{"title":"Grid-net design that successfully reduces discarded catch and damage to benthic species in the veined rapa whelk beam trawl fishery","authors":"A. Eryaşar","doi":"10.1080/17451000.2022.2123523","DOIUrl":null,"url":null,"abstract":"ABSTRACT In this study, a grid-net design (GND) with three different bar spacings was compared with the commercial beam trawl used in the veined rapa whelk fishery to minimize the discarded catch amount and the loss of commercial product. In addition, the damage and mortality rates of the species that entered the tested fishing gear were determined to understand whether the tested fishing gear has a possible negative effect on benthic species. In the grid-net design, a rectangular metallic grid positioned 6 cm off the ground substituted half of the codend to allow the escape of discard species. Sea trials were carried out in the south-eastern Black Sea between 13 and 24 October 2021. Results showed that the discarded catch amount was significantly reduced by each GND (P < 0.05). Compared with the commercial fishing gear, the reductions in the discarded catch amounts (in terms of number) were 91.6%, 92.2%, and 95.0% for 22, 25, and 28 mm GNDs, respectively. The minimum commercial product loss was determined at 22 mm GND. In addition, it was seen that each GND compared to commercial gear caused statistically significantly less damage and mortality on the discarded species. In conclusion, 22 mm GND was the most successful design among the tested gears in minimizing commercial product loss and reducing the discarded catch amount. Recommendations are given for this design to be adopted by the commercial fleet.","PeriodicalId":18195,"journal":{"name":"Marine Biology Research","volume":"18 1","pages":"335 - 346"},"PeriodicalIF":1.0000,"publicationDate":"2022-07-03","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Marine Biology Research","FirstCategoryId":"99","ListUrlMain":"https://doi.org/10.1080/17451000.2022.2123523","RegionNum":4,"RegionCategory":"生物学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q4","JCRName":"ECOLOGY","Score":null,"Total":0}
引用次数: 0
Abstract
ABSTRACT In this study, a grid-net design (GND) with three different bar spacings was compared with the commercial beam trawl used in the veined rapa whelk fishery to minimize the discarded catch amount and the loss of commercial product. In addition, the damage and mortality rates of the species that entered the tested fishing gear were determined to understand whether the tested fishing gear has a possible negative effect on benthic species. In the grid-net design, a rectangular metallic grid positioned 6 cm off the ground substituted half of the codend to allow the escape of discard species. Sea trials were carried out in the south-eastern Black Sea between 13 and 24 October 2021. Results showed that the discarded catch amount was significantly reduced by each GND (P < 0.05). Compared with the commercial fishing gear, the reductions in the discarded catch amounts (in terms of number) were 91.6%, 92.2%, and 95.0% for 22, 25, and 28 mm GNDs, respectively. The minimum commercial product loss was determined at 22 mm GND. In addition, it was seen that each GND compared to commercial gear caused statistically significantly less damage and mortality on the discarded species. In conclusion, 22 mm GND was the most successful design among the tested gears in minimizing commercial product loss and reducing the discarded catch amount. Recommendations are given for this design to be adopted by the commercial fleet.
摘要在本研究中,将三种不同间距的网格网设计(GND)与脉纹雷帕螺渔业中使用的商业束拖网进行了比较,以最大限度地减少丢弃的渔获量和商业产品的损失。此外,还确定了进入测试渔具的物种的损害率和死亡率,以了解测试渔具是否可能对底栖物种产生负面影响。在网格网设计中,矩形金属网格位于6 离地厘米的地方取代了一半的codend,以允许废弃物种逃跑。2021年10月13日至24日在黑海东南部进行了海上试验。结果表明,每种GND都能显著减少废弃渔获物的数量(P < 与商业渔具相比,22、25和28号渔具的丢弃渔获量(以数量计)分别减少了91.6%、92.2%和95.0% mm GND。最小商业产品损失确定为22 mm接地。此外,可以看出,与商用齿轮相比,每个GND对废弃物种造成的损害和死亡率在统计上显著降低。总之,22 mm GND是测试齿轮中在最大限度地减少商业产品损失和减少丢弃捕获量方面最成功的设计。建议商业车队采用该设计。
期刊介绍:
Marine Biology Research (MBRJ) provides a worldwide forum for key information, ideas and discussion on all areas of marine biology and biological oceanography. Founded in 2005 as a merger of two Scandinavian journals, Sarsia and Ophelia, MBRJ is based today at the Institute of Marine Research, Bergen, Norway. The Journal’s scope encompasses basic and applied research from all oceans and marine habitats and on all marine organisms, the main criterium for acceptance being quality.