Abstract:
A batch carbonation apparatus includes a housing defining a vessel cavity. The housing includes an agitation mechanism. The pressure vessel includes a cap that has a C02 inlet and a C02 outlet is provided. The pressure vessel also includes a seal. The pressure vessel is moveable into an out of the vessel cavity. A locking mechanism is provided and is attached to the agitation mechanism to removably lock the cap and seal relative to the pressure vessel. A C02 source is connected to a plurality of valves where each valve has a differing pressure. A selection toggle is attached to the housing.
Abstract:
Carbonated beverage dispenser comprising a carbonation chamber with a pressure-lowering utility operative after carbonation of the water in said chamber for reducing the carbon dioxide pressure in the carbonation chamber. Carbonated water dispensing apparatus, comprising a carbonation chamber with a circulation pump for circulating water between a circulation outlet and a circulation inlet Processes for providing carbonated beverages.
Abstract:
The present invention concerns apparatus for on-demand preparation of carbonated beverages. The invention further concerns processes for preparing and dispensing carbonated beverages upon user-demand.
Abstract:
One or more techniques and/or systems are disclosed for saturating a gas with a liquid- borne compound. A bubbler container may be configured to contain a carrier liquid, which comprises a desired compound. The container may comprise at least one channeling plane, disposed between the top and bottom of the container, which may be configured to allow gas bubbles to travel through a circuitous, channeling route. The gas can be introduced to the container at a bottom portion of the container, into the carrier liquid comprising the compound. Carrier gas bubbles formed in the liquid may be forced to travel the channeling route to a top portion of the container, where gas saturated with the compound may be collected.
Abstract:
A means for obtaining high mass transfer efficiencies in surfactant laden wastewater treatment or process systems is disclosed. The present system employs ultrafine bubbles delivered into a high shear region such as in the draft tube (110) or other containment volume of a mechanically agitated contacting system within which an impeller (130) is placed, or in the venturi or divergent-convergent of a pumped loop within which gas-liquid contacting is carried out.
Abstract:
Die Erfindung betrifft ein Verfahren und eine Vorrichtung zur gezielten Einspeisung von Gasen oder Gasgemischen in eine Flüssigkeit, Suspension oder Emulsion in einem Reaktor. Erfindungsgemäß erfolgt eine gezielte Einspeisung von Gasen oder Gasgemischen in eine Flüssigkeit, Suspension oder Emulsion in einem Reaktor, wobei das Gas- oder Gasgemisch in gezielter Menge und/oder zu definierten Zeitpunkten in einem Stoß als Gasblase in eine strömende Flüssigkeit in einem schräg angeordneten Reaktorsystem eingespeist wird, wodurch ein Pulsationseffekt erhalten wird, wobei mittels einer adiabatische Entspannung des eingespeisten Gases oder Gasgemisches eine Triebkraft erzeugt wird, durch die Wandanhaftungen am Reaktor unterbunden werden.
Abstract:
미세 기포 발생장치가 개시된다. 개시된 미세 기포 발생장치는 물과 기체의 혼합물을 유입받아, 물과 기체를 충돌시키면서 선회시켜 용해수를 유출하는 선회유닛, 선회유닛으로부터 유출되는 용해수를 저장하는 용해탱크, 및 용해수를 유입받아 수중에 미세 기포를 생성시키는 노즐유닛을 포함할 수 있다. 이로써, 저전력으로 100nm이하의 미세 기포를 대량으로 생성할 수 있게 된다.
Abstract:
Bioreactors are provided that include a vessel and a jet mixer disposed in the vessel. Methods that utilize the bioreactors are provided, involving placing a microorganism or cells and a fluid medium in the bioreactor.