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首页> 外文期刊>Aquatic Conservation: Marine and Freshwater Ecosystems >Reducing the impact of blue mussel (Mytilus edulis) dredging on the ecosystem in shallow water soft bottom areas
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Reducing the impact of blue mussel (Mytilus edulis) dredging on the ecosystem in shallow water soft bottom areas

机译:减少蓝贻贝(Mytilus edulis)疏on对浅水软底地区生态系统的影响

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Dredging blue mussels (Mytilus edulis) and thus removing structural elements, inducing resuspension of sediment as well as reducing filtration capacity, will inevitably affect the ecosystem. The study demonstrates that the impacts of fishing can be reduced through gear developments. A new light dredge was tested on commercial vessels using two different experimental setups. First, a twin haul experiment tested the standard gear (i.e., a Dutch dredge) against the light dredge by fishing the two gears side by side onboard the same vessel. Second, a single dredge experiment tested the absolute performance of the two gears by fishing in areas with a known blue mussel density. Results from the twin haul experiment demonstrate that the weight of sediment retained in the gear per square metre fished is 49% less in the light dredge compared with the Dutch dredge which will reduce resuspension of sediment at the surface. Also, the drag resistance of the light dredge was significantly less (177.1 vs. 202.7kgm(-1)). In the twin haul experiment no significant difference was found in the catch per unit effort (CPUE) of the two gears. The single dredge experiment, on the other hand, demonstrated a significant increase in CPUE exceeding 200% when using the light dredge. Seafloor tracks made by the two dredges could not be distinguished by use of side-scan sonar and the tracks were still detectable2months after fishing. It was concluded that replacement of the Dutch dredge with the light dredge would reduce the impact of the fishery on the ecosystem by (i) reducing resuspension of sediment, (ii) reducing fuel consumption, and (iii) potentially reducing energy transfer to the sediment through a reduced gear drag resistance. A potential increase in catch efficiency may reduce the area affected. Fishing with the light dredge is discussed in relation to management of Natura 2000 sites. Copyright (c) 2014 John Wiley & Sons, Ltd.
机译:疏blue青口贻贝(Mytilus edulis),从而去除结构元素,导致沉积物重新悬浮并降低过滤能力,将不可避免地影响生态系统。该研究表明,可以通过开发渔具来减少捕鱼的影响。使用两种不同的实验装置在商用船舶上测试了一种新的挖泥船。首先,双运货实验是通过在同一艘船上并排捕捞两个渔具来测试标准渔具(即荷兰式挖泥机)相对于轻型挖泥机的。其次,一个挖泥船实验是通过在蓝贻贝密度已知的地区钓鱼来测试这两种渔具的绝对性能。双拖网实验的结果表明,与荷兰挖泥机相比,轻型挖泥机每平米捕捞的渔具中保留的沉积物重量减少49%,这将减少表面沉积物的再悬浮。此外,挖泥船的抗阻力性也显着降低(177.1对202.7kgm(-1))。在双牵引试验中,两个齿轮的单位捕获量(CPUE)没有发现显着差异。另一方面,单挖泥机实验表明,使用挖泥机时,CPUE显着增加,超过200%。这两个挖泥船制造的海底径迹无法通过侧扫声纳来区分,而且捕鱼后两个月仍可检测到该径迹。结论是,用轻挖泥机代替荷兰挖泥机将通过(i)减少沉积物的再悬浮,(ii)减少燃料消耗,以及(iii)潜在地减少向沉积物的能量转移,来减少渔业对生态系统的影响。通过减小齿轮阻力。捕捞效率的潜在提高可能会减少受影响的面积。讨论了与Natura 2000站点的管理有关的轻挖捕鱼。版权所有(c)2014 John Wiley&Sons,Ltd.

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