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明白我的意思吗?从鲑鱼养殖网清洗的生物污垢废物的农场间扩散:对鱼类健康的潜在风险。

Catch my drift? Between-farm dispersal of biofouling waste from salmon pen net cleaning: Potential risks for fish health.

机构信息

SINTEF Ocean, Trondheim, Norway.

SINTEF Ocean, Trondheim, Norway.

出版信息

Sci Total Environ. 2024 Jun 10;928:172464. doi: 10.1016/j.scitotenv.2024.172464. Epub 2024 Apr 15.

Abstract

Biofouling is a serious challenge for global salmon aquaculture and farmers have to regularly clean pen nets to avoid impacts on stock health and farms' structural integrity. The removed material is released into the surrounding environment. This includes cnidarian species such as hydroids, whose nematocyst-bearing fragments can impact gill health and fish welfare. There is also increasing evidence of the association of parasites and pathogens with biofouling organisms and cleaning fragments. It is unknown whether and how far local current regimes disperse biofouling material and whether this material reaches and interacts with adjacent pens or even neighbouring farms downstream, or wild fish populations in surrounding environments. We focussed on the cnidarian hydroid Ectopleura larynx, one of the most abundant biofouling species on Norwegian aquaculture installations. Using a 3D hydrodynamic model parameterised with physical and biological properties of hydroid particles (derived via field and laboratory studies), we simulated the dispersal of net cleaning waste from two Norwegian salmon farms. Our results demonstrate that net cleaning waste is extensively dispersed throughout neighbouring pens, and even to adjacent aquaculture facilities. Salmon were exposed to concentrations of biofouling particles up to 41-fold elevated compared to background concentrations, and for up to 30.5 h. Maximum dispersal distance of hydroid particles was 5.5 km from the point of release, achieved largely within 48 h. Least-cost distance calculations show that this distance exceeds the nearest-neighbour distance of 70 % of Norway's salmon farms (654 farms). Our study provides some evidence that actions taken to manage biofouling at salmon farms may affect neighbouring farms and surrounding natural environments. The results highlight the potential risks associated with net cleaning: the dispersal of harmful cnidarian particles, associated pathogens, and non-indigenous species, thus underlining the need for novel farming or net cleaning technologies that prevent the release of potentially harmful cleaning waste.

摘要

生物污垢是全球鲑鱼养殖业面临的严重挑战,养殖户必须定期清理网箱,以避免对鱼类健康和养殖场结构完整性造成影响。被清除的物质会释放到周围环境中。这包括水螅纲动物等刺胞动物,它们的刺丝囊碎片会影响鱼类的鳃健康和福利。越来越多的证据表明,寄生虫和病原体与生物污垢生物有关,而且清理碎片也是如此。目前尚不清楚当地水流系统是否以及在多大程度上分散生物污垢物质,以及这些物质是否到达并与相邻网箱甚至下游的相邻养殖场或周围环境中的野生鱼类种群相互作用。我们专注于水螅纲生物水螅 Ectopleura larynx,这是挪威水产养殖设施中最丰富的生物污垢物种之一。我们使用一个 3D 水动力模型,该模型使用通过现场和实验室研究得出的水螅颗粒的物理和生物特性进行参数化,模拟了来自两个挪威鲑鱼养殖场的网箱清洁废物的扩散。我们的研究结果表明,网箱清洁废物广泛分散在相邻的网箱中,甚至扩散到相邻的水产养殖设施中。鲑鱼暴露在生物污垢颗粒中的浓度比背景浓度高出高达 41 倍,持续时间长达 30.5 小时。水螅颗粒的最大扩散距离为释放点的 5.5 公里,在 48 小时内大部分都达到了。最低成本距离计算表明,这个距离超过了挪威鲑鱼养殖场最近邻距离的 70%(654 个农场)。我们的研究提供了一些证据,表明在鲑鱼养殖场采取的管理生物污垢的措施可能会影响到周围的养殖场和自然环境。研究结果强调了网箱清洁带来的潜在风险:有害刺胞动物颗粒、相关病原体和非本地物种的扩散,因此需要新型的养殖或网箱清洁技术,以防止潜在有害清洁废物的释放。

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