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首页> 外文期刊>Journal of biological systems >MODELING THE DIRECT AND INDIRECT EFFECTS OF POLLUTANTS ON THE SURVIVAL OF FISH IN WATER BODIES
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MODELING THE DIRECT AND INDIRECT EFFECTS OF POLLUTANTS ON THE SURVIVAL OF FISH IN WATER BODIES

机译:塑造污染物对水体鱼类存活的直接和间接影响

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Several sources of water pollution are causing negative consequences to marine life. The organisms that are more affected are fishes and marine mammals since they are at the top of the food chain. They are directly exposed to high levels of toxins in water and/or they feed on other fishes that are contaminated. Unfortunately, the main cause of the contaminations, and thus of the fish deaths, come from human activities, such as industry, agriculture, municipal wastewater and solid wastes. The present study is concerned with the effect of organic and inorganic pollutants on the survival of fish in water bodies. We introduce a nonlinear mathematical model by considering five interacting variables; organic pollutants, inorganic pollutants, bacteria, dissolved oxygen and fish in the water body. The model is analyzed using the stability theory of differential equations and to confirm the analytical findings, numerical simulations are performed. Our results suggest that to maintain water quality and to save fish life, the global community has to limit the release of organic and inorganic pollutants into the aquatic system.
机译:几个水污源来源导致海洋生物的负面影响。更受影响的生物是鱼类和海洋哺乳动物,因为它们位于食物链的顶部。它们直接暴露于水中的高水平毒素和/或它们在污染的其他鱼类上喂食。不幸的是,污染物的主要原因,并因此是鱼死,来自人类活动,如行业,农业,市政废水和固体废物。本研究涉及有机和无机污染物对水体鱼类存活的影响。通过考虑五个相互作用变量,我们介绍非线性数学模型;有机污染物,无机污染物,细菌,溶解氧和水体中的鱼类。使用微分方程的稳定性理论分析该模型,并确认分析结果,执行数值模拟。我们的结果表明,为了保持水质和拯救鱼类生活,全球社区必须将有机和无机污染物的释放释放到水产系统中。

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