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工业水产养殖中的微塑料:水生环境、饲料和生物(斜带石斑鱼)中的存在。

Microplastic in industrial aquaculture: Occurrence in the aquatic environment, feed and organisms (Dicentrarchus labrax).

机构信息

Department of Environmental Technologies, Faculty of Marine and Environmental Sciences, University of Cadiz, 11510 Puerto Real, Cádiz, Spain.

Department of Environmental Technologies, Faculty of Marine and Environmental Sciences, University of Cadiz, 11510 Puerto Real, Cádiz, Spain.

出版信息

Sci Total Environ. 2023 Dec 15;904:166774. doi: 10.1016/j.scitotenv.2023.166774. Epub 2023 Sep 1.

DOI:10.1016/j.scitotenv.2023.166774
PMID:37660804
Abstract

The increasing use of plastics and the growing concern about their impact on the environment and living beings makes it necessary to study how microplastics (MP) affect aquaculture systems. In order to gain an in-depth understanding of these systems, this study covers the water intake, the purification treatment at the inlet, the water in the culture tanks, as well as the feed used in the feeding and the organism itself. For this purpose, five samples were taken, both in the water line, feed and sea bass during the weeks of the experiment. It is shown that the available purification systems reduce the amount of MP entering from the receiving environment. However, new MP are observed in the sea bass tank, which may be due mainly to those added through the feed and found in the feed, as well as in the piping and other materials used in current aquaculture systems (PTFE, PA, among others). If focusing on the feed that can reach the consumer, in the case of this study, carried out with sea bass, some types of MP (PE, PTFE, PS and PA) were found in 4 head samples and 4 skin/muscle samples. Although inlet water purification systems manage to reduce a high percentage of MPs in the system, it is observed that there are other access routes that should be considered and reduced in aquaculture facilities to prevent them from reaching the human consumer.

摘要

随着塑料使用量的增加,以及人们对其对环境和生物影响的日益关注,研究微塑料 (MP) 如何影响水产养殖系统变得尤为必要。为了深入了解这些系统,本研究涵盖了进水、入口处的净化处理、养殖水箱中的水、投喂的饲料以及养殖生物本身。为此,在实验的几周内,从进水管线、饲料和鲈鱼中采集了五个样本。结果表明,现有的净化系统可减少从接收环境进入的 MP 数量。然而,在鲈鱼养殖箱中观察到了新的 MP,这可能主要是由于通过饲料添加以及在饲料、管道和其他当前水产养殖系统中使用的材料(PTFE、PA 等)中发现的 MP。如果将重点放在可到达消费者的饲料上,在本研究中,以鲈鱼为例,在 4 个头样本和 4 个皮肤/肌肉样本中发现了一些类型的 MP(PE、PTFE、PS 和 PA)。尽管入口水净化系统设法减少了系统中高比例的 MPs,但观察到仍有其他进入途径需要在水产养殖设施中加以考虑和减少,以防止它们到达人类消费者。

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