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    • 1. 发明申请
    • 飲料供給装置
    • 饮料供应设备
    • WO2015151868A1
    • 2015-10-08
    • PCT/JP2015/058514
    • 2015-03-20
    • サントリーホールディングス株式会社
    • 花野泰文中田誠亮
    • B67D1/08F25D11/00
    • B01F3/04808B01F3/04737B01F3/04815B01F15/065B01F2015/061B67D1/0014B67D1/0067
    •  炭酸水を供給する炭酸水回路と、冷水を供給する冷水回路とを有し、炭酸水回路は、水と炭酸ガスとが導入されるカーボネーションタンクと、カーボネーションタンクで作られた炭酸水を取り出す炭酸水供給弁とを備え、カーボネーションタンクの少なくとも底部は冷却水槽内の冷却用水に浸漬されている飲料供給装置を、よりシンプルでコンパクトな構造にする。 炭酸水回路が、カーボネーションタンク2に導入する水として、冷却水槽1内の冷却用水を冷水として取り出し、供給するための取水管C6と炭酸水供給弁V2とを備えている飲料供給装置とした。
    • 本发明提供了一种饮料供给装置的结构,其包括用于供给碳酸水的碳酸水回路和用于供应冷水的冷水回路,其中碳酸水回路设置有碳酸化池,水和二氧化碳 引入气体,将碳酸化池中形成的碳酸化水和碳酸化池的至少底部的碳酸化水供给阀浸入冷却水箱内的冷却水中,更加简单,更紧凑。 在饮料供给装置中,碳酸水回路设置有用于将冷却水罐(1)内的冷却水作为冷水引入碳酸化罐(C)的抽出管(C6)和碳酸化水供给阀(V2) 2)并提供它。
    • 3. 发明申请
    • 냉장고
    • 冰箱
    • WO2015034199A1
    • 2015-03-12
    • PCT/KR2014/007924
    • 2014-08-26
    • 삼성전자주식회사
    • 백재호경용수이제원한정수
    • F25D19/00F25D23/00F25D11/00
    • F25D23/12A23L2/04A23L2/38A23V2002/00B01F3/04106B01F3/04439B01F3/04808B01F3/04815B01F2003/04822B67D1/0062F25D23/126
    • 본 발명의 사상에 따른 탄산수 제조 장치를 갖는 냉장고는 이산화탄소 실린더에서 유출되는 이산화탄소의 압력을 조절하여 유출시키는 압력 레귤레이터와, 압력 레귤레이터에서 유출되는 이산화탄소의 탄산수 탱크로의 공급을 단속하는 솔레노이드 개폐 밸브와, 압력 레귤레이터와 솔레노이드 개폐 밸브를 연결하는 연결 유로와, 연결 유로의 이산화탄소의 압력이 소정의 한계 압력 보다 크면 연결 유로의 이산화탄소를 대기 중으로 배출시키도록 연결 유로에 마련되는 릴리프 밸브 포함하여 연결 유로의 이산화탄소의 압력을 소정 한계 압력 이하로 유지할 수 있고, 솔레노이드의 오작동을 방지하여 시스템의 신뢰성과 안정성을 향상시킬 수 있다.
    • 根据本发明的一个概念的具有碳酸水生产装置的冰箱包括:压力调节器,用于调节和排放从二氧化碳气瓶排出的二氧化碳的压力; 用于控制从压力调节器排放到碳酸水箱的二氧化碳供应的电磁开关阀; 用于连接压力调节器和电磁开关阀的连接通道; 以及设置在连接通道中的安全阀,以便如果连接通道的二氧化碳的压力大于预定的压力极限,则将连接通道的二氧化碳排放到大气中。 因此,连接通道的二氧化碳的压力能够维持在预定的压力极限以下,并且可以防止螺线管故障,从而提高系统的可靠性和稳定性。
    • 8. 发明申请
    • METHOD AND APPARATUS TO DELIVER PREDETERMINED AMOUNTS OF GAS INTO A LIQUID
    • 将气体预测量提供给液体的方法和装置
    • WO2008055905A1
    • 2008-05-15
    • PCT/EP2007/061942
    • 2007-11-06
    • YT INGENIERIA LTDA.ROMERAL, CABEZA, AngelTOMASELLO, R., GonzaloYAKASOVIC, S., Tomás
    • TOMASELLO, R., GonzaloYAKASOVIC, S., Tomás
    • C12G1/04B01F3/08
    • B01F3/04262B01F3/04808B01F3/04815C12G1/04
    • An apparatus to deliver gas into a liquid comprising a container for the gas to be injected, which is connected to a compressed gas source (1) by means of an inlet duct, said gas delivering apparatus comprising at least one sensor to measure pressure and one sensor to measure temperature, wherein said container is a measurement chamber (9) of known volume, which is connected to a final delivery system or injector (10) by means of an outlet duct, wherein the final delivery system or injector comprises a long application tube with a diffuser that allows the gas to be divided into very small bubbles to facilitate its dissolution into the liquid. A method to deliver a gas into a liquid comprising a) allowing the passage of a determined amount of gas into a container for the gas to be injected, wherein said method comprises the steps of: b) measuring the pressure difference and the gas temperature inside the gas container, being said container a measurement chamber with a constant volume; c) allowing the discharge of a gas dose in a predetermined amount of gas, measured in step b), by activating the application system; d) injecting the gas into the bulk of the liquid. The method of the present invention finds application mainly in the wine industry, wherein sulfur dioxide application is required to control fermentation.
    • 一种将气体输送到液体中的装置,包括用于待注入气体的容器,该容器通过入口导管连接到压缩气体源(1),所述气体输送装置包括至少一个传感器以测量压力和一个 传感器以测量温度,其中所述容器是已知体积的测量室(9),其通过出口管道连接到最终输送系统或喷射器(10),其中最终输送系统或喷射器包括长的应用 管,其具有允许气体被分成非常小的气泡以便于其溶解到液体中的扩散器。 一种将气体输送到液体中的方法,包括a)允许将确定量的气体通入待注入气体的容器中,其中所述方法包括以下步骤:b)测量内部的压力差和气体温度 所述容器是具有恒定体积的测量室; c)通过激活施用系统使得在步骤b)中测量的气体剂量排出预定量的气体; d)将气体注入大部分液体。 本发明的方法主要应用于葡萄酒行业,其中需要二氧化硫来控制发酵。
    • 9. 发明申请
    • CARBONATION
    • 碳化
    • WO00025904A1
    • 2000-05-11
    • PCT/GB1999/003610
    • 1999-11-02
    • B01F3/04B01F5/06B67D1/00B67D1/08
    • B67D1/0071B01F3/04815B01F5/0602B67D1/0054B67D1/0058B67D1/0864B67D1/0867
    • The apparatus for the carbonation of a liquid comprises a source (10, 40, 60) of pressurised carbon dioxide gas, a fitting (12, 41, 61) having a first inlet for connection to the carbon dioxide source (10, 40, 60) and a second inlet connectable to a source (13, 42, 62) of the liquid, a control device (30, 31) for permitting or stopping flow of carbon dioxide gas from the source (10, 40, 60) thereof into the fitting (12, 41, 61) and means to carbonate the liquid with the carbon dioxide gas, characterised in that the carbonation means is provided in two stages, the first stage comprising a turbulating device (15, 49, 50, 66) having an inlet end connected to the outlet of the fitting and having an outlet end connected to the second stage, which second stage comprises means (17, 51, 67) to further break up and dissolve remaining carbon dioxide bubbles in the liquid.
    • 用于碳酸化液体的设备包括加压二氧化碳气体源(10,40,60),具有用于连接到二氧化碳源(10,40,60)的第一入口的配件(12,41,61) )和可连接到液体源(13,42,62)的第二入口,用于允许或阻止二氧化碳从其源(10,40,60)流入其中的控制装置(30,31) 装置(12,41,61)和用二氧化碳气体对液体进行碳酸化的装置,其特征在于,碳酸化装置分成两个阶段,第一阶段包括一个具有一个第二阶段的紊流装置(15,49,50,66) 入口端连接到配件的出口并且具有连接到第二级的出口端,该第二级包括用于进一步分解和溶解液体中剩余的二氧化碳气泡的装置(17,51,67)。
    • 10. 发明申请
    • CARBONATION SYSTEM
    • 碳化系统
    • WO98047812A1
    • 1998-10-29
    • PCT/US1998/007994
    • 1998-04-22
    • B01F3/04B01F5/00B01F5/06B67D1/00B67D5/56
    • B67D1/0058B01F3/0446B01F3/04815B01F5/0077B01F5/0614B01F2003/04893
    • An on demand carbonation system is shown for carbonating water or a noncarbonated beverage. A flow restrictor (17) meters a predetermined quantity of pressurized carbon dioxide to a T-fitting (23) for combination with a known quantity of the liquid as delivered thereto by a pump (25). The carbon dioxide and liquid flow therefrom through a turbulator (32) for enhancing the absorption of the gas by the liquid. The liquid and gas then flow through a heat exchange cooling coil (38) for further absorption of the gas as the liquid is cooled in the coil. The coil is connected to a dispensing valve (39) for dispensing of a cooled carbonated beverage therefrom.
    • 显示了碳酸化水或非碳酸饮料的按需碳酸化系统。 流量限制器(17)将预定量的加压二氧化碳计量到T型配件(23),用于与由泵(25)输送的已知量的液体组合。 二氧化碳和液体通过湍流器(32)流过,用于增强液体对气体的吸收。 然后液体和气体流过热交换冷却盘管(38),以在液体在盘管中冷却时进一步吸收气体。 线圈连接到用于从其分配冷却的碳酸饮料的分配阀(39)。