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[广西龙江河鱼类镉的分布及生物富集特征]

[Distribution and Bioaccumulation Characteristics of Cadmium in Fish Species from the Longjiang River in the Guangxi Autonomous Region].

作者信息

Wang Jun-Neng, Zhao Xue-Min, Hu Guo-Cheng, Zhong Song-Xiong, Yao Ling-Ai, Ma Qian-Li, Xu Zhen-Cheng

机构信息

South China Institute of Environmental Science, Ministry of Environmental Protection, Guangzhou 510655, China.

Guangzhou Institute of Geochemistry, Chinese Academy of Sciences, Guangzhou 510640, China.

出版信息

Huan Jing Ke Xue. 2019 Jan 8;40(1):488-495. doi: 10.13227/j.hjkx.201805013.

Abstract

Emergent cadmium pollution can cause water quality deterioration in rivers, which destroys the aquatic eco-environment and poses threats to human health. Fish species in these aquatic systems are prone to such pollution incidents and act as important indicators of the pollution level. Because cadmium enters the systematic circulation of fish and is non-biodegradable, the investigation of cadmium accumulation in fish bodies provides insights into the detrimental effects of cadmium pollution on the aquatic biological system. This research aims to validate the eco-environmental risks associated with emergent cadmium pollution incidents based on the investigation of the different tissues and organs of diverse fish species. The investigation was conducted six times along the Longjiang River using sampling methods during which all fish species were also classified and analyzed based on the water layer they reside in and their feeding habits. The results show that the cadmium concentration in the fish tissues is significantly higher in the former three investigations compared with that of the latter three analyses. For herbivorous, carnivorous, and omnivorous fish species, the cadmium concentration of their different tissues and organs follows the order:kidney > liver > gut > gill > egg > scale ≈ muscle. The cadmium concentration in the kidney is significantly higher (<0.05) than that in any other organs of the fish species. This agrees with the fact that the kidney intensively metabolizes and accumulates heavy metals. The cadmium concentration in the same tissues or organs of the fish species living in different water layers follows the trend:demersal fish species > middle lower-layer species > middle upper-layer species. The sequence of the cadmium bioaccumulation factors in the muscles of different fish species is omnivore > carnivorous > herbivorous, that is, 8.32, 6.33, and 5.15, respectively, while the bioaccumulation factors in the muscles of the fish species in different water layers decrease in the following sequence:demersal fish species (8.18) > middle bottom-layer fish species (7.70) > middle upper-layer fish species (4.99). These experimental results indicate the biomagnification effects in heavy metal-polluted aquatic environments, where the bioaccumulation of heavy metals by fish is related to both the overall pollution level and local residential environment.

摘要

突发性镉污染会导致河流水质恶化,破坏水生生态环境,并对人类健康构成威胁。这些水生系统中的鱼类容易受到此类污染事件的影响,并作为污染程度的重要指标。由于镉进入鱼类的系统循环且不可生物降解,因此对鱼体内镉积累的研究有助于深入了解镉污染对水生生物系统的有害影响。本研究旨在通过对不同鱼类的不同组织和器官进行调查,验证与突发性镉污染事件相关的生态环境风险。沿着龙江河采用采样方法进行了六次调查,在此期间,所有鱼类还根据它们所处的水层和食性进行了分类和分析。结果表明,前三次调查中鱼类组织中的镉浓度明显高于后三次分析中的浓度。对于草食性、肉食性和杂食性鱼类,其不同组织和器官中的镉浓度顺序为:肾脏>肝脏>肠道>鳃>卵>鳞片≈肌肉。肾脏中的镉浓度明显高于(<0.05)鱼类的任何其他器官。这与肾脏强烈代谢和积累重金属的事实相符。生活在不同水层的鱼类同一组织或器官中的镉浓度遵循以下趋势:底栖鱼类>中下层鱼类>中上层鱼类。不同鱼类肌肉中镉生物累积因子的顺序为杂食性>肉食性>草食性,分别为8.32、6.33和5.15,而不同水层鱼类肌肉中的生物累积因子按以下顺序降低:底栖鱼类(8.18)>中底层鱼类(7.70)>中上层鱼类(4.99)。这些实验结果表明了重金属污染的水生环境中的生物放大效应,其中鱼类对重金属的生物累积与总体污染水平和当地栖息环境都有关。

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