Methylmercury in commercial fish species from the Erhai Lake Basin, Southwest China: concentrations, health risk assessment, and implications for future monitoring

被引:0
作者
Hu, Wenxian [1 ]
Chen, Jingrui [2 ]
Chao, Le [2 ]
Kang, Bin [3 ]
Sun, Jiachen [2 ]
机构
[1] Erhai Watershed Ecological Environment Quality Testing Engineering Research Center of Yunnan Provincial Universities, Erhai Research Institute, West Yunnan University of Applied Sciences, Dali
[2] College of Marine Life Sciences, Ocean University of China, Qingdao
[3] Key Laboratory of Mariculture (Ocean University of China), Ministry of Education, Qingdao
关键词
Aquatic ecosystem; Bioaccumulation; Legacy contaminants; Pollution; Toxic elements;
D O I
10.1007/s11356-024-34947-7
中图分类号
学科分类号
摘要
Erhai Lake, a highland lake situated in Southwest China, provides critical aquatic protein sources for the local community, and its preservation is vital due to the sensitivity of alpine freshwater ecosystems to disturbance. However, there is a lack of research on the contamination status of methylmercury (MeHg) in aquatic organisms of the Erhai Lake Basin. MeHg concentrations in important commercial fish species from the Erhai Lake were examined, and the potential health risks associated with human consumption were assessed. Our results showed significant inter-species differences in fish muscle MeHg: the carnivorous S. asotus exhibited the highest level (303 ng/g; ww), while that of the detritivorous R. ocellatus was the lowest (3.86 ng/g). Moreover, MeHg concentrations in P. fulvidraco and C. auratus collected from the Luoshi River (a major tributary of Erhai Lake) were significantly higher compared to those from the Erhai Lake, indicating possible river-based input of MeHg into the Erhai Lake. Additionally, our study revealed a significant positive correlation between the MeHg levels and the length as well as weight of the examined fish species. All the fish species analyzed in our study had MeHg concentrations within the limits of China’s food safety standard. Nevertheless, a relatively low consumption quantity of 16 g per day of certain species (i.e., S. asotus) may still pose potential health risks especially for children. The present study provides baseline data for MeHg monitoring and risk assessment in the Erhai Lake Basin, and warrants continued monitoring and source investigation. © The Author(s), under exclusive licence to Springer-Verlag GmbH Germany, part of Springer Nature 2024.
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页码:56473 / 56481
页数:8
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共 57 条
  • [1] Andersen J.L., Depledge M.H., A survey of total mercury and methylmercury in edible fish and invertebrates from Azorean waters, Mar Environ Res, 44, pp. 331-350, (1997)
  • [2] Agency for Toxic Substances and Disease Registry (ATSDR), Toxicological profile for mercury (draft for public comment), Atlanta, GA: U.S. Department of Health and Human Services, Public Health Service, (1999)
  • [3] Baptista-Salazar C., Liem-Nguyen V., Jonsson S., Experiments revealing the formation of refractory methylmercury pools in natural sediments and soils, Geochim Cosmochim Acta, 328, pp. 76-84, (2022)
  • [4] Basaran B., Assessment of aluminum via baby foods consumption in Turkey: estimated early-life dietary exposure and target hazard quotient, Biol Trace Elem Res, 200, pp. 3892-3901, (2022)
  • [5] Blanchfield P.J., Rudd J.W.M., Hrenchuk L.E., Amyot M., Babiarz C.L., Beaty K.G., Bodaly R.A.D., Branfireun B.A., Gilmour C.C., Graydon J.A., Hall B.D., Harris R.C., Heyes A., Hintelmann H., Hurley J.P., Kelly C.A., Krabbenhoft D.P., Lindberg S.E., Mason R.P., Paterson M.J., Podemski C.L., Sandilands K.A., Southworth G.R., St Louis V.L., Tate L.S., Tate M.T., Experimental evidence for recovery of mercury-contaminated fish populations, Nature, 601, pp. 74-78, (2022)
  • [6] Boening D.W., Ecological effects, transport, and fate of mercury: a general review, Chemosphere, 40, pp. 1335-1351, (2000)
  • [7] Bosch A.C., O'Neill B., Sigge G.O., Kerwath S.E., Hoffman L.C., Mercury accumulation in Yellowfin tuna (Thunnus albacares) with regards to muscle type, muscle position and fish size, Food Chem, 190, pp. 351-356, (2016)
  • [8] Campbell L.M., Osano O., Hecky R.E., Dixon D.G., Mercury in fish from three rift valley lakes (Turkana, Naivasha and Baringo), Kenya, East Africa, Environ Pollut, 125, pp. 281-286, (2003)
  • [9] Carwile J.L., Butler L.J., Janulewicz P.A., Winter M.R., Aschengrau A., Childhood fish consumption and learning and behavioral disorders, Int J Environ Res Public Health, 13, (2016)
  • [10] Chao L., Ni G., Ge Y., Zhang C., Chen J., Sun J., Occurrence, dietary influence and risks of selected trace metals in different coastal predatory species, Environ Res, 245, (2024)