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首页> 外文期刊>Aquaculture >Culture, yield and bioremediation potential of Palmaria palmata (Linnaeus) Weber & Mohr and Saccharina latissima (Linnaeus) C.E. Lane, C. Mayes, Druehl & G.W. Saunders adjacent to fish farm cages in northwest Scotland.
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Culture, yield and bioremediation potential of Palmaria palmata (Linnaeus) Weber & Mohr and Saccharina latissima (Linnaeus) C.E. Lane, C. Mayes, Druehl & G.W. Saunders adjacent to fish farm cages in northwest Scotland.

机译:棕榈棕(Palmaria palmata (Linnaeus)Weber&Mohr和 Saccharina latissima (Linnaeus)C.E. Lane,C.Mayes,Druehl&G.W.)的培养,产量和生物修复潜力。桑德在苏格兰西北部的养鱼场附近。

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摘要

Growth of seaweeds in the vicinity of fish farm cages in northwest Scotland was investigated as a means of extracting, from the surrounding water, nutrients added via fish feed and excretory products. Enhanced growth and yields of Palmaria palmata and Saccharina latissima cultures were found when grown adjacent to fish farm cages. Growth rates in summer for P. palmata and S. latissima were enhanced by up to 48% and 61%, respectively, and biomass yields over a growth season were enhanced by 63% and 27%, respectively. The nitrogen content of the macroalgae grown close to the fish cages was greater than for those grown at reference sites away from the cages. Extrapolation show that under optimal conditions, a hectare of P. palmata could yield up to 180 tonnes wet weight per annum and a hectare of S. latissima 220 tonnes wet weight per annum. Conservative estimates of yields show that P. palmata could be expected to remove up to 12% and S. latissima 5% of the waste nitrogen released during the growth of 500 tonnes of salmon in the sea over 2 years. The practicalities and logistics of culturing macroalgae near fish cages are considered and, because of the wide distribution of nitrogen emanating from fish culture and the need to optimise growth conditions for cultured macroalgae, it is recommended that macroalgal culture for bioremediation should be considered at wider geographical scales i.e., bay wide at least.
机译:调查了苏格兰西北部养鱼场附近海藻的生长,以此作为从周围水中提取通过鱼类饲料和排泄物添加的营养物的方法。在靠近养鱼场的地方生长的棕棕和棕褐藻的生长和产量得到提高。 P的夏季增长率。 palmata 和 S。 latissima 分别提高了48%和61%,生长期的生物量产量分别提高了63%和27%。在靠近网箱的地方生长的大型藻类的氮含量要比在远离网箱的参考点处的大型藻类的氮含量高。外推表明,在最佳条件下,公顷土地面积为 P。 palmata 每年最多可产生180吨湿重和一公顷的 S。 latissima 每年湿重220吨。产量的保守估计表明 P。 Palmata 有望去除高达12%的元素和 S。 latissima 两年内在海中生长500吨鲑鱼时,释放了5%的废氮。考虑到在鱼笼附近养殖大型藻类的实用性和后勤性,并且由于鱼类养殖产生的氮分布广泛,并且需要优化养殖大型藻类的生长条件,因此建议在更广阔的地理区域考虑进行大型藻类生物修复鳞片,即至少海湾宽。

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