Microbead beating extraction of avian eggs for polycyclic aromatic compounds

被引:0
|
作者
Xia Z. [1 ]
Idowu I. [1 ]
Halldorson T. [1 ]
Lucas A.-M. [1 ]
Stein C. [1 ]
Kaur M. [1 ]
Tomy T. [1 ]
Marvin C. [2 ]
Thomas P.J. [3 ]
Hebert C.E. [3 ]
Smith R.A. [4 ]
Dwyer-Samuel F. [5 ]
Provencher J.F. [3 ]
Tomy G.T. [1 ]
机构
[1] University of Manitoba, Department of Chemistry, Winnipeg, R3T 2N2, MB
[2] Water Science and Technology Directorate, Environment and Climate Change Canada, Burlington, L7S 1A1, ON
[3] Wildlife Landscape Science Directorate, Environment and Climate Change Canada, Ottawa, K1A 0H3, ON
[4] Carleton University, Department of Biology, Ottawa, K1S 5B6, ON
[5] Nunatsiavut Government, Nain, A0P 1L0, NL
基金
加拿大自然科学与工程研究理事会;
关键词
Method validation; Microbead extraction; Polycyclic aromatic compounds; Seabird eggs;
D O I
10.1016/j.chemosphere.2023.139059
中图分类号
学科分类号
摘要
Due to their relatively high trophic position and importance as a food source for many communities in the circumpolar north, seabird eggs are an important matrix for monitoring contaminant levels. In fact, many countries, including Canada, have established long-term seabird egg contaminant monitoring programs, with oil related compounds a contaminant of emerging concern for seabirds in several regions. Current approaches to measuring many contaminant burdens in seabird eggs are time-consuming and often require large volumes of solvent. Here we propose an alternative approach, based on the principle of microbead beating tissue extraction using custom designed stainless-steel extraction tubes and lids, to measure a suite of 75 polycyclic aromatic compounds (polycyclic aromatic hydrocarbons (PAHs), alkyl-PAHs, halogenated-PAHs and some heterocyclic compounds) comprising a wide-range of chemical properties. Our method was conducted in strict accordance with ISO/IEC 17025 guidelines for method validation. Accuracies for our analytes generally ranged from 70 - 120%, and intra and inter-day repeatability for most analytes were < 30%. Limits of detection/quantitation for the 75 target analytes were < 0.2/0.6 ng g−1. The level of contamination in our method blanks was significantly smaller in our stainless-steel tubes/lids relative to commercially available high-density plastic alternatives. Overall, our method meets our data quality objectives and results in a notable reduction in sample processing times relative to current approaches. © 2023 Elsevier Ltd
引用
收藏
相关论文
共 50 条
  • [31] Bromination of deactivated polycyclic aromatic nitro compounds
    Andrievskii, A. M.
    Gorelik, M. V.
    Linko, R. V.
    Grachev, M. K.
    RUSSIAN JOURNAL OF ORGANIC CHEMISTRY, 2013, 49 (10) : 1474 - 1481
  • [32] Determination of Kow of substituted polycyclic aromatic compounds
    Riso National Laboratory, Department of Environmental Science, Build. 313, P.O. Box 49, DK-4000 Roskilde, Denmark
    不详
    Polycyclic Aromat. Compd., 3 (187-200):
  • [33] MUTAGENICITY OF CHLORINATED POLYCYCLIC AROMATIC-COMPOUNDS
    BHATIA, AL
    TAUSCH, H
    STEHLIK, G
    ECOTOXICOLOGY AND ENVIRONMENTAL SAFETY, 1987, 14 (01) : 48 - 55
  • [34] Polycyclic aromatic compounds in the greenland marine environment
    Pécseli, M
    Pritzl, G
    Thomsen, M
    Asmund, G
    Christensen, JT
    POLYCYCLIC AROMATIC COMPOUNDS, 2002, 22 (3-4) : 689 - 702
  • [35] POLYCYCLIC AROMATIC-COMPOUNDS - SOME ASPECTS
    ZANDER, M
    ERDOL & KOHLE ERDGAS PETROCHEMIE, 1974, 27 (12): : 807 - 807
  • [36] SPECTRAL RESPONSE OF PHOTOCONDUCTIVITY IN POLYCYCLIC AROMATIC COMPOUNDS
    SANO, M
    AKAMATU, H
    BULLETIN OF THE CHEMICAL SOCIETY OF JAPAN, 1962, 35 (04) : 587 - 594
  • [37] Bromination of deactivated polycyclic aromatic nitro compounds
    A. M. Andrievskii
    M. V. Gorelik
    R. V. Linko
    M. K. Grachev
    Russian Journal of Organic Chemistry, 2013, 49 : 1474 - 1481
  • [38] POLYCYCLIC AROMATIC-COMPOUNDS IN CURING SMOKE
    COLMSJO, AL
    ZEBUHR, YU
    OSTMAN, CE
    ZEITSCHRIFT FUR LEBENSMITTEL-UNTERSUCHUNG UND-FORSCHUNG, 1984, 179 (04): : 308 - 310
  • [39] Determination of Kow of substituted polycyclic aromatic compounds
    Helweg, C
    Nielsen, T
    Hansen, PE
    POLYCYCLIC AROMATIC COMPOUNDS, 1997, 12 (03) : 187 - 200
  • [40] Polycyclic aromatic compounds in West Siberia environment
    Turov, YP
    Gooznjaeva, M
    POLYCYCLIC AROMATIC COMPOUNDS, 2000, 20 (1-4) : 155 - 168