Ghent University , Department of Chemistry, Atomic & Mass Spectrometry Research Unit , Campus Sterre, Krijgslaan 281-S12 , 9000 Ghent , Belgium.
Institute of Marine Research , Postboks 1870 Nordnes , 5817 Bergen , Norway.
Environ Sci Technol. 2019 Feb 19;53(4):1776-1785. doi: 10.1021/acs.est.8b04706. Epub 2019 Feb 1.
Liver and muscle tissue of tusks ( Brosme brosme) have been analyzed for their THg and MeHg concentrations and Hg isotopic signatures for tracing Hg pollution along the Norwegian coast. Clear differences between tissue types and locations were established. At five of the eight locations, the Hg concentration in muscle exceeded the maximum allowable level of 0.5 mg kg wet weight. δHg values in both tissue types indicated that Hg speciation affects the bulk Hg isotopic signature. Tusk liver seems to be more sensitive to immediate changes and to anthropogenic inorganic Hg, while the muscle rather reflects the Hg accumulated over a longer period of exposure. The δHg values of liver and muscle also enabled different sources of Hg and exposure pathways to be distinguished. δHg-δHg showed a clear correlation with the % MeHg in tusk liver for the coastal waters, but not for the fjords. The absence of significant differences in ΔHg values between both tissues of tusk from the same location suggests that in vivo metabolic processes are the underlying reason for the differences in Hg speciation and in δHg values. This work highlights the importance of selecting different tissues of marine fish in future Hg monitoring programs.
对獠牙(Brosme brosme)的肝脏和肌肉组织进行了分析,以测定其总汞 (THg) 和甲基汞 (MeHg) 浓度和汞同位素特征,以追踪挪威沿海的汞污染。确定了组织类型和位置之间的明显差异。在八个地点中的五个地点,肌肉中的汞浓度超过了 0.5 毫克/千克湿重的最大允许水平。两种组织类型的 δHg 值表明,汞形态会影响总汞同位素特征。獠牙肝脏似乎对即时变化和人为无机汞更敏感,而肌肉则反映了在较长时间暴露过程中积累的汞。肝脏和肌肉的 δHg 值还能够区分不同来源的汞和暴露途径。δHg-δHg 值与沿海水域獠牙肝脏中 MeHg 的百分比呈明显相关性,但与峡湾无关。同一地点獠牙的两种组织之间 ΔHg 值没有明显差异,这表明体内代谢过程是导致汞形态和 δHg 值差异的根本原因。这项工作强调了在未来的汞监测计划中选择不同海洋鱼类组织的重要性。