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    • 1. 发明公开
    • BALLAST WATER TREATMENT DEVICE HAVING DEVICE FOR INJECTING BROMINE SALT AND OZONE
    • EP3231701A4
    • 2018-08-01
    • EP15867819
    • 2015-11-19
    • NK CO LTD
    • PARK SUNG JINYOON SEUNG JECHO DONG YEONKIM SANG YONGPARK TAE HYEONKIM IN DONG
    • B63J4/00B63B13/00C02F1/50C02F1/78
    • B63J4/002B63B13/00B63J4/00C02F1/50C02F1/766C02F1/78C02F2103/008C02F2201/78C02F2201/784C02F2209/40C02F2303/04
    • A ballast water treatment apparatus equipped with devices for injecting bromine salt and ozone according to the present invention includes a ballast pipe 100 into which seawater flows; a ballast pump 110 for transferring seawater into the ballast pipe 100; bromine salt injection part 3000; and an ozone processor 2000, wherein the bromine salt injection part 3000 includes bromine salt storage tank 300 for storing bromine salt; bromine salt transfer pipe 310, which is connected to the ballast pipe 100, for injecting bromine salt supplied from the bromine salt storage tank 300 into the ballast pipe 100; and bromine salt injection pump 340, which is installed in the bromine salt transfer pipe 310, for pressurizing bromine salt to be injected into the ballast pipe 100, and the ozone processor 2000 includes an ozone injection device 200 for supplying ozone to the ballast pipe 100; a mixer 220, which is installed in the ballast pipe 100, for mixing ozone supplied from the ozone injection device 200 and seawater transferred into the ballast pipe 100; and an ozone transfer pipe 210, which is connected to the mixer 220 of the ballast pipe 100, for injecting ozone supplied from the ozone injection device 200 into the ballast pipe 100. In addition, the present invention provides a ballast water treatment apparatus equipped with devices for injecting bromine salt and ozone, to which a side-stream portion for bypassing seawater is added. Thus, in another embodiment, the ballast water treatment apparatus includes a ballast pipe 100 into which seawater flows; a ballast pump 110 for transferring seawater into the ballast pipe 100; a side-stream portion 4000; bromine salt injection part 3000; and an ozone processor 2000, wherein the side-stream portion 4000 includes a side-stream pipe 400, which is branched from the ballast pipe 100, for bypassing a portion of seawater introduced from the ballast pipe 100; a side-stream pump 410, which is installed in the side-stream pipe 400, for transferring a portion of seawater bypassed from the ballast pipe 100 into the side-stream pipe 400; and an injector 420 for injecting the bypassed seawater back into the ballast pipe 100, the bromine salt injection part 3000 includes bromine salt storage tank 300 for storing bromine salt; bromine salt transfer pipe 310, which is connected to the side-stream pipe 400, for injecting bromine salt supplied from the bromine salt storage tank 300 into the side-stream pipe 400; and bromine salt injection pump 340, which is installed in the bromine salt transfer pipe 310, for pressurizing bromine salt to be injected into the side-stream pipe 400, and the ozone processor 2000 includes an ozone injection device 200 for supplying ozone to the side-stream pipe 400; a mixer 220, which is installed in the side-stream pipe 400, for mixing ozone supplied from the ozone injection device 200 and seawater transferred into the side-stream pipe 400; and an ozone transfer pipe 210, which is connected to the mixer 220 of the side-stream pipe 400, for injecting ozone supplied from the ozone injection device 200 into the side-stream pipe 400. In each case, the positions of the bromine salt injection part 3000 and the ozone processor 2000 may be determined differently depending on the situation. In addition, in the ballast water treatment apparatus according to the present invention, the bromine salt storage tank 300 may be located above a point where the side-stream pipe 400 or the ballast pipe 100 is connected to the bromine salt transfer pipe 310 so that bromine salt is injected into the side-stream pipe 400 or the ballast pipe 100 by hydraulic pressure and thus the bromine salt injection pump 340 may be omitted. In addition, the bromine salt injection part 3000 may further include a diffuser 350 for diffusing bromine salt so that bromine salt is sufficiently mixed with seawater, when bromine salt is injected into the side-stream pipe 400 or the ballast pipe 100. In summary, a method of generating hypobromous acid responsible for maintaining sterilizing power has been suggested as a method of securing the disadvantage of conventional ozone treatment system, such as short residence period of ozone. According to the ballast water treatment system of the present invention, by introducing bromine salt injection process in addition to an ozone treatment process, it is possible to sufficiently generate hypobromous acid even in seawater containing a low content of bromine salt or low salt water. Therefore, when the system of the present invention is used, hypobromous acid may be sufficiently generated without being affected by the conditions of water intake area, and consequently sterilization may be continuously preformed in a ballast tank.
    • 2. 发明公开
    • DEVICE FOR STORING AND DISSOLVING CHEMICAL FOR DISINFECTING BALLAST WATER
    • EP3170737A4
    • 2018-03-21
    • EP15821330
    • 2015-07-14
    • NK CO LTD
    • PARK SUNG JINKIM KI WOOKKIM SANG YONGLEE JIN JOO
    • B63J4/00B01F7/26B63B13/00C02F1/50
    • B01F7/26B63B13/00B63J4/00C02F1/50
    • Provided is a device for storing and dissolving a chemical to prepare a chemical solution, in which a chemical for disinfection is dissolved and to supply the chemical solution to a ballast water piping. More particularly, the present invention relates to a device for storing and dissolving a chemical for disinfecting ballast water, in which a cylindrical holding case is fixed/installed in the vertical direction on the upper portion of a chemical dissolution tank, in which a solvent (fresh water or seawater) is introduced and stored, a chemical storage barrel having a circular or polygonal shape is inserted/installed in the vertical direction into the holding case, and a plurality of vertical chemical storage chambers are formed in the inner space of the chemical storage barrel by a radial partition plate. Further, a chemical injection opening is formed on the bottom surface of the holding case so as to correspond to one chemical storage chamber, and the chemical storage barrel is rotated in an upright state to perform quantitative injection of the chemical through the chemical dissolution tank in a natural drop type such that each chemical storage chamber sequentially corresponds to the chemical injection opening, thereby more safely managing and using an oxidizer type chemical having toxicity harmful to human bodies. Further, while each chemical storage chamber stores the exact amount of chemical required for disinfecting ballast water once, the corresponding chemical can be injected into the chemical dissolution tank without a remnant, thereby preventing unnecessary waste of the chemical and the solvent and rapidly and accurately adjusting the concentration of the required chemical solution even though a complicated control system for preparing the concentration of the chemical solution is not applied.