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Production and certification of ORMS-6, a certified reference material for mercury in water

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Abstract Mercury is recognized by the World Health Organization as one of the “top ten chemicals of major public health concern.” To support global efforts in monitoring mercury contamination in drinking and environmental waters, analytical methods have continuously improved to achieve greater accuracy and lower detection limits. Critical tools in support of this endeavor are fit-for-purpose Certified Reference Materials (CRMs) with well-characterized mercury content present at trace or ultra-trace levels. The National Research Council of Canada (NRC) has produced and maintained such CRMs for several decades. This study presents the production and certification of the latest iteration, ORMS-6, mercury in water. This process involved rigorous cleaning protocols to mitigate background mercury contamination and real-time monitoring during ampouling to ensure that the material’s mercury content remained stable throughout the day-long process. The final consensus value for mercury content in ORMS-6 was determined by a combination of two independent methods: isotope dilution cold-vapor inductively coupled mass spectrometry and cold-vapor atomic fluorescence spectrometry.

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  • Research Article
  • Cite Count Icon 4
  • 10.1155/s1463924600000146
Development of a method for the determination of ultra-trace level mercury in adipose tissue by cold vapour atomic fluorescence spectrometry
  • Jan 1, 2000
  • Journal of Automated Methods and Management in Chemistry
  • Keith E Levine + 5 more

A method for the determination of total mercury in rat adipose tissue by cold vapour atomic fluorescence spectrometry (CVAFS) has been developed. Adipose samples were initially subjected to a lyophilization procedure in order to facilitate the homogenization and accurate weighing of small tissue aliquots (~50 mg). A closed vessel microwave digestion procedure using a mixture of sulphuric and nitric acids was used to liberate mercury from the adipose matrix. All mercury species were quantitatively oxidized to Hg(II) by a potassium bromate/bromide oxidation, then reduced to Hg(0) vapour by stannous chloride prior to fluorescence detection. The CVAFS exhibited a linear range of 10 pg Hg/ml to 120 pg Hg/ml. The method detection limit in solution was 2 pg Hg/ml, or 1 ng Hg/g adipose tissue, based on a nominal 50 mg sample and a final volume of 25 ml. A reference material from the National Research Council of Canada (DOLT-2, trace metals in dogfish liver) was prepared in quadruplicate in order to assess the accuracy and precision of the method. Mercury in this material was recovered at 2.22 ± 0.08 μ g/g, which is 104% of the certified level (2.14 ± 0.10 μ g/g).

  • Research Article
  • Cite Count Icon 72
  • 10.1021/ac020060i
Direct determination of methylmercury and inorganic mercury in biological materials by solid sampling-electrothermal vaporization-inductively coupled plasma-isotope dilution-mass spectrometry.
  • Jun 22, 2002
  • Analytical Chemistry
  • I Gelaude + 4 more

This paper reports on the use of solid sampling-electrothermal vaporization-inductively coupled plasma mass spectrometry (SS-EIV-ICPMS) for the direct and simultaneous determination of methylmercury and inorganic mercury in biological materials. The main advantage of this fast and sensitive method is that no sample preparation is required. In this way, the sample throughput can be considerably increased, problems of contamination and analyte losses are kept to a minimum and, even more important, the original chemical form of the different analyte species in the solid samples is preserved. To achieve this goal, a solid sample is inserted into a graphite furnace of the boat-in-tube type and is subsequently submitted to an appropriate temperature program, leading to the separate vaporization of methylmercury and inorganic mercury, which are transported into the ICP by means of an argon carrier gas. The separation was accomplished within 75 s. For the quantification of the two peaks, species-unspecific isotope dilution was used. For this purpose, a stable flow of argon loaded with gaseous Hg isotopically enriched in 200Hg was generated using a permeation tube that was constructed in-house. Its emission rate was determined by collecting the mercury released during a given time interval on a gold-coated silica absorber, after which the amount collected was released by heating of the absorber and determined by cold vapor atomic absorption spectrometry (CVAAS) and cold vapor atomic fluorescence spectrometry (CVAFS). A reference material from the Canadian National Research Council (NRC) (TORT-2) was used to assess the accuracy of the method. For the application of the method to samples with diverse mercury contents, the spike/sample ratio can be optimized by varying the emission rate of the permeation tube simply by adapting its temperature. To prove the feasibility of this approach, two reference materials (BCR 463 and DORM-2) with a methylmercury content more than 10 times higher than that of TORT-2 were also analyzed. The detection limits obtained for 1 mg of sample (2 ng g(-1) and 6 ng g(-1) for methylmercury and inorganic mercury, respectively) were found to be sufficiently low for this kind of application and are competitive when compared to other techniques.

  • Research Article
  • Cite Count Icon 39
  • 10.1007/s10661-018-6624-4
Total mercury, methyl mercury, and heavy metal concentrations in Hyeongsan River and its tributaries in Pohang city, South Korea.
  • Apr 11, 2018
  • Environmental Monitoring and Assessment
  • Mark Xavier Bailon + 4 more

Heavy metal contamination in aquatic systems is a big problem in many areas around the world. In 2016, high mercury concentrations were reported in bivalves (Corbicula leana) and sediments near the confluence of the Hyeongsan River and Chilseong Creek located in Pohang, a steel industrial city in the south-east coast of the Korean peninsula. Given that both the Chilseong and Gumu creeks run through the Pohang industrial complex and ultimately flow to the Hyeongsan River, it is imperative to determine if the industrial effluents have any impact on the mercury contamination in these two streams and the Hyeongsan River. In this work, we investigated the concentration levels of different heavy metals using cold vapor atomic fluorescence spectroscopy and inductively coupled plasma-mass spectroscopy. The metal concentration in the water samples from the Hyeongsan River, Gumu Creek, and Chilseong Creek did not exceed the limits for drinking water quality set by the US EPA and World Health Organization. However, the sediment samples were found to be heavily contaminated by Hg with levels exceeding the toxic effect threshold. Gumu Creek was found to be heavily contaminated. The concentrations of the different heavy metals increased downstream, and the samples collected from the sites in the Hyeongsan River near the Gumu Creek, an open channel for wastewater discharge of companies in the Pohang Industrial Complex, showed higher contamination levels, indicating that the effluents from the industrial complex are a possible source of contamination in the river.

  • Research Article
  • Cite Count Icon 13
  • 10.5740/jaoacint.11-133
A Method for the Routine Determination of Methylmercury in Marine Tissue by GC Isotope Dilution-ICP-MS
  • Jul 1, 2012
  • Journal of AOAC INTERNATIONAL
  • Stig Valdersnes + 3 more

Currently, there is no legal limit for methyl mercury (MeHg) in food; thus, no standardized method for the determination of MeHg in seafood exists within the European jurisdiction. In anticipation of a future legislative limit an inductively coupled plasma isotope dilution mass spectrometry (GC-ICP-ID-MS) method was developed in collaboration with the European Standardization Organization (CEN). The method comprises spiking the tissue sample with Me201Hg, followed by decomposition with tetramethylammonium hydroxide, pH adjustment and derivatization with sodium tetraethylborate, and finally organic extraction of the derivatized MeHg in a hexane phase. Subsequently, the sample is analyzed via GC-ICP-MS and the result calculated using the ID equation. The working range of the method was 0.0005-1.321 mg/kg MeHg in marine tissue, with an internal reproducibility (RSD) of 12-1%. The method was validated based on statistical measures, such as the z-scores, using the commercially available reference materials from National Institute of Standards and Technology Standard Reference Material (NIST SRM) 1566b, NIST SRM 2977 and National Research Council of Canada (NRCC) TORT 2, NRCC, DORM 3, NRCC DOLT 4, and European Reference Material (ERM) CE 464. Z-scores for all standard reference materials, except for NIST SRM 1566b, were better than 11.51. The wide range of marine tissues used during the validation ensures that the method will be applicable for measuring of MeHg in seafood matrixes of all kinds.

  • Research Article
  • Cite Count Icon 22
  • 10.1016/s0045-6535(99)00185-x
Current status and future needs for biological and environmental reference materials certified for methylmercury compounds
  • Aug 17, 1999
  • Chemosphere
  • Milena Horvat

Current status and future needs for biological and environmental reference materials certified for methylmercury compounds

  • Research Article
  • Cite Count Icon 1
  • 10.21577/0103-5053.20200133
Determining Mercury in Sediment Samples by Extraction Using a Novel-Chelating Reagent Dithiothreitol (DTT) Followed by Cold Vapor Atomic Fluorescence Spectrometry (CV-AFS)
  • Jan 1, 2020
  • Journal of the Brazilian Chemical Society
  • Robson De Jesus + 4 more

A new analytical protocol has been developed for the determination of mercury in surface sediments using dithiothreitol (DTT) as a new chelating reagent for the extraction. This protocol requires a small sample mass (250 mg), 4.0 mL of a 0.1 M (pH = 9.0) aqueous DTT solution, and sonication for 30 min, followed by cold vapor atomic fluorescence spectrometry (CV-AFS). The limits of detection and quantification determined were 6 and 18 ng g−1, respectively. The method was validated using three standard reference materials, SRM NIST 1646a, PACS-2, and MESS-3, with recoveries in the range of 102-124%. The new analytical protocol was successfully applied in riverine surface sediments, revealing concentrations in the range of 220-340 ng g−1. The results obtained by CV-AFS were compared to those obtained by DMA-80 (direct mercury analyzer). The linear regression equation obtained was [CV-AFS] = (0.91 ± 0.07)[DMA-80] + (0.04 ± 0.02), revealing no systematic difference between the analytical methods. Hence, the proposed method does not require the complete digestion of the sediment, and was found to be comprehensive, simple, accurate and suitable to be employed for determination of mercury in sediment samples.

  • Research Article
  • Cite Count Icon 41
  • 10.1039/a606421c
Measurement of Molecular Species of Arsenic and Tin Using Elemental and Molecular Dual Mode Analysis by Ionspray Mass Spectrometry
  • Jan 1, 1997
  • Journal of Analytical Atomic Spectrometry
  • Jay J Corr

Ionspray mass spectrometry has been employed for dual mode, molecular and elemental, detection and quantification of tributyltin and arsenobetaine. A selectable degree of ion–solvent declustering and molecular fragmentation in the ion source–mass spectrometer interface region permitted detection of fully intact molecular species, or fragments of the molceular species to any selected degree. Complete dissociation of the molecular species in the interface region enabled detection of the underlying element of interest. Tandem mass spectrometry (MS–MS) was used in the molecular detection mode to increase selectivity of the analysis. Instrumental parameter adjustment permitted dual mode detection for the same sample on subsequent injections. Dual mode detection using FI was performed to determine the tributyltin concentration in the National Research Council of Canada (NRCC) harbour sediment reference material PACS-1. Measured tributyltin concentrations were 1.24±0.04 µg g -1 of Sn in the sediment (MS–MS mode) and 1.29±0.04 µg g -1 of Sn in sediment (elemental mode), compared with the certified value of 1.27±0.22 µg g -1 of Sn in sediment. The dual mode detection system was coupled to two forms of liquid chromatography, cation exchange and ion-pairing, to determine arsenobetaine concentration in the NRCC dogfish muscle reference material DORM-2, as part of the NRCC certification process. Results of the two detection modes with both chromatographic methods were consistent, and yielded a mean arsenobetaine concentration of 16.6±0.6 µg g -1 of As in the material. Although the certification process is not complete, this result was consistent with an expected arsenobetaine level slightly higher than previously measured values of 15.7±0.4 µg g -1 of As in for DORM-1, the NRCC predecessor reference material to DORM-2. Additionally, an intermediate mode of interface fragmentation coupled with MS–MS enabled the detailed mapping of possible collisionally induced dissociation channels for arsenobetaine.

  • Research Article
  • Cite Count Icon 26
  • 10.1016/j.envres.2016.07.040
Mercury concentrations in urine of amerindian populations near oil fields in the peruvian and ecuadorian amazon
  • Aug 13, 2016
  • Environmental Research
  • Jena Webb + 3 more

Mercury concentrations in urine of amerindian populations near oil fields in the peruvian and ecuadorian amazon

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  • 10.1016/j.scitotenv.2025.181163
Mercury contamination in polar fish: Bioaccumulation and trophic transfer in Notothenia coriiceps from Admiralty Bay, maritime Antarctic.
  • Jan 1, 2026
  • The Science of the total environment
  • Kacper Jurczyk + 4 more

Mercury contamination in polar fish: Bioaccumulation and trophic transfer in Notothenia coriiceps from Admiralty Bay, maritime Antarctic.

  • Research Article
  • Cite Count Icon 18
  • 10.1002/rcm.8357
Three certified sugar reference materials for carbon isotope delta measurements.
  • Jan 15, 2019
  • Rapid Communications in Mass Spectrometry
  • Michelle M.G Chartrand + 3 more

For isotope delta analysis, it is preferable to have at least two matrix-matched reference materials whose isotope delta values encompass those of the samples to be analyzed. The National Research Council Canada (NRC) has developed three sugar Certified Reference Materials (CRMs), BEET-1 (beet sugar), GALT-1 (galactose), and FRUT-1 (fructose), to be collectively used for carbon isotope delta measurements in sugars, and other organic materials. All materials were homogenized and packaged in glass ampules. All three sugar materials were analyzed at the NRC using elemental analyzer/isotope ratio mass spectrometry (EA/IRMS). Six additional laboratories also provided EA/IRMS measurements. Data from all laboratories were re-normalized using three international secondary reference materials (IAEA-CH-6, USGS40, and USGS62) included as blind samples in the inter-laboratory comparison, thus providing added quality control and robustness to the study. Re-normalized carbon isotope delta values from each laboratory were combined using a random laboratory effects statistical model with accounting of the correlations between the laboratory results due to the use of the same reference materials for calibration. The consensus δ(13 C) values and combined standard uncertainties which include effects due to characterization, homogeneity, and stability for BEET-1, GALT-1, and FRUT-1 are -26.02(7) ‰, -21.41(6) ‰, and -10.98(5) ‰, respectively, on the VPDB scale. Three new δ(13 C) sugar CRMs (BEET-1, GALT-1, and FRUT-1) were developed and are available from NRC. These three CRMs can be utilized as a set for daily δ(13 C) scale normalization of sugar-based or other organic materials in order to produce reliable δ(13 C) measurements.

  • Research Article
  • Cite Count Icon 14
  • 10.1016/j.talanta.2019.02.070
Determination of ultra-low volatile mercury concentrations in sulfur-rich gases and liquids
  • Feb 20, 2019
  • Talanta
  • Christoph-Cornelius Brombach + 1 more

Determination of ultra-low volatile mercury concentrations in sulfur-rich gases and liquids

  • Research Article
  • Cite Count Icon 21
  • 10.1039/a706350d
Re-evaluation and extension of the scope of elements in US Geological Survey Standard Reference Water Samples†
  • Jan 1, 1998
  • The Analyst
  • Dale B Peart + 4 more

More than 100 US Geological Survey (USGS) Standard Reference Water Samples (SRWSs) were analyzed for numerous trace constituents, including Al, As, B, Ba, Be, Bi, Br, Cd, Cr, Co, Cu, I, Fe, Pb, Li, Mn, Mo, Ni, Rb, Sb, Se, Sr, Te, Tl, U, V, Zn and major elements (Ca, Mg, Na, SiO2, SO4, Cl) by inductively coupled plasma mass spectrometry and inductively coupled plasma atomic emission spectrometry. In addition, 15 USGS SRWSs and National Institute of Standards and Technology (NIST) standard reference material (SRM) 1641b were analyzed for mercury using cold vapor atomic fluorescence spectrometry. Also USGS SRWS Hg-7 was analyzed using isotope dilution–inductively coupled plasma mass spectrometry. The results were compared with the reported certified values of the following standard reference materials: NIST SRM 1643a, 1643b, 1643c and 1643d and National Research Council of Canada Riverine Water Reference Materials for Trace Metals SLRS-1, SLRS-2 and SLRS-3. New concentration values for trace and major elements in the SRWSs, traceable to the certified standards, are reported. Additional concentration values are reported for elements that were neither previously published for the SRWSs nor traceable to the certified reference materials. Robust statistical procedures were used that were insensitive to outliers. These data can be used for quality assurance/quality control purposes in analytical laboratories.

  • Research Article
  • Cite Count Icon 52
  • 10.1016/j.foodchem.2012.10.019
Determination of mercury in rice by MSFIA and cold vapour atomic fluorescence spectrometry
  • Oct 26, 2012
  • Food Chemistry
  • Douglas G Da Silva + 4 more

Determination of mercury in rice by MSFIA and cold vapour atomic fluorescence spectrometry

  • Research Article
  • Cite Count Icon 55
  • 10.1007/s002160050439
Certification of total mercury and methylmercury concentrations in mussel homogenate (Mytilus edulis) reference material, IAEA-142
  • Jun 10, 1997
  • Fresenius' Journal of Analytical Chemistry
  • M Horvat + 5 more

Due to the increased demand for new reference materials certified for total and methylmercury (MeHg) a sample of mussel homogenate (IAEA-142) has been prepared. Thirteen experienced laboratories reported results for total Hg of which 9 laboratories also reported results for MeHg content. Laboratories reporting MeHg results used various isolation techniques (solvent extraction, saponification, acid leaching, ion-exchange separation, and distillation) and detection systems (cold vapour atomic absorption spectrometry (CV AAS), cold vapour atomic fluorescence spectrometry (CV AFS), gas chromatography with electron capture detector (GC/ECD) and HPLC with CV AAS detector). In the case of total Hg, most of the laboratories used acid digestion, only two used alkaline dissolution, followed either by CV AAS or CV AFS. One laboratory used neutron activation analyses with radiochemical separation. The data received were in good agreement. The value for total Hg was certified to be 126 ng/g, with a 95% confidence interval from 119 to 132 ng/g. For MeHg the certified value of 47 ng/g expressed as Hg was assigned, with a 95% confidence interval from 43 to 51 ng/g. Stability testing has shown that both total and MeHg are stable if samples are stored in a dry and dark place at room temperature. The sample is now available as a certified reference material and is, in particular, useful for quality control measurements of Hg and MeHg in mussel samples at low concentration levels.

  • Research Article
  • Cite Count Icon 8
  • 10.1080/10473289.2011.617617
Partition and Tempospatial Variation of Gaseous and Particulate Mercury at a Unique Mercury-Contaminated Remediation Site
  • Oct 31, 2011
  • Journal of the Air & Waste Management Association
  • Yi-Hsiu Jen + 7 more

This study investigated the seasonal variation and spatial distribution of gaseous and particulate mercury at a unique mercury-contaminated remediation site located at the near-coastal region of Tainan City, Taiwan. Gaseous elemental mercury (GEM), particulate mercury (PTM), and dustfall mercury (DFM) were measured at six nearby sites from November 2009 to September 2010. A newly issued Method for Sampling and Analyzing Mercury in Air (National Institute of Environmental Analysis [NIEA] Method A304.10C) translated from U.S. Environmental Protection Agency (EPA) Method IO-5, was applied for the measurement of atmospheric mercury in this particular study. One-year field measurements showed that the seasonal averaged concentrations of GEM and PTM were in the range of 5.56–12.60 and 0.06–0.22 ng/m3, respectively, whereas the seasonal averaged deposition fluxes of DFM were in the range of 27.0–56.8 g/km2-month. The maximum concentrations of GEM and PTM were 38.95 and 0.58 ng/m3, respectively. The atmospheric mercury apportioned as 97.42–99.87% GEM and 0.13–2.58% PTM. As a whole, the concentrations of mercury species were higher in the springtime and summertime than those in the wintertime and fall. The southern winds generally brought higher mercury concentrations, whereas the northern winds brought relatively lower mercury concentrations, to the nearby fishing villages. This study revealed that the mercury-contaminated remediation site, an abandoned chlor-alkali manufacturing plant, was the major mercury emission source that caused severe atmospheric mercury contamination over the investigation region. The hot spot of mercury emissions was allocated at the southern tip of the abandoned chlor-alkali manufacturing plant. On-site continuous monitoring of GEM at the mercury-contaminated remediation site observed that GEM concentrations during the open excavation period were 2–3 times higher than those during the nonexcavation period. IMPLICATIONS A manual and an auto-monitoring technique were successfully applied to sample gaseous and particulate mercury at a unique mercury-contaminated remediation site and further measured with a cold-vapor atomic fluorescence spectrometry (CVAFS). The mercury-contaminated remediation site was announced as a supersite of mercury contamination by the Environmental Protection Bureau (EPB) of Tainan City in 2003, causing significant contamination of atmospheric mercury over the investigation region. Both ambient temperature and prevailing wind direction played critical roles on the tempospatial variation and partition of gaseous and particulate mercury in the ambient atmosphere.

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