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- EU-WFD (1)
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Organisationseinheit der BAM
Bericht zur Durchführung des Ringversuchs zur Validierung der Benzolanalytik im Spurenbereich
(2006)
Im Auftrag des Altlastenausschusses (ALA) der Bund/Länder Arbeitsgemeinschaft Boden (LABO) wurde ein Validierungsringversuch für die Bestimmung von leichtflüchtigen monoaromatischen Verbindungen mit Hinweisen auf existierende Prüfwerte, wie BTEX in Boden, im Spurenbereich durchgeführt. 3 Bodenproben mit unterschiedlichen Kontaminationsniveaus der BTEX-Verbindungen, überschichtet mit Methanol, eine Bodenprobe dotiert mit Ottokraftstoff, Super bleifrei, eine BTEX-Standardlösung unbekannter Konzentration, sowie eine BTEX-Standardlösung mit zertifizierten Gehaltsangaben wurden an 21 ausgewählte Teilnehmer verschickt, die überwiegend mit GC-MS analysiert haben. Die Ergebnisse und die Verfahrenskenndaten zeigen, dass die Mehrzahl der Laboratorien mit den angewandten Analysentechniken in der Lage ist, in dem vorgegebenen Kontaminationsbereich empfindlich genug, vergleichbar und richtig messen zu können. GC- FID erweist sich nicht empfindlich und spezifisch genug in dem unteren Spurenbereich, deshalb war schon in dem Aufruf zum Ringversuch auf die Anwendung der GC-MS- Messtechnik verwiesen worden.
Estrogens are endocrine disrupting chemicals and of high concerns due to demonstrated harmful effects on the environment and low effect levels. For monitoring and risk assessment, several estrogens were included in the "watch list" of the EU Water Framework Directive which sets very low environmental quality standard (EQS) levels for Estrone (E1) and 17β-Estradiol (E2) of 0.4 ng L−1 and for 17α-Ethinylestradiol (EE2) of 0.035 ng L−1 requiring sensitive detection methods, as well as extensive sample preparation. A sensitive, derivatization-free, isotope dilution calibration HPLC-MS/MS method for a panel of 5 selected estrogens (including the 3 estrogens of the EU WFD watchlist), and a procedure for the reproducible preparation of a representative whole water matrix including mineral water, humic acids and solid particulate matter are presented. These are used in a diligent comparison of classical solid phase extraction (SPE) on hydrophilic-lipophilic balanced (HLB) phase to SPE on an estrogen-specific molecularly imprinted polymer phase (MISPE) for ultra-trace levels of the analytes (1–10 ng L−1). Additionally, a two-step procedure combining HLB SPE disks followed by MISPE is evaluated. The tow-step procedure provides superior enrichment, matrix removal and sample throughput while maintaining comparable recovery rates to simple cartridge SPE. Estimated method quantification limits (MQLs) range from 0.109–0.184 ng L−1 and thus meet EQS-levels for E1 and E2, but not EE2. The representative whole water matrix provides a reproducible comparison of sample preparation methods and lays the foundation for a certified reference material for estrogen analysis. The presented method will serve as the basis for an extended validation study to assess its use for estrogen monitoring in the environment.
KEY COMPARISON
At the October 2005 CCQM Organic Analysis Working Group Meeting (IRMM, Belgium), the decision was made to proceed with a Key Comparison study (CCQM-K47) addressing the calibration function for the determination of volatile organic compounds (VOCs) used for water quality monitoring. This was coordinated by CENAM and NIST. Benzene, o-xylene, m-xylene and p-xylene were chosen as representative VOCs. The solvent of choice was methanol.
Key Comparison CCQM-K47 demonstrated the capabilities of participating NMIs to identify and measure the four target VOCs in a calibration solution using GC-based methods. The measurement challenges in CCQM-K47, such as avoiding volatility loss, achieving adequate chromatographic resolution and isolating potential interferences, are typical of those required for value-assigning volatile reference materials. Participants achieving comparable measurements for all four VOCs in this Key Comparison should be capable of providing reference materials and measurements for VOCs in solutions when present at concentration levels greater than 10 µg/g.