Dokument-ID Dokumenttyp Autoren/innen Persönliche Herausgeber/innen Haupttitel Abstract Auflage Verlagsort Verlag Herausgeber (Institution) Erscheinungsjahr Titel des übergeordneten Werkes Jahrgang/Band ISBN Veranstaltung Veranstaltungsort Beginndatum der Veranstaltung Enddatum der Veranstaltung Ausgabe/Heft Erste Seite Letzte Seite URN DOI Lizenz Datum der Freischaltung OPUS4-56786 Zeitschriftenartikel Can, S. Z.; Engin, B. A.; İsleyen, A.; Jotanovic, A.; Acosta, O.; Prina, P.; Schvartz, M.; Savić, M.; Stojanović, M.; Ahumada, D. A.; Abella, J. P.; Näykki, T.; Saro-Aho, T.; Vogl, Jochen; Koenig, Maren; Rienitz, O.; Noordmann, J.; Pape, C.; Towara, J.; Kakoulides, E.; Alexopoulos, C.; Ketrin, R.; Mardika, E.; Komalasari, I.; Elishian, C.; Naujalis, E.; Knašienė, B.; Uribe, C.; Carrasco, E.; Zoń, A.; Warzywoda, B.; Stakheev, A.; Dobrovolskiy, V.; Stolboushkina, T.; Glinkova, A.; Sobina, E.; Tabatchikova, T.; Gažević, L.; Paunovic, M.; Jaćimović, R.; Zuliani, T.; Zambra, R. P.; Napoli, R. Determination of elements in river water The need for quality assessment of anthropogenic impact on environmental pollution is increasing due to discharge from various industries, the use of chemicals in agriculture and the consumption of fossil fuels. Diminishing resources such as natural waters used for the cultivation of agricultural products, plant and animal habitats are under severe pollution pressure and are at constant risk. Several parameters, such as Pb, Cd, Ni, Hg were listed by Water Framework Directive in Directive(2008/105/EC) in the priority substances. Cadmium and Hg were identified as priority hazardous substances whereas As is an important contaminant for its potential toxicological and carcinogenic effects. An inter-comparison study is organised in EURAMET TC-MC in order to demonstrate the capability participants for measuring five elements in river water. The participants carried out measurements for analytes: Pb, Cd, Ni and As as mandatory elements, and Se as an optional one. Participants were asked to perform the measurements with respect to the protocol provided. To reach the main text of this paper, click on Final Report. Note that this text is that which appears in Appendix B of the BIPM key comparison database https://www.bipm.org/kcdb/. The final report has been peer-reviewed and approved for publication by the CCQM, according to the provisions of the CIPM Mutual Recognition Arrangement (CIPM MRA). BIPM & IOP Publishing Ltd 2023 Metrologia 60 1a 1 40 10.1088/0026-1394/60/1A/08001 2023-01-04 OPUS4-33065 Zeitschriftenartikel Kaltenbach, A.; Nordmann, J.; Görlitz, V.; Pape, C.; Richter, Silke; Kipphardt, Heinrich; Kopp, G.; Jährling, R.; Rienitz, O.; Güttler, B. Gravimetric preparation and characterization of primary reference solutions of molybdenum and rhodium Gravimetrically prepared mono-elemental reference solutions having a well-known mass fraction of approximately 1 g/kg (or a mass concentration of 1 g/L) define the very basis of virtually all measurements in inorganic analysis. Serving as the starting materials of all standard/calibration solutions, they link virtually all measurements of inorganic analytes (regardless of the method applied) to the purity of the solid materials (high-purity metals or salts) they were prepared from. In case these solid materials are characterized comprehensively with respect to their purity, this link also establishes direct metrological traceability to The International System of Units (SI). This, in turn, ensures the comparability of all results on the highest level achievable. Several national metrology institutes (NMIs) and designated institutes (DIs) have been working for nearly two decades in close cooperation with commercial producers on making an increasing number of traceable reference solutions available. Besides the comprehensive characterization of the solid starting materials, dissolving them both loss-free and completely under strict gravimetric control is a challenging problem in the case of several elements like molybdenum and rhodium. Within the framework of the European Metrology Research Programme (EMRP), in the Joint Research Project (JRP) called SIB09 Primary standards for challenging elements, reference solutions of molybdenum and rhodium were prepared directly from the respective metals with a relative expanded uncertainty associated with the mass fraction of Urel(w)<0.05 %. To achieve this, a microwave-assisted digestion procedure for Rh and a hotplate digestion procedure for Mo were developed along with highly accurate and precise inductively coupled plasma optical emission spectrometry (ICP OES) and multicollector inductively coupled plasma mass spectrometry (MC-ICP-MS) methods required to assist with the preparation and as dissemination tools. Berlin Springer 2015 Analytical and bioanalytical chemistry 407 11 3093 3102 10.1007/s00216-014-8395-2 2016-02-20 OPUS4-51156 Zeitschriftenartikel Rienitz, O.; Jährling, R.; Noordmann, J.; Pape, C.; Röhker, K.; Vogl, Jochen; Manzano, J. V. L.; Kozlowski, W.; Caciano de Siena, R.; Marques Rodrigues, J.; Galli, A. H.; Yim, Y.-H.; Lee, K.-S.; Lee, J. H.; Min, H.-S.; Chingbo, C.; Naijie, S.; Qian, W.; Ren, T.; Jun, W.; Tangpaisarnkul, N.; Suzuki, T.; Nonose, N.; Mester, Z.; Yang, L.; Pagliano, E.; Greenberg, P.; Mariassy, M.; Näykki, T.; Cankur, O.; Coskun, F. G.; Ari, B.; Can, S. Z. CCQM-K122 "Anionic impurities and lead in salt solutions" The determination of the mass fractions of bromide, sulfate, and lead as well as the isotopic composition of the lead (expressed as the molar mass and the amount fractions of all four stable lead isotopes) in an aqueous solution of sodium chloride with a mass fraction of 0.15 g/g was the subject of this comparison. Even though the mass fractions ranged from 3 μg/g (bromide) to 50 ng/g (lead), almost all results reported agreed with the according KCRVs. IOP Science 2020 Metrologia 57 1A 8012 10.1088/0026-1394/57/1A/08012 2020-09-09