Literature DB >> 15093325

Radium-226 in water, sediments, and fish from lakes near the city of Elliot Lake, Ontario, Canada.

F V Clulow1, N K Davé, T P Lim, R Avadhanula.   

Abstract

Ra-226 was measured by alpha-emission spectroscopy in water, sediments, and fish (tissues and gut contents), from five lakes in a watershed containing U mining and milling operations at Elliot Lake, Ontario, and from control lakes in an adjacent non-industrialized watershed. Ra-226 transfer parameters from lake water and sediments to fish tissues, and annual intakes by humans consuming fish, were estimated. Mean dissolved 226Ra levels ranged from approximately 76 mBq litre(-1) in water of the most affected lake, to < 10 mBq litre(-1) in control lakes. Levels in summer were consistently higher than in fall or winter; no consistent variation with depth was noted. Sediment levels ranged from approximately 3000 mBq g(-1) dry wt in one study lake to < 100 mBq g(-1) dry wt of sediment in control lakes. Bone 226Ra concentrations were higher than in muscle. The lake trout (Salvelinus namaycush), a predatory secondary consumer, had bone 226Ra levels (< 20 mBq g(-1) dry wt) that did not show significant site variation. In contrast, bottom feeding whitefish had significantly more 226Ra in bone tissue (to 38 mBq g(-1) dry wt in the lake whitefish, Coregonus clupeaformis, and 76 mBq g(-1) in round whitefish, Prosopium cylindraceum) in study lakes than in controls (< 20 mBq g(-1) dry wt). Ra-226 levels in lake trout muscle were low and showed erratic variation among lakes whereas levels in whitefish muscle did not vary significantly among study and control sites. Lake herring (= cisco, Coregonus artedii), a planktivorous fish taken only from Quirke Lake, had mean 226Ra levels of 18 and 1.4 mBq g(-1) dry wt in bone and muscle, respectively. Gut 226Ra levels, highest in lake trout from McCabe and Quirke Lakes (126 +/- 53, 64 +/- 44 mBq g(-1) dry wt, respectively), and just detectable in McCabe and Elliot Lake whitefish (24 +/- 2, 36 +/- 14 mBq g(-1) dry wt, respectively), were below detection in lake trout and whitefish from other lakes. Concentration ratios (CRs) of 226Ra from water to muscle ranged from 8 to 14 in lake trout, 7 to 14 in whitefish, and 4 to 6 in lake herring. The water to bone CRs varied from 81 to 142, 314 to 548, and 126 to 272 in the same species. CRs were always < 1 between sediments and fish tissues. Annual intake of 226Ra by human consumers of these fish was estimated to provide an effective dose of 0.003 mSv year(-1). This represents a small fraction of both natural background (> 2 mSv year(-1)) and the public dose limit (5 mSv year(-1)).

Entities:  

Year:  1998        PMID: 15093325     DOI: 10.1016/s0269-7491(97)00176-0

Source DB:  PubMed          Journal:  Environ Pollut        ISSN: 0269-7491            Impact factor:   8.071


  3 in total

1.  Natural radionuclide dose and lifetime cancer risk due to ingestion of fish and water from fresh water reservoirs near the proposed uranium mining site.

Authors:  Sathesh Kumar Annamalai; Kantha Deivi Arunachalam; Rajaram Selvaraj
Journal:  Environ Sci Pollut Res Int       Date:  2017-05-16       Impact factor: 4.223

2.  Concentration ratios of 238U and 226Ra for insects and amphibians living in the vicinity of the closed uranium mine at Ningyo-toge, Japan.

Authors:  Akihiro Sakoda; Shoichi Murakami; Yuu Ishimori; Sawako Horai
Journal:  J Radiat Res       Date:  2020-03-23       Impact factor: 2.724

Review 3.  Whole-body to tissue concentration ratios for use in biota dose assessments for animals.

Authors:  Tamara L Yankovich; Nicholas A Beresford; Michael D Wood; Tasuo Aono; Pål Andersson; Catherine L Barnett; Pamela Bennett; Justin E Brown; Sergey Fesenko; J Fesenko; Ali Hosseini; Brenda J Howard; Mathew P Johansen; Marcel M Phaneuf; Keiko Tagami; Hyoe Takata; John R Twining; Shigeo Uchida
Journal:  Radiat Environ Biophys       Date:  2010-10-08       Impact factor: 1.925

  3 in total

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