube and backup tube). Analysis was performed by thermal desorption and gas chromatography / mass spectroscopy (30 m column, 0.25 mm ID, 0.25 µm HP-5 film, Agilent) (internal methods no.: 9812 / 2808). All single substances that are listed with a NIK value in the latest AgBB publication were identified. Quantification was done with the respective response factor and the TIC signal or in case of overlapping peaks by calculating with fragment ions. All other single substances, as well as all non-identified substances, were quantified as toluene equivalent. The results of the individual substances were calculated in three groups depending on their appearance in a gas chromatogram when analysing with a non-polar column (HP-1): Volatile organic compounds VOC: All substances appearing between these limits. Semi-volatile organic compounds SVOC: All substances appearing after n-hexadecane (n-c16). Very volatile organic compounds VVOC: All substances appearing before n-hexane (n-c6). Calculation of the TVOC (Total Volatile Organic Compounds) was performed according to the AgBB/DIBt test method, by addition of the results of all individual substances with concentrations 5 µg/m 3 in the retention time interval C6-C16. Furthermore the TVOC was calculated as the toluene equivalent, as defined in ISO 16000-6. Calculation of the TSVOC (Total Semi-Volatile Organic Compounds) was performed by addition of the results of all substances with concentrations 5 µg/m 3 between C16 and C22 as toluene equivalent, as defined in ISO 16000-6. Page 11 of 14

Calculation of the TVVOC (Total Very Volatile Organic Compounds) was performed by addition of the results of all substances with concentrations 5 µg/m 3 appearing before C6 as toluene equivalent, as defined in ISO 16000-6. This test covered only substances that can be adsorbed on Tenax TA and that can be thermally desorbed. If other emissions occurred then these substances cannot be detected (or with limited reliability only). 5.1.3 Calculation of R Values with the German NIK List The concentrations of all substances 5 µg/m 3 in the interval between n-c6 and n-c16 were divided by their respective NIK value (if given). The sum of the quotients gives the R value: R = n i ci Ł NIK I +... + cn NIK n ł In addition, all results were summed up for the substances without published NIK value, but in the interval be-tween n-c6 and n-c16, when concentrations were 5 µg/m 3 5.1.4 Testing of Aldehydes after 28 Days The presence of aldehydes was tested by drawing air samples from the chamber outlet through DNPHcoated silicagel tubes. Analysis was done by solvent desorption, HPLC and UV-/diode array detection (ISO 16000-3, internal methods no.: 9812 / 8400). The absence of formaldehyde was stated if the specific wavelength UV detector response was lacking at the specific retention time in the chromatogram. Otherwise it was checked whether the detection limit was exceeded. In this case the identity was finally checked by comparing full scan sample UV spectra with full scan standard UV spectra. 5.1.5 Quality assurance Before loading the chamber a blank check of the empty chamber was performed and compliance with background concentrations in accordance with ISO 16000-9 was determined. Sampling at the chamber outlet and subsequent analysis was performed in duplicate. For monitoring any breakthrough or overloading of the tubes, two Tenax TA tubes were used in series. In each sequence stability of GC system was checked by a general function test of device and column, and by use of control charts for monitoring mean values and standard deviations for individual VOCs. Reproducibility of the method was monitored for two selected VOCs per sequence. 5.1.6 Accreditation The testing methods described above are accredited to EN ISO/IEC 17025:2005 by DANAK (no. 522). Not all parameters are covered by this accreditation. At present the accreditation does not cover the parameters marked with a note *, however analysis was performed for these parameters at the same level of quality as for the accredited parameters. 5.1.7 Uncertainty of the test method The relative standard deviation of the test method amounts to 22% (RSD). The expanded uncertainty U m is 45% and equals 2 x RSD%. For further information please visit www.eurofins.dk/uncertainty. Page 12 of 14

5.2 AgBB/DIBt Limit values 2012 Parameter Test after 3 days Test after 28 days Limit value, mg/m 3 Limit value, mg/m 3 TVOC 10 1.0 TSVOC - 0.1 R-value (dimensionless) - 1 Total VOC without NIK - 0.1 Total Carcinogens 0.01 0.001 Formaldehyde - 0.12 5.3 Classification according to French VOC-regulation C B A A+ TVOC >2000 <2000 <1500 <1000 Formaldehyde >120 <120 <60 <10 Acetaldehyde >400 <400 <300 <200 Toluene >600 <600 <450 <300 Tetrachloroethylene >500 <500 <350 <250 Ethylbenzene >1500 <1500 <1000 <750 Xylene >400 <400 <300 <200 Styrene >500 <500 <350 <250 2-Butoxyethanol >2000 <2000 <1500 <1000 Trimethylbenzene >2000 <2000 <1500 <1000 1,4-Dichlorobenzene >120 <120 <90 <60 Page 13 of 14

5.4 Limit-values according to the Royal Belgian Decree for establishing threshold levels for the emissions to the indoor environment from construction products for certain intended uses (May 2014) Parameter Test after 28 days Limit value, µg/m 3 TVOC 1000 TSVOC 100 R-value (dimensionless) 1 Total Carcinogens 1 Toluene 300 Formaldehyde 100 Acetaldehyde 200 Page 14 of 14