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    • 1. 发明公开
    • METHOD OF AND APPARATUS FOR CULTIVATING MARINE ORGANISMS
    • VERFAHREN UND VORRICHTUNG ZURZÜCHTUNGVON MEERESORGANISMEN。
    • EP0574589A1
    • 1993-12-22
    • EP93900408.1
    • 1992-12-28
    • ONNASON GYOGYOU KYOUDOUKUMIAIKABUSHIKI KAISHA AOIUMITOMA, TakeshiMEGARI, MunekazuTOYOHIRA, Choushou
    • TOMA, Takeshi 43-15, Aza UetaMEGARI, Munekazu 2136, Aza SeragakiTOYOHIRA, Choushou 290, NakaimaHIGA, Yoshimi 143, Aza FuchakuCHINEN, Ryuuichi
    • A01K63/04A01K61/00
    • A01K63/04A01K61/10A01K61/50A01K61/60A01K61/70Y02A40/81Y02A40/826Y02A40/83
    • A method of and an apparatus for cultivating marine organisms while circulating the water in the upper and bottom portions of the interior of a marine organism cultivating tank by conducting aeration in the tank so as to generate a vertical convection flow of water therein. A tank (1) is formed by detachably putting a water impermeable sheet cover (3) on a frame body, and provided with a water introducing and discharging port (4) in the central portion of a bottom wall thereof. When the air is introduced into the tank (1) via an air supply pipe (7), a vertical convection flow occurs owing to the lifting force of bubbles. Consequently, the water outside the tank is introduced via the water introducing and discharging port (4) into the tank and the water inside the tank is discharged therethrough to the outside thereof. The marine organisms are cultivated as the water in the tank and that outside the same are thus circulated. Accordingly, the sunlight can be applied uniformly to the algae constantly moving in the tank while they are cultivated therein, and the salt at the bottom of the sea, nutritive chlorine and brine of a stable temperature can be introduced into the tank. The contaminated brine in the tank is discharged therefrom at the same time, so that the cultivation environment in the tank can be improved and controlled.
    • 一种培养海洋生物的方法和装置,同时在海洋生物培养罐的内部的上部和底部循环水,通过在罐中曝气以在其中产生水的垂直对流。 罐体(1)通过将不透水的薄片盖(3)可拆卸地放置在框架体上而形成,并且在其底壁的中心部分设置有水引入和排出口(4)。 当空气通过供气管(7)引入罐(1)时,由于气泡的提升力而产生垂直对流。 因此,罐外的水通过水引入和排出口(4)引入罐中,并且罐内的水通过其排出到其外部。 海洋生物体作为水箱中的水种植,因此在其外面循环。 因此,可以将阳光均匀地施加到在罐中培养的槽中不断移动的藻类,并且可以将稳定温度的海底盐,营养氯和盐水引入罐中。 罐中的污染盐水同时排出,从而可以改善和控制罐中的栽培环境。