Systemic Physiological & Ecotoxicological Research, Department of Biology, University of Antwerp, Groenenborgerlaan 171, 2020 Antwerp, Belgium.
Systemic Physiological & Ecotoxicological Research, Department of Biology, University of Antwerp, Groenenborgerlaan 171, 2020 Antwerp, Belgium.
Sci Total Environ. 2017 May 15;586:792-806. doi: 10.1016/j.scitotenv.2017.02.057. Epub 2017 Feb 14.
This study investigates the trophic transfer of persistent organic pollutants (POPs: PCBs, PBDEs, OCPs and PFASs) in the subtropical aquatic ecosystem of the Olifants River Basin (South Africa) by means of trophic magnification factors (TMFs). Relative trophic levels were determined by stable isotope analysis. POP levels in surface water, sediment and biota were low. Only ∑DDTs levels in fish muscle (<LOQ-61ng/g ww) were comparable or higher than values from other temperate and tropical regions. Significant positive relationships between relative trophic level and PCB, DDT and HCH concentrations were observed so trophic levels play an important role in the movement of contaminants through the food web. TMFs were >1, indicating biomagnification of all detected POPs. Calculated TMFs for PCBs were comparable to TMF values reported from the tropical Congo River basin and lower than TMFs from temperate and arctic regions. For p,p'-DDT, a higher TMF value was observed for the subtropical Olifants River during the winter low flow season than for the tropical Congo river. TMFs of DDTs from the present study were unexpectedly higher than TMFs from temperate and arctic aquatic food webs. The fish species in the aquatic ecosystem of the Olifants River can be consumed with a low risk for POP contamination.
本研究通过营养放大因子(TMFs)调查了持久性有机污染物(POPs:多氯联苯、PBDEs、OCPs 和 PFASs)在亚热带奥尔方茨河流域(南非)水生生态系统中的营养传递。相对营养水平通过稳定同位素分析确定。地表水、沉积物和生物体内的 POP 水平较低。只有鱼类肌肉中的∑DDTs 水平(<LOQ-61ng/g ww)与其他温带和热带地区的值相当或更高。相对营养水平与 PCB、DDT 和 HCH 浓度之间存在显著正相关关系,因此营养水平在污染物通过食物网的迁移中起着重要作用。TMFs 大于 1,表明所有检测到的 POPs 都在生物放大。本研究中计算出的多氯联苯 TMFs 与热带刚果河流域报告的 TMF 值相当,低于温带和北极地区的 TMF 值。对于 p,p'-DDT,冬季低流量季节亚热带奥尔方茨河的 TMF 值高于热带刚果河。本研究中 DDTs 的 TMF 值出人意料地高于温带和北极水生食物网的 TMF 值。奥尔方茨河水生生态系统中的鱼类可以安全食用,POP 污染风险较低。