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首页> 外文期刊>Journal of environmental biology >Pumping bottom water to prevent Korean red tide damage caused by Cochlodinium polykrikoides Margalef
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Pumping bottom water to prevent Korean red tide damage caused by Cochlodinium polykrikoides Margalef

机译:抽底水以防止由多球菌Cochlodinium polykrikoides Margalef造成的韩国赤潮损害

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摘要

Cochlodinium polykrikoides Margalef produces annual massive blooms in Korean coastal waters which cause great damage to aquaculture and fisheries. Although various methods have been developed to remove the red tide of C. polykrikoides, release of yellow loess has been regarded as the most desirable technique for mitigation for over 10 years. Each August, strong irradiation generates water column stratification separating warm surface from colder bottom waters. Water from a distance of 0 (St. 1), 5 (St. 2), 10 (St. 3), and 15 m (St. 4) was pumped by running a pump for 0, 10, 30 and 90 min and characterized water temperature, salinity collected, suspended solids, Chl-a, and phytoplankton including C. polykrikoides. After running for 30 min, was temperature and salinity in surface water was similar to those of bottom water, and water column stratification completely reversed after 90 min. Likewise, suspended solids, Chl-a, and total phytoplankton cell density decreased after 30 min, but C. polykrikoides did not show strong removal because of low cell density during sampling. However, the number of C. polykrikoides was significantly diluted (80%) after 90 min. These results suggested that pumping device was as an environmentally-friendly method convenient to be install in fish cages and effective to remove C. polykrikoides stratified water column conditions.
机译:Cochlodinium polykrikoides Margalef在韩国沿海水域每年产生大量水华,对水产养殖和渔业造成极大损害。尽管已经开发出多种方法来消除多角衣藻的赤潮,但是释放黄土黄土被认为是减轻污染十多年来最理想的技术。每年八月,强辐射会产生水柱分层,从而将温暖的表面与较冷的底部水区分开。通过使泵运行0、10、30和90分钟,将距离0(St.1),5(St.2),10(St.3)和15 m(St.4)的水泵入,表征水温,收集的盐度,悬浮固体,Chl-a和浮游植物,包括多角衣藻。运行30分钟后,地表水中的温度和盐度与底部水相似,并且90分钟后水柱分层完全逆转。同样,悬浮固体,Chl-a和总浮游植物细胞密度在30分钟后降低,但由于采样过程中细胞密度低,多角梭菌并未显示出强去除能力。但是,90分钟后,多角衣藻的数量被显着稀释(80%)。这些结果表明,抽水装置是一种环境友好的方法,可方便地安装在鱼笼中,并能有效去除多角衣藻的分层水柱条件。

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