Electrotrawling can improve the sustainability of the bottom trawl fishery for sole: a review of the evidence

IF 5.9 1区 农林科学 Q1 FISHERIES Reviews in Fish Biology and Fisheries Pub Date : 2024-05-14 DOI:10.1007/s11160-024-09867-x
Adriaan D. Rijnsdorp, Pim G. Boute, Justin C. Tiano, Dick de Haan, Marloes Kraan, Hans Polet, Edward Schram, Maarten Soetaert, Nathalie A. Steins, Martin Lankheet, Karline Soetaert
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Abstract

Between 2009 and 2021 almost the complete beam trawl fleet of the Netherlands switched from conventional beam trawls (BT) to pulse trawls (PT) using electrical stimulation to catch sole, Solea solea. Electric fishing, being banned in the EU in 1988, was made possible in 2006 under a derogation. Over the years stakeholders expressed concern about ecosystem effects. Here we review the research conducted. PT improved the selectivity of the fishery and reduced the ecological side effects. PT caught more sole per hour fishing but less discards and benthos than BT. The transition to PT reduced the surface area swept (lower towing speed), sediment depth of disturbance and associated benthic impacts, as well as fuel consumption. Laboratory experiments with 9 fish and 17 benthic invertebrate species showed that exposure to a commercial bipolar pulse stimulus did not result in harmful effects except in cod. Autopsy of cod sampled from PT revealed that 40% had an internal injury. Injury rates in other roundfish species was low (< 2%) and absent in flatfish. Electrical-induced impacts on biogeochemistry were not observed. The transition increased competition with other fishers which fed the resentment against PT. Governance arrangements under which the number of temporary licenses expanded, undermined legitimacy of the gear, resulting in a ban in 2021. Although questions about the ecological impact of electrical stimulation remain, adverse effects are considered negligible in comparison with the benefits.

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电拖网可提高底拖网捕捞鳎鱼的可持续性:证据审查
2009 年至 2021 年间,荷兰几乎所有的束拖网船队都从传统的束拖网(BT)转为使用电刺激的脉冲拖网(PT)来捕捞鳎鱼(Solea solea)。欧盟于 1988 年禁止电捕鱼,但在 2006 年通过了一项减损规定。多年来,利益相关者对生态系统的影响表示担忧。在此,我们回顾了所开展的研究。PT 提高了渔业的选择性,减少了生态副作用。与 BT 相比,PT 每小时捕获的鳎鱼更多,但丢弃物和底栖动物更少。向 PT 过渡减少了掠过的表面积(降低了拖曳速度)、扰动的沉积深度和相关的底栖生物影响以及燃料消耗。对 9 种鱼类和 17 种海底无脊椎动物进行的实验室实验表明,除鳕鱼外,暴露在商业双极脉冲刺激下不会产生有害影响。从 PT 取样的鳕鱼尸体解剖显示,40% 的鳕鱼有内伤。其他圆鳍鱼类的受伤率较低(2%),比目鱼则没有受伤。没有观察到电引起的对生物地球化学的影响。过渡时期增加了与其他渔民的竞争,从而加剧了对临时渔场的不满。临时许可证数量增加的治理安排破坏了渔具的合法性,导致 2021 年的禁令。尽管电刺激对生态的影响仍然存在问题,但与好处相比,不利影响可以忽略不计。
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来源期刊
Reviews in Fish Biology and Fisheries
Reviews in Fish Biology and Fisheries 农林科学-海洋与淡水生物学
CiteScore
10.00
自引率
8.10%
发文量
42
审稿时长
12-24 weeks
期刊介绍: The subject matter is focused on include evolutionary biology, zoogeography, taxonomy, including biochemical taxonomy and stock identification, genetics and genetic manipulation, physiology, functional morphology, behaviour, ecology, fisheries assessment, development, exploitation and conservation. however, reviews will be published from any field of fish biology where the emphasis is placed on adaptation, function or exploitation in the whole organism.
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