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首页> 外文期刊>Aquaculture >Influence of suspended mussel lines on sediment erosion and resuspension in Lagune de la Grande Entree, Iles-de-la-Madeleine, Quebec, Canada
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Influence of suspended mussel lines on sediment erosion and resuspension in Lagune de la Grande Entree, Iles-de-la-Madeleine, Quebec, Canada

机译:贻贝悬浮线对加拿大魁北克Iles-de-la-Madeleine的Lagune de la Grande Entree沉积物侵蚀和悬浮的影响

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摘要

Downward fluxes of organically rich biodeposits under suspended mussel lines can cause benthic impacts such as changes in benthic community structure or microbial mat production. Quantifying sediment erosion in these coastal ecosystems is important for understanding how fluxes of organic matter and mussel biodeposits contribute to benthic pelagic coupling. Critical shear velocity (u(crit)*(t)), erosion rates and particle size distributions of resuspended sediment were measured at four stations distributed along a transect perpendicular to a mussel farm in Lagune de la Grande Entree, Iles-de-la-Madeleine (Quebec, Canada). Stations were selected underneath the outer-most mussel line (0 m) and at distances of 15,30 m and at a reference station (500 m) further along the transect. Shear velocity was measured using a calibrated portable Particle Erosion Simulator, also referred to as the BEAST (Benthic Environmental Assessment Sediment Tool). Undisturbed sediment cores obtained by divers were exposed to shear stress to compare differences between stations. Erosion sequences indicated no significant differences in u(crit)* between stations, but there were significant differences in erosion rates beneath mussel lines compared to other stations. Erosion rates were the highest in cores from beneath mussel lines, but paradoxically had the lowest u(crit)* Mean erosion rates at u*crit varied between 25 and 47 g m(-2) min(-1) and critical erosion thresholds varied between 1.58 and 1.73 cm s(-1), which compare with intensive mussel culture sites elsewhere in eastern Canada. Significant differences existed in biotic and abiotic properties of sediments which could explain variation in maximum erosion rates within and between stations. Particle sizes measured by videography of resuspended sediment at different shear velocities ranged from 02 to 3.0 mm. Quantifying sediment erosion from intact marine sediments helps to improve our mechanistic understanding of these processes, and the BEAST further contributes to predictive capability in benthic pelagic coupling modeling
机译:贻贝悬浮线下富含有机物的生物沉积物的向下通量会引起底栖生物的影响,例如底栖生物群落结构的变化或微生物垫的生产。量化这些沿海生态系统中的沉积物侵蚀对于了解有机物通量和贻贝生物沉积物如何促进底栖中上层耦合很重要。在Iles-de-la-La-Lagune de la Grande Entree的一个垂直于贻贝养殖场的横断面分布的四个站点上,测量了临界剪切速度(u(crit)*(t)),侵蚀速率和重悬沉积物的粒径分布。马德琳(加拿大魁北克)。在最外面的贻贝线(0 m)下方,距离15,30 m处以及沿样线更远的参考站(500 m)处选择了测站。使用校准的便携式颗粒侵蚀模拟器(也称为BEAST(底栖环境评估泥沙工具))测量剪切速度。潜水员获得的原状沉积物岩心受到剪切应力的作用,以比较站点之间的差异。侵蚀序列显示站点之间的u(crit)*没有显着差异,但是与其他站点相比,贻贝线以下的侵蚀率存在显着差异。贻贝线下方岩心的侵蚀率最高,但矛盾的是u(crit)*最低,在u * crit时的平均腐蚀率在25到47 gm(-2)min(-1)之间变化,临界腐蚀阈值在1.58和1.73 cm s(-1),与加拿大东部其他地区的贻贝密集养殖场所相比。沉积物的生物特性和非生物特性存在显着差异,这可以解释站点内和站点之间最大侵蚀速率的变化。在不同的剪切速度范围内,通过重悬沉积物的视频照相测量的粒径为02至3.0 mm。量化来自完整海洋沉积物的沉积物侵蚀有助于改善我们对这些过程的机械理解,而BEAST进一步有助于底栖浮游耦合模型的预测能力

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