| Literature DB >> 25365736 |
F Cordeiro1, T Llorente-Mirandes, J F López-Sánchez, R Rubio, A Sánchez Agullo, G Raber, H Scharf, D Vélez, V Devesa, Y Fiamegos, H Emteborg, J Seghers, P Robouch, M B de la Calle.
Abstract
The Institute for Reference Materials and Measurements (IRMM) of the Joint Research Centre (JRC), a Directorate General of the European Commission, operates the International Measurement Evaluation Program (IMEP). IMEP organises inter-laboratory comparisons in support of European Union policies. This paper presents the results of two proficiency tests (PTs): IMEP-116 and IMEP-39, organised for the determination of total Cd, Pb, As, Hg and inorganic As (iAs) in mushrooms. Participation in IMEP-116 was restricted to National Reference Laboratories (NRLs) officially appointed by national authorities in European Union member states. IMEP-39 was open to all other laboratories wishing to participate. Thirty-seven participants from 25 countries reported results in IMEP-116, and 62 laboratories from 36 countries reported for the IMEP-39 study. Both PTs were organised in support to Regulation (EC) No. 1881/2006, which sets the maximum levels for certain contaminants in food. The test item used in both PTs was a blend of mushrooms of the variety shiitake (Lentinula edodes). Five laboratories, with demonstrated measurement capability in the field, provided results to establish the assigned values (Xref). The standard uncertainties associated to the assigned values (uref) were calculated by combining the uncertainty of the characterisation (uchar) with a contribution for homogeneity (ubb) and for stability (ust), whilst uchar was calculated following ISO 13528. Laboratory results were rated with z- and zeta (ζ)-scores in accordance with ISO 13528. The standard deviation for proficiency assessment, σp, ranged from 10% to 20% depending on the analyte. The percentage of satisfactory z-scores ranged from 81% (iAs) to 97% (total Cd) in IMEP-116 and from 64% (iAs) to 84% (total Hg) in IMEP-39.Entities:
Keywords: inorganic arsenic; mushrooms; proficiency test; trace elements
Mesh:
Substances:
Year: 2014 PMID: 25365736 PMCID: PMC4299854 DOI: 10.1080/19440049.2014.966336
Source DB: PubMed Journal: Food Addit Contam Part A Chem Anal Control Expo Risk Assess ISSN: 1944-0057
Analytical methods used by the expert laboratories.
| Certifier | Sample treatment/digestion/analytical method | Technique |
|---|---|---|
| BAM | Total As, Cd and Pb: 0.25 g of sample. Microwave-assisted digestion. 6 ml of HNO3 (sub-boiling) in an Ultra Clave III. Power 1000 W, ramp 20 min. Hold 30 min. Digestion temperature 250°C at 100 bar. ICP equipped with a collision cell. Argon + helium as collision gas. Multi-point calibration from 0 to 10 µg l−1 (five points) for total As and Pb, 0–25 µg l−1 for Cd | ICP-MS |
| BAM | Total Hg: 0.25 g of sample. Microwave-assisted digestion. 6 ml of HNO3 (sub-boiling) in an Ultra Clave III. Power 1000 W, ramp 20 min. Hold 30 min. Digestion temperature: 250°C at 100 bar. CV-AFS, amalgamation mode (gold trap). Argon as gas. Multi-point calibration from 0 to 125 µg l−1 (five points) | CV-AFS |
| BAM | Total Hg: 0.12 g of sample. Solid sampling cold-vapour AAS, combustion + amalgamation (gold trap). Advanced elementar Hg analyser (AMA-254) at the wavelength of 253.7 nm. Oxygen as gas mode. Multi-point calibration from 0.5 to 36 ng (nine points) and from 40 to 500 ng (nine points) | AMA-254 |
| LSPA | Total As, Cd, Pb: the digestion of samples was carried out using a microwave digestion system, Ethos one (Milestone Inc., Shelton, CT, USA), equipped with the Q-20 Quartz Rotor Ultratrace Analysis (20 ml quartz tubes, 250ºC and 40 bars operating parameters). A unique sample digestion procedure was applied to all samples and analytes. 0.25 g of sample were weighted in quartz digestion vessels and 5 ml of HNO3:H2O 1:1 were added in a fume hood. The mixture was left to react over 1 h approximately until finishing the gas generation process. Analysis was performed on an ELAN DRC II ICP-MS (PerkinElmer) equipped with a perfluoroalcoxy standard nebuliser and a peltier cooled baffled glass cyclonic spray chamber (both Elemental Scientific, Omaha, NE, USA). Multi-element standard solutions were used for external calibration. Six standards in 2% (w/w) HNO3 matrix for As, Cd and Pb were prepared at levels ranging from 0.1 to 50 μg l−1. The calibration curve was drawn from six points, including the calibration blank and a weighted linear regression approach with internal standardisation was applied | ICP-MS |
| LSPA | Total Hg: 40 mg of sample were weighted directly in quartz samples boats and placed in the Hg analyser. To prevent explosions inside the catalyser, 500 μl of ultra-pure water were added in the quartz boats together with the samples. At least two quality control samples (CRM) were analysed in each sequence | Elemental Hg analyser |
| KFUG | Total As: a portion of the powdered samples (about 250 mg weighed with a precision of 0.1 mg) was weighed directly into 12 ml quartz tubes and concentrated nitric acid (2 ml) and H2O (2 ml) were added. The tubes were transferred to a Teflon® rack of the Ultraclave microwave system (MLS GmbH, Leutkirch, Germany) and covered with Teflon caps. After closing the system, an argon pressure of 4–106 Pa was applied and the mixture was heated to 250°C for 30 min before being allowed to cool to RT. After mineralisation, the samples were transferred to 15 ml polypropylene tubes (Greiner, Bio-one, Frickenhausen, Germany) and diluted with water to 9 ml (based on mass). Finally, 1 ml of a solution containing 50% methanol (to enhance the As response) and 100 μg l−1 each of Ge and In as internal standards were added to all digested samples giving a final concentration of 5% methanol and 10 μg l−1 of Ge and In. All standards for total As determinations were prepared with 20% (v/v) of concentrated nitric acid and also 5% methanol for matrix matching with the digested samples. The As concentrations in the digests were determined by ICP-MS using helium as the collision cell gas | ICP-MS |
| KFUG | iAs: about 0.5 g of powder were weighed with a precision of 0.1 mg into 50 ml polypropylene tubes and a solution (10 ml) of 20 mmol l−1 trifluoracetic acid containing 50 μl of a 30% H2O2 solution was added. Samples were extracted with a GFL-1083 shaking water bath (Gesellschaft für Labortechnik, Burkwedel, Germany) at 95°C for 60 min. After cooling to RT the extracts were centrifuged for 15 min at 4700 | HPLC-ICP-MS |
| CSIC | iAs: 0.5–1 g of sample. Concentrated HCl is added and water. Reducing agent (2 ml of HBr and 1 ml of hydrazine sulphate) is added. 10 ml of CHCl3. Agitate and separate the phases. Repeat the extraction three times. iAs is back-extracted with 10 ml of HCl. 2.5 ml of ashing aid suspension (20% w/v Mg(NO3).6H2O and 2% w/v MgO) and 10 ml HNO3 are added. Evaporated to dryness in a sand bath and place at a muffle at 150°C. Increase the temperature to 425 ± 25°C for 12 h. The white ash is dissolved in 6 mol l−1 HCl and reduced with pre-reducing solution (5% w/v KI and 5% w/v ascorbic acid). After 30 min, filter through Whatman No. 1 and dilute with 6 mol l−1 HCl. Samples are analysed by flow injection-hydride generation AAS | FI-HG-AAS |
| UB | iAs: a microwave digestion system (Ethos Touch Control, Milestone, Gomensoro, Barcelona, Spain), with a microwave power of 1000 W and temperature control, was used for the extraction procedure. An Agilent 7500ce ICPMS was coupled to an Agilent 1200 LC quaternary pump to determine iAs content. The analytical column Hamilton PRP-X100 (250 × 4.1 mm, 10 µm; Hamilton, Reno, NV, USA) was protected by guard column filled with the corresponding stationary phase. The outlet of the LC column was connected via PEEK capillary tubing to the nebuliser (BURGENER Ari Mist HP type) of the ICP-MS system, which was the As-selective detector. 0.25 g aliquots of the test material and three CRMs, for internal quality control, were weighed in PTFE vessels and then extracted by adding 10 ml of 0.2% (w/v) HNO3 and 1% (w/v) H2O2 solution in a microwave digestion system. The temperature was raised first to 55°C (and held for 10 min) then to 75°C (and held for 10 min) and finally the digest was taken up to 95°C and maintained for 30 min. Samples were cooled to RT and centrifuged at 3500 rpm for 12 min. The supernatant was filtered through PET filters (pore size 0.45 μm) and analysed by HPLC-ICP-MS | HPLC-ICP-MS |
Note: Certified reference materials (CRMs).
Average measurements reported by the expert laboratories (X), their expanded measurement uncertainties (U), assigned values, standard uncertainty contributions (from characterisation, homogeneity and stability) and combined uncertainties (u ref) and the standard deviation for the PTs assessment (mg kg−1).
| Total As | Total Cd | Total Hg | Total Pb | iAs | |
|---|---|---|---|---|---|
| 0.638 ± 0.026 | 4.42 ± 0.19 | 0.0782 ± 0.0032 | 0.274 ± 0.019 | 0.330 ± 0.014 | |
| 0.61 ± 0.06 | 3.99 ± 0.44 | 0.0781 ± 0.007 | 0.260 ± 0.016 | 0.286 ± 0.037 | |
| 0.69 ± 0.05 | 0.072 ± 0.007 | 0.348 ± 0.026 | |||
| 0.646 | 4.21 | 0.076 | 0.267 | 0.321 | |
| 0.017 | 0.15 | 0.002 | 0.008 | 0.010 | |
| 0.007 | 0.04 | 0.002 | 0.009 | 0.004 | |
| 0.015 | 0.06 | 0.002 | 0.010 | 0.007 | |
| 0.024 | 0.17 | 0.004 | 0.016 | 0.013 | |
| 0.048 | 0.33 | 0.007 | 0.031 | 0.026 | |
| 0.10 | 0.42 | 0.011 | 0.05 | 0.06 | |
| 15% | 10% | 15% | 20% | 19% |
Note: Experts do not necessarily correspond to the order in which they were presented.
Figure 1. (colour online) X lab and U lab as reported by the participants in IMEP-39 and IMEP-116 for the total mass fraction of Cd.
Figure 5. (colour online) X lab and U lab as reported by the participants in IMEP-39 and IMEP-116 for the total mass fraction of iAs.
Figure 6. (colour online) Distribution of satisfactory, questionable and unsatisfactory (a) z- and (b) ζ-scores for IMEP-39 and IMEP-116.
Uncertainty assessment. Proportion of participants in each study who received the ‘a’, ‘b’ or ‘c’ ratings (%).
| Case a | Case b | Case c | ||||
|---|---|---|---|---|---|---|
| Measurand | IMEP-116 | IMEP-39 | IMEP-116 | IMEP-39 | IMEP-116 | IMEP-39 |
| Total As | 69 | 57 | 9 | 37 | 22 | 6 |
| Total Cd | 54 | 34 | 16 | 47 | 30 | 19 |
| Total Hg | 58 | 44 | 12 | 36 | 30 | 20 |
| Total Pb | 67 | 52 | 18 | 40 | 15 | 8 |
| iAs | 63 | 55 | 6 | 27 | 31 | 18 |
Figure 7. (colour online) Chromatograms showing the distribution of As species in the test item, as obtained by two expert laboratories using anion exchange-ICP-MS.
Figure 8. (colour online) Distribution of results reported for the total mass fraction of As on the basis of the technique used.