TY - CONF A1 - Brandt, S. A1 - Brozowski, F. A1 - Horn, Wolfgang A1 - Plehn, W. A1 - Müller, B. T1 - New developments in odour testing: Adapter connects emission test chamber and funnel N2 - Healthy and energy efficient buildings must be free from disturbing odours. Odour emissions from building materials can be measured with the well-known and accepted standard ISO 16000-28 “Indoor air – Part 28: Determination of odour emissions from building products using test chambers”. For commonly used emission test chambers the sample air is collected in containers (bags) and presented to a group of panel members for the purpose of evaluating the odour. A standard sets requirements for the on-demand presentation in detail. These include the validation procedure for container materials, pre-treatment of bags, details on storage of filled bags and how to carry out the measurements. However, although these measures are proven in practice, incorrect measurements are still possible. Also errors can occur due to a very complex measurement procedure. So, there is a great need for research into how the odour samples are presented. The proposal planned to be presented will introduce a new development in sample provision by using an adapter which enables collection and provision of sample air without storage or transport of bags. The adapter is a sample container which is permanently positioned on the emission test chamber´s outlet and continuously filled with sample air flowing through it. The flow is briefly interrupted at the time when a sample is taken by a panel member for the test. The size of the container is sufficient to provide enough sample air for evaluation by at least one panel member via a funnel. Since sampling and presentation are technically connected, it means you can almost do away with storage or transportation and thus it can be presented almost unchanged to the panelmembers. The aim is to reduce measurement errors in the odour samples provision process and the improvement of measurement reproducibility. The paper presents the construction of the adapter as well as the results of emission and odour tests carried out so far. T2 - CLIMA 2022 The 14th REHVA HVAC World Congress CY - Rotterdam, The Netherlands DA - 22.05.2022 KW - Perceived Intensity KW - Emissionen KW - Geruch KW - Bauprodukte PY - 2022 UR - https://nbn-resolving.org/urn:nbn:de:kobv:b43-556192 DO - https://doi.org/10.34641/clima.2022.168 SP - 1 EP - 5 PB - TU Delft open CY - Delft, Niederlande AN - OPUS4-55619 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Musyanovych, A. A1 - Grimmer, Christoph A1 - Sadak, A. E. A1 - Heßling, L. A1 - Bilsel, M. A1 - Horn, Wolfgang A1 - Richter, Matthias T1 - Polymeric Capsules with VOCs for Controlled Emission N2 - Micro-(nano-)encapsulation technology involves building of a barrier between the core and the environment and offers a number of benefits to preserve the functional and physicochemical properties of core material. Tremendous progress has been made in synthesizing well-defined capsules to achieve desired properties such as particle size, chemical composition, and controlled release of the payload. Encapsulation of volatile organic compounds (VOCs) that could evaporate with a defined rate is of immense interest for application in emission reference materials (ERM). These are urgently needed for quality assurance and quality control purposes (QA/QC) required by test standards for the determination of chemical emissions of construction and other materials for interior use. As such ERMs are hardly available on the market, the EU-funded EMPIR project MetrIAQ [1] was started to fill this gap by developing a material with temporally constant emission of VOCs typically found in indoor air. Different capsules in a size range between 5 and 50 μm were synthesized through an interfacial polyaddition/polycondensation reaction in direct (water-in-oil) system. As VOC several types of hydrophobic liquid materials were used. After synthesis, the morphology and physicochemical properties of capsules were characterized by electron microscopy, FTIR and DSC/TGA. An encapsulation efficiency up to 90% could be reached. The emission kinetic of volatile agents was studied in emission test chambers at 23 °C and 50% RH for 14 days. First results indicate that variation of the cross-linking grade of the shell material is one important parameter to adjust the desired emission rate. The overall aim is to achieve a consistent emission profile that decreases by less than 10 % over a target period of at least 14 days. T2 - 36th European Colloid & Interface Society Conference CY - Chania, Crete, Greece DA - 04.09.2022 KW - Capsules KW - Volatile organic compound KW - Polymer KW - Material emissions KW - Reference materials PY - 2022 AN - OPUS4-56039 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Brandt, S. A1 - Brozowski, F. A1 - Horn, Wolfgang A1 - Müller, B. T1 - Odour testing of building products: Examinations for an on-going development of the test standard ISO 16000-28 N2 - VOC-emissions and their odours from building products and furnishings present indoors should not have an impact on personal well-being or health. Odours can be measured by applying the standard ISO 16000-28. Indoor air determination of odour emissions from building products using test chambers. One of the described procedures is the assessment of perceived intensity using a comparative scale by a group of panellists. In this paper, the perceived intensity sampling procedure and its evaluation method are investigated and shown to need improvement. New technical developments in the methodology used to increase the reproducibility of measurement results are discussed. Since odour tests are used for labelling, they have a major influence on the assessment of construction products, similar to the procedure of the German Committee for Health Evaluation of Building Products (AgBB). In the original ISO standard, the evaluation is typically performed using a sampling container separated from the emission chamber. For a better sample presentation, an adapter was developed to connect the emission test chamber to the evaluation funnel and thus enable an odour assessment which is comparable to a direct measurement. The investigations show that losses of odourous substances can be greatly reduced, which is very desirable when seeking to obtain reliable results in odour measurement. Another experimental series was carried out to reduce the measurement effort in the evaluation of perceived intensity. Application of the developed greater than or less than/equal to. query could be helpful here. The results show that the query mostly leads to the same result as the evaluation of the perceived intensity using the method according to the standard but is much easier to perform. Overall, the results can contribute to improving the acceptance of the evaluation of perceived intensity using ISO 16000-28 and to determining odours from building materials increasingly more precisely. T2 - Healthy Buildings 2023 Europe CY - Aachen, Germany DA - 11.06.2023 KW - Building material KW - Odour KW - Perceived intensity KW - VOC KW - Emission test chamber PY - 2023 UR - https://nbn-resolving.org/urn:nbn:de:kobv:b43-580070 SP - 345 EP - 352 PB - ISIAQ (International Society of Indoor Air Quality and Climate) CY - Herndon, VA, USA AN - OPUS4-58007 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Horn, Wolfgang A1 - Richter, Matthias A1 - Wilke, Olaf T1 - Volatile organic compounds from building products - Results from seven proficiency tests with emission test chambers conducted between 2008 and 2021 N2 - Emission testing of volatile organic compounds (VOC) from materials and products is commonly based on emission test chamber measurements. To ensure the comparability of results from different testing laboratories their measurement performance must be verified. For this purpose, Bundesanstalt für Materialforschung und -prüfung (BAM) organizes an international proficiency test every two years using well-characterised test materials (one sealant, one furniture board and four times a lacquer) with defined VOC emissions. The materials fulfilled the requirements of homogeneity, reproducibility, and stability. Altogether, 41 VOCs were included of which 37 gave test chamber air concentrations between 10 and 98 µg/m³. This is the typical concentration range to be expected and to be quantified when performing chamber tests. Four compounds had higher concentrations between 250 and 1105 µg/m³. The relative standard deviations (RSD) of BAM proficiency tests since 2008 are compared and the improvement of the comparability of the emission chamber testing is shown by the decrease of the mean RSD down to 23% in 2021. In contrast, the first large European interlaboratory comparison in 1999 showed a mean RSD of 51%. T2 - Proficiency Testing in Analytical Chemistry, Microbiology and Laboratory Medicine CY - Windsor, United Kingdom DA - 25.09.2023 KW - Proficiency Test KW - VOC-Emission KW - Chamber-test PY - 2023 AN - OPUS4-59694 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - RPRT A1 - Wilke, Olaf A1 - Horn, Wolfgang A1 - Wiegner, Katharina A1 - Jann, Oliver A1 - Bremser, Wolfram A1 - Brödner, Doris A1 - Kalus, Sabine A1 - Juritsch, Elevtheria A1 - Till, Carola T1 - Untersuchungen zur Verbesserung der Messung von flüchtigen organischen Verbindungen aus Fußbodenbelägen im Rahmen der gesundheitlichen Bewertung von Bauprodukten T1 - Investigations for the improvement of the measurement of volatile organic compounds from floor coverings within the health-related evaluation of construction products N2 - In den Grundsätzen des DIBt zur gesundheitlichen Bewertung von Bauprodukten in Innenräumen ist das Bewertungsschema des Ausschusses zur gesundheitlichen Bewertung von Bauprodukten (AgBB-Schema) als wesentliche Grundlage enthalten. Dieses Schema bewertet die mit Hilfe einer Prüfkammermessung bestimmten Emissionen von flüchtigen und schwer flüchtigen organischen Verbindungen (VOC und SVOC). Die Prüfkammer dient dabei der Einhaltung standardisierter Klimabedingungen (Temperatur 23°C, relative Luftfeuchtigkeit 50 %) sowie der Einstellung bestimmter Prüfparameter wie Luftwechselrate und Beladungsfaktor. Die Anforderungen an eine Prüfkammer sind in DIN EN ISO 16000-9 beschrieben. Die Analytik und Quantifizierung der VOC geschieht mittels Tenax-Thermodesorption und nachfolgender Gaschromatographie gekoppelt mit Massenspektrometrie und ist in DIN ISO 16000-6 beschrieben. Probenahmen werden am 3. und 28. Tag der Prüfkammermessung durchgeführt. Am dritten Tag erfolgt eine Bewertung der Emissionen aus dem Bauprodukt anhand des TVOC-Wertes und der Summe der detektierten cancerogenen Stoffe (nach 67/548/EWG, Einstufung als cancerogen der Kategorie 1 und 2). Ein Produkt erfüllt die Kriterien, wenn der TVOC-Wert nach 3 Tagen nicht größer als 10 mg/m³ ist und die Summe der Cancerogene 10 μg/m³ nicht übersteigt. Am 28. Tag wird zusätzlich zum TVOC-Wert und den Cancerogenen die Emission von SVOCs berücksichtigt und eine Einzelstoffbewertung anhand von NIK-Werten vorgenommen. Der TVOC-Wert nach 28 Tagen darf nicht größer als 1 mg/m³ sein, die Summe der Cancerogenen nicht größer als 1 μg/m³. Die Summe an SVOCs darf eine Konzentration von 0,1 mg/m³ nicht überschreiten. Der sogenannte R-Wert, die Summe aller Quotienten aus Einzelstoffkonzentration und dem NIK-Wert des Einzelstoffes, darf einen Wert von 1 nicht übersteigen. Außerdem darf die Summe von Substanzen, die keinen NIK-Wert besitzen, nicht größer als 0,1 mg/m³ sein. Der Ringversuch, der im Rahmen der Untersuchungen zur Verbesserung der Prüfkammermessungen durchgeführt wurde, hatte vor allem den Zweck, den Einfluss unterschiedlicher Methodenparameter bei der Prüfkammermessung in unterschiedlichen Prüflaboratorien zu erfassen. Anhand der Ergebnisse sollte eine Ursachenforschung für die großen Abweichungen der bisher durchgeführten Ringversuche erfolgen. Durch die drei aufeinander aufbauenden Schritte sollte der Einfluss der Analytik, der Probenahme und der Prüfkammer geklärt werden. Der Ringversuch diente nicht der Anerkennung der teilnehmenden Prüflaboratorien im Bereich der Bauproduktenprüfung für eine DIBt-Zulassung. Ausgehend von den Prüflaboratorien, die in der Projektgruppe „Prüf- und Messverfahren zur gesundheitlichen Bewertung von Bauprodukten“ des DIBt mitarbeiteten, wurde der Kreis auf europäische Prüflaboratorien erweitert, die sich ebenfalls mit Prüfkammermessungen an Bauprodukten beschäftigen. Dazu erging ein Einladungsschreiben an alle von vorangegangenen Ringversuchen bekannten Teilnehmer. Insgesamt ergab sich ein Teilnehmerkreis von 29 Instituten, davon 16 aus Deutschland, jeweils zwei aus Österreich, Belgien, Schweden, Dänemark und jeweils eins aus Finnland, Großbritannien, Frankreich, Italien und Portugal. Vor Beginn des Ringversuches waren davon 11 im Zulassungsbereich tätig. Zur wissenschaftlichen Begleitung wurde durch das DIBt ein Betreuergremium einberufen. In zwei Sitzungen (April und November 2007) wurden die aktuellen Ergebnisse vorgestellt und diskutiert sowie die weitere Vorgehensweise besprochen. Eine Abschlussveranstaltung nach der Auswertung des dritten Schrittes des Ringversuches fand im April 2008 im DIBt statt. Dazu waren alle Teilnehmer eingeladen. Für die Emissionsmessung von flüchtigen organischen Verbindungen (VOC) aus Materialien mit Hilfe von Emissionsprüfkammern sind bisher nur wenige Ringversuche durchgeführt worden (De Bortoli et al. 1999; Jann et al. 2000; Hansen et al. 2000; Oppl and Winkels 2002; Windhövel and Oppl 2005; Kirchner 2007; Oppl 2008). Dabei zeigten sich meist große Streuungen der Ergebnisse. Ein großes Problem für die Durchführung solcher Ringversuche ist das Fehlen von Referenzmaterialien mit bekannter Emissionsrate von Zielsubstanzen. Deshalb orientiert man sich für die Auswertung solcher Ringversuche am Mittelwert aller Ergebnisse. Dafür ist die Homogenität des Testmaterials von größter Bedeutung. Diese wurde in früheren Ringversuchen nicht wirklich sichergestellt. Im hier beschriebenen Forschungsprojekt wurde auf die Homogenität des Probenmaterials besonderen Wert gelegt. Der gesamte Ringversuch wurde in drei Schritte unterteilt. Die einzelnen Schritte wurden dabei von Schritt zu Schritt immer komplexer. Im ersten Schritt erfolgte die Analyse von flüssigen Lösungen, im zweiten die Bestimmung von VOCs in Prüfkammerluft und im dritten Schritt erfolgte eine komplette Emissionsprüfkammermessung bei den Teilnehmern. N2 - In the German Institute for Construction Technology’s (DIBt) principles for the health assessment for construction products used in interiors, the Evaluation procedure of the Committee for Health-related Evaluation of Building Products (AgBB Scheme) is contained as a substantial base. This scheme evaluates the emissions of volatile and semivolatile organic compounds (VOC and SVOC), determined by test chamber measurements. Within the interlaboratory comparison, which was divided into three steps, the emission test method from building products was checked against the principles of health-related evaluation of construction products in indoor spaces (based on DIN EN ISO 16000-9 together with DIN ISO 16000-6) with the co-operation of 29 European test institutes. The objective was to assess the comparability of the test method carried out in different test Chambers and using different thermodesorption devices. In the first step the analysis of liquid solutions took place to observe the influence of the analysis itself. In the second step VOCs were sampled in the air of a BAM test chamber onto tubes from the participants for the Analysis by them. In the third step a complete Emission test chamber measurement was carried out by the participants. A major problem for the execution of such interlaboratory comparisons is the lack of reference materials. Therefore the homogeneity of the test material was of great importance. As a result of the first step (analysis of 4 liquid solutions) a standard deviation of less than 20 % for 8 out of 11 substances tested was obtained. The Standard deviations for dichloropropanol, caprolactam and Butyl diglycol ranged up to 36 %. The second step, which included air sampling at a BAM test chamber, resulted in only one standard deviation value less than 20 % (11 % for styrene). The standard deviations for the other six substances were between 20 % and 36 %. For step 3 a sealant was chosen instead of the flooring material for homogeneity reasons. In step 3 the standard deviations for 4 of the 7 measured VOC concentrations from two chamber tests were between 17 % and 19 % and thus within the same range as in Step 1 and even better than for most substances in Step 2. A Standard deviation of 60 % was found for the key component ethanediol, but this can be explained with the difficult analysis method for this substance. A second objective of the project was to formulate criteria against which the specialist competence of the test institutes for emission tests can be checked and based on the principles for the health assessment for construction products used in interior. For this purpose a catalogue of criteria has been developed, which is divided into three parts. In the first part, basic requirements are formulated such as impartiality, accreditation for test chamber measurements, verification of experience by participation in earlier interlaboratory comparisons and the laboratory equipment. The second part requires the test-specific proof in the form of successful participation in interlaboratory comparisons organised by BAM biannually. The third part instructs the laboratories that they must ensure they are always upto-date both in terms of their knowledge and the available equipment. The quality assurance for the knowledge is ensured by regular participation in the exchanging of experience between the test laboratories. In terms of technical requirements the test institutes must be willing to successfully participate in at least one interlaboratory comparison per year. The present interlaboratory comparison was not designed to recognise the participating test laboratories in the field of the construction product testing for a DIBt approval. KW - Ringversuch KW - Laborvergleich KW - VOC-Emissionen KW - Kammermessungen KW - Round robin KW - Inter laboratory study KW - VOC emissions KW - Emission test chamber PY - 2009 UR - https://nbn-resolving.org/urn:nbn:de:kobv:b43-198380 UR - https://www.baufachinformation.de/buch/Untersuchungen-zur-Verbesserung-der-Messung-von-fl%C3%BCchtigen-organischen-Verbindungen-aus-Fu%C3%9Fbodenbel%C3%A4gen-im-Rahmen-der-gesundheitlichen-Bewertung-von-Bauprodukten/230803 SN - 978-3-8167-8100-4 N1 - Sprachen: Deutsch/Englisch - Languages: German/English IS - T 3217 SP - 1 EP - 206 PB - Fraunhofer IRB Verl. CY - Stuttgart AN - OPUS4-19838 LA - mul AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - GEN A1 - Rockstroh, Jens A1 - Jann, Oliver A1 - Wilke, Olaf A1 - Noske, Reinhard A1 - Brödner, Doris A1 - Schneider, Uwe A1 - Horn, Wolfgang ED - Wai, T. K. ED - Sekhar, C. ED - Cheong, D. T1 - Investigations on VOC, ozone and dust emissions from hardcopy devices (laser printers, copiers and multifunctional devices) in test chambers - development of a test method T2 - 7th Healthy Buildings Conference ; HB 2003 ; ISIAQ international conference CY - Singapore, Republic of Singapore DA - 2003-12-07 KW - Emissions KW - Printers KW - Copiers KW - VOC KW - Dust KW - Ozone KW - Blue Angel PY - 2003 SN - 981-049974-4 VL - 1 SP - 397 EP - 403 CY - Singapore AN - OPUS4-3315 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Horn, Wolfgang T1 - Biocide Emissions from Materials Into Indoor Air T2 - 9th International Conference on Indoor Air Quality and Climate - Indoor Air 2002 CY - Monterey, CA, USA DA - 2002-06-30 PY - 2002 AN - OPUS4-3428 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Horn, Wolfgang T1 - Ermittlung von Emissionen aus Fertigputzen und Auswertung nach dem AgBB-Schema T2 - 2. AgBB-Fachgespräch zur Vorhehensweise bei der gesundheitlichen Bewertung der Emissionen von flüchtigen organischen Verbindungen (VOC) aus Bauprodukten, DIBt CY - Berlin, Germany DA - 2004-11-25 PY - 2004 AN - OPUS4-4774 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Horn, Wolfgang T1 - Emission test methods for thermal insulation products according to interpretative document No. 3 hygiene, health and the environment T2 - Emissions and Odours From Materials CY - Brussels, Belgium DA - 2004-09-22 PY - 2004 AN - OPUS4-4131 LA - eng AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER - TY - CONF A1 - Horn, Wolfgang T1 - Ermittlung von Emissionen aus Dämmstoffen und Dichtmassen T2 - 2. AgBB-Fachgespräch zur Vorgehensweise bei der gesundheitlichen Bewertung der Emissionen von flüchtigen organischen Verbindungen (VOC) aus Bauprodukten, DIBt CY - Berlin, Germany DA - 2004-11-25 PY - 2004 AN - OPUS4-4773 LA - deu AD - Bundesanstalt fuer Materialforschung und -pruefung (BAM), Berlin, Germany ER -