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可生物降解聚乳酸(PLA)网与传统聚酰胺(PA)三层刺网在鲻鱼(Mugil cephalus)和红鳍鲻(Liza haematocheila)渔业中的物理特性及捕捞性能比较

Comparison of physical properties and fishing performance between biodegradable PLA and conventional PA trammel nets in grey mullet (Mugil cephalus) and red-lip mullet (Liza haematocheila) fishery.

作者信息

Yu Mengjie, Tang Yanli, Min Minghua, Herrmann Bent, Cerbule Kristine, Liu Changdong, Dou Yilin, Zhang Liyou

机构信息

Fisheries College, Ocean University of China, 266003 Qingdao, Shandong, China.

Fisheries College, Ocean University of China, 266003 Qingdao, Shandong, China.

出版信息

Mar Pollut Bull. 2023 Oct;195:115545. doi: 10.1016/j.marpolbul.2023.115545. Epub 2023 Sep 16.

Abstract

Marine plastic pollution and continuous capture of marine animals, so-called "ghost fishing", by abandoned, lost, or otherwise discarded fishing gear (ALDFG) are global concerns. This study investigated whether biodegradable polylactic acid (PLA) monofilaments can be used to replace conventionally used non-biodegradable polyamide (PA) in trammel net fishery for limiting ALDFG associated effects. It evaluated the physical properties of PLA and PA monofilaments and compared fishing performance of PLA and PA trammel nets in a commercial mullet fishery in the Yellow Sea, China. Although PA monofilament exhibited superior physical properties, no significant differences in catch efficiency between PA and PLA trammel nets were observed. Fish of both species were mainly captured by pocketing which can further explain observed similar catch efficiency. These initial results suggest a potential for applying biodegradable materials in trammel net fisheries. Therefore, further long-term testing is encouraged to investigate whether this promising performance is persistent over long-term.

摘要

海洋塑料污染以及废弃、遗失或其他丢弃的渔具(ALDFG)持续捕捞海洋动物(即所谓的“幽灵捕捞”)是全球关注的问题。本研究调查了可生物降解的聚乳酸(PLA)单丝是否可用于替代三层刺网渔业中传统使用的不可生物降解的聚酰胺(PA),以限制与ALDFG相关的影响。研究评估了PLA和PA单丝的物理性能,并在中国黄海的商业鲻鱼渔业中比较了PLA和PA三层刺网的捕鱼性能。尽管PA单丝表现出优异的物理性能,但未观察到PA和PLA三层刺网在捕捞效率上有显著差异。两种鱼类主要通过兜网捕获,这可以进一步解释观察到的相似捕捞效率。这些初步结果表明在三层刺网渔业中应用可生物降解材料具有潜力。因此,鼓励进行进一步的长期测试,以研究这种有前景的性能在长期内是否持续存在。

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