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首页> 外文期刊>ICES Journal of Marine Science >Reducing bycatch in beam trawls and electrotrawls with (electrified) benthos release panels
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Reducing bycatch in beam trawls and electrotrawls with (electrified) benthos release panels

机译:减少带有(带电的)Benthos释放板的拖网拖网和电拖网的副渔获物

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摘要

Benthos release panels (BRPs) are known for their capacity to release large amounts of unwanted benthos and debris, which can decrease mortality on these animals and eases the on board sorting process aboard demersal beam trawlers. They can reduce the bycatch of undersized fish, which is desired once the European discard ban is implemented. However, unacceptable commercial losses of sole (Solea solea L.) and damage to the BRP as a consequence of suboptimal and unsuitable rigging in the traditional beam trawl with chain mat, is hampering a successful introduction in commercial beam-trawl fisheries. To eliminate these drawbacks, square-meshed BRPs with different mesh sizes (150, 200, and 240 mm) were rigged in a trawl with square net design as used in electrotrawls and tested for selectivity. In addition to this, the effect of electric stimulation at the height of the BRP to eliminate the loss of commercial sole was examined. According to our observations, no abrasion of the net attributable to suboptimal rigging occurred in any of the BRPs tested. The catch comparisons showed significant release of benthos and undersized fish in all panel mesh sizes, but there was always a significant loss of marketable sole in the 150, 200, and 240mm BRPs. Adding a 80 Hz electric cramp stimulus to the BRP, resulted in equal catches of sole larger than 25 cm as the standard net, without negatively affecting the release of benthos and most undersized commercial fish. This clearly demonstrates the promising potential of electrified BRPs (eBRPs), but further optimization by using smaller BRP mesh sizes or optimized electric stimuli is warranted to retain all marketable sole.
机译:Benthos释放板(BRP)以释放大量不需要的底栖动物和杂物的能力而著称,这可以降低这些动物的死亡率,并简化沉水拖网渔船的机载分类过程。它们可以减少过小的鱼的兼捕,这是欧洲废除禁令实施后所希望的。但是,由于传统的带链垫的拖网的次优和不合适的索具,导致鞋底(Solea solea L.)的商业损失和对BRP的破坏是无法接受的,这阻碍了在商业拖网渔业中的成功引进。为了消除这些缺点,将具有不同筛孔尺寸(150、200和240毫米)的方形筛BRP装在电拖网中的方形网拖网中,并进行选择性测试。除此之外,还研究了在BRP高度进行电刺激以消除商业鞋底损耗的影响。根据我们的观察,在任何测试的BRP中,均未发生因次优操纵而造成的净磨损。渔获量的比较表明,在所有面板目尺寸的底栖动物和尺寸过小的鱼中,大量释放底栖动物,但在150、200和240毫米BRP中始终存在大量可销售的鞋底损失。在BRP上添加80 Hz的电抽筋刺激措施,可以使大于25厘米的唯一底部被捕获,成为标准网,而对底栖动物和大多数尺寸较小的商品鱼的释放没有负面影响。这清楚地证明了带电BRP(eBRP)的潜力,但是通过使用较小的BRP网格尺寸或优化的电刺激进行进一步优化,可以保留所有可销售的鞋底。

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