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Residual levels of DDTs and PAHs in freshwater and marine fish from Hong Kong markets and their health risk assessment

机译:香港市场淡水和海水鱼类中滴滴涕和多环芳烃的残留量及其健康风险评估

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Axial and ventral muscle from 10 each species of freshwater and marine fish purchased from markets in Hong Kong were analyzed for dichlorodiphenyltrichloroethane (total DDTs including DDE, DDD and DDT) and polycyclic aromatic hydrocarbons (PAHs). Among the 10 freshwater fish species, rice field eel (Monopterus albus) showed significantly higher levels of DDTs in both ventral (125 ng/g wet wt) and axial muscle (127 ng/g wet wt) than the other species. The highest concentration of PAHs was detected in catfish (Clarias fuscus), with 24.8 ng/g in ventral muscle and 9.1 ng/g in axial muscle. As to marine fish, snubnose pompano {Trachinotus blochii) showed significantly higher levels of DDT and its metabolites (1018 ng/g in ventral and 409 ng/g wet wt in axial tissues) than all other marine fish species. The overall concentrations of PAHs in marine fish species were 15.5-57.0 ng/g (axial muscle) and 18.1-118 ng/g wet wt (ventral muscle) where yellow seafin (Acanthopeyrus latus) and golden threadfin bream (Nemipterus virgatus) exhibited the highest concentrations of PAHs in the axial and ventral muscles, respectively. In general, results showed that levels of PAHs in Hong Kong market fish was low and do not expect to cause any concern for human consumption. However, the levels of DDTs in fish samples ranged from 1.10 to 1018 ng/g wet wt, and based on a fish consumption rate of 142.2 g/day to calculate the screening value of 14.4 ng/g wet wt for human consumption (USEPA, 2000. Guidance for assessing chemical contaminant, data for use in fish advisories, vol. 1: fish sampling and analysis, third ed. EPA 823-R-95-007. Office of Water, Washington, DC), there were 9 out of 20 (45%) muscle samples of freshwater fish species and 14 out of 20 (70%) muscle samples of marine fish species had elevated levels of DDTs exceeded the screening value. It was also suggested to use ventral muscle for detecting concentrations of persistent organic pollutants in fish.
机译:分析了从香港市场购买的每种淡水和海水鱼类中每种10种的轴和腹肌的二氯二苯基三氯乙烷(包括滴滴涕,滴滴涕和滴滴涕在内的总滴滴涕)和多环芳烃(PAHs)。在这10种淡水鱼物种中,稻田鳗(Monopterus albus)在腹侧(125 ng / g湿重)和轴向肌肉(127 ng / g湿重)中均显示出较高的DDTs水平。在cat鱼(Clarias fuscus)中检测到最高的PAHs浓度,腹肌中为24.8 ng / g,轴向肌中为9.1 ng / g。对于海水鱼,纳豆po(Trachinotus blochii)显示出比所有其他海水鱼高得多的DDT及其代谢产物水平(腹侧1018 ng / g,轴向组织湿重409 ng / g)。海洋鱼类中PAHs的总浓度为15.5-57.0 ng / g(中轴肌)和18.1-118 ng / g湿重(腹肌),其中黄色海鳍(Acanthopeyrus latus)和金线鲷(Nemipterus virgatus)表现出轴向和腹侧肌肉中PAHs的浓度最高。总体而言,结果表明,香港市场鱼类的PAHs水平较低,并且预计不会引起人类消费。但是,鱼样品中的滴滴涕含量为1.10至1018 ng / g湿重,根据鱼的消费量142.2 g /天计算出人类食用的14.4 ng / g湿重的筛选值(美国环保局, 2000年,《评估化学污染物的指南,鱼类咨询中使用的数据,第1卷:鱼类抽样和分析》,第三版EPA 823-R-95-007(华盛顿特区水务局),其中9分淡水鱼物种的20个(45%)肌肉样本和海水鱼物种的20个(70%)肌肉样本中有14个的DDTs含量超过了筛选值。还建议使用腹肌来检测鱼类中持久性有机污染物的浓度。

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