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长期使用对生物降解刺网捕捞效率的影响。

The effect of long-term use on the catch efficiency of biodegradable gillnets.

机构信息

SINTEF Ocean, Fisheries Technology, Brattørkaia 17C, N-7010 Trondheim, Norway; The Arctic University of Norway, UiT, Breivika, N-9037 Tromsø, Norway.

SINTEF Ocean, Fisheries Technology, Brattørkaia 17C, N-7010 Trondheim, Norway; The Arctic University of Norway, UiT, Breivika, N-9037 Tromsø, Norway.

出版信息

Mar Pollut Bull. 2020 Dec;161(Pt B):111823. doi: 10.1016/j.marpolbul.2020.111823. Epub 2020 Nov 5.

Abstract

The effect of long-term use on the catch efficiency of biodegradable gillnets was investigated during commercial fishing trials and in controlled lab aging tests. The relative catch efficiency between biodegradable and nylon gillnets was evaluated over three consecutive fishing seasons for Atlantic cod (Gadus morhua) in Norway. The biodegradable gillnets progressively lost catch efficiency over time, as they caught 18.4%, 40.2%, and 47.4% fewer fish than the nylon gillnets during the first, second, and third season, respectively. A 1000-hour aging test revealed that both materials began to degrade after just 200 h and that biodegradable gillnets degraded faster than the nylon gillnets. Infrared spectroscopy revealed that the chemical structure of the biodegradable polymer changed more than the nylon. Although less catch efficient than nylon gillnets, biodegradable gillnets have great potential for reducing both capture in lost fishing gear and plastic pollution at sea, which are major problems in fisheries worldwide.

摘要

在商业捕捞试验和受控实验室老化试验中研究了长期使用对生物可降解刺网的捕捞效率的影响。在挪威,对大西洋鳕鱼(Gadus morhua)进行了三个连续捕捞季节的研究,评估了生物可降解刺网和尼龙刺网之间的相对捕捞效率。随着时间的推移,生物可降解刺网的捕捞效率逐渐下降,在第一个、第二个和第三个季节,它们分别比尼龙刺网少捕获了 18.4%、40.2%和 47.4%的鱼。1000 小时的老化试验表明,两种材料在仅仅 200 小时后就开始降解,而且生物可降解刺网比尼龙刺网降解得更快。红外光谱显示,生物可降解聚合物的化学结构变化比尼龙更大。尽管生物可降解刺网的捕捞效率不如尼龙刺网,但它在减少渔具丢失造成的捕捞和海洋塑料污染方面具有巨大的潜力,这是全球渔业面临的主要问题。

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