Abstract:
The invention relates to an apparatus for preparing a beverage, such as baby milk, from an aqueous liquid and a fatty, dry instant product, such as formula or milk powder. The apparatus comprises a first supply system for supplying the aqueous liquid, a second supply system for supplying the instant product, and a dispense unit with a first and second nozzle for dispensing predetermined quantities of the instant product and the liquid. The first and second nozzle are furthermore arranged to dispense the instant product and liquid in a predetermined order and a predetermined direction, allowing the ingredients to be mixed in the stream, without the use of additional mixing means or operations.
Abstract:
The present invention is a high pressure homogenizing apparatus and a method for dividing a fine solid material or fibrous cellulose of chemical, medical, and resin products in suspension as a dispersion or emulsification, or dividing by crushing cell membranes of fungi with high efficiency. The apparatus is free from valve damages to simplify maintenance and control. The high pressure homogenizing apparatus to finely divide a raw material in suspension includes a high pressure homogenizing device having an orifice, a raw material receiving passage connected to the high pressure homogenizing device, a processing piston, and a processing recess disposed in a receiver. A front end of the processing piston is inserted into the processing recess with a pressure intensifier and a volume compression inside the processing recess pressurizes the suspension in the processing recess to lead the suspension into the raw material receiving passage for dividing the raw material.
Abstract:
The disclosure relates to a method and an apparatus (1) for continuously mixing two flows, a first, larger flow (2) and a second, smaller flow (3). The second flow (3) is introduced counter-directed into the first flow (2). The apparatus (1) comprises a T pipe (4) where a first connection (6) constitutes an inlet (20) for the first flow. A second connection (7), at 180° in relation to the first connection (6), constitutes an inlet (21) for the second flow (3). The second flow (3) is led into the first flow (2) through a conduit (13) within the T pipe (4). The first connection (6) is provided with a conical portion (10) in which are provided a number of holes (12), so that the first flow (2) is throttled and divided up into a plurality of subflows immediately before the mixing operation. A third connection (9) is oriented at 90° in relation to the other connections (6, 7) and constitutes an outlet (22) for the intermixed flows (19), which implies that the intermixed flows (19) are caused to change direction immediately after the mixing.
Abstract:
The present invention relates to a high pressure homogenizing apparatus and a method thereof for finely dividing a fine solid material or fibrous cellulose of chemical, medical, and resin products in a suspension as a dispersion or emulsification, or finely dividing by crushing cell membranes of fungi with high efficiency. The apparatus of the present invention is free from damage of valves so that its maintenance and control become easy. The high pressure homogenizing apparatus to finely divide a raw material in the suspension includes a high pressure homogenizing device having an orifice, a raw material receiving passage connected to the high pressure homogenizing device, a processing piston, and a processing recess disposed in a receiver. A front end of the processing piston is inserted into the processing recess with a pressure intensifier and a volume compression inside the processing recess pressurizes the suspension in the processing recess to lead the suspension into the raw material receiving passage for finely dividing the raw material.
Abstract:
A method for fixing a first fluid within a second fluid which includes the steps of mixing the first and second fluids together and subjecting the first and second fluids to an electric field and a high voltage corona like electric discharge. The method can be used, for example, to increase the oxygen content of water. It can also be used for the treatment of waste effluent. An apparatus for carrying out the process includes a fluid passageway defined between inner and outer elongated conduits with a preferably spirally configurated baffle means in the passageway and a plurality of electrode needles extending into the passageway.
Abstract:
Mixing device having a container. A working part for insertion into the container and for sealing therewith. The working part includes a down gearing mounted thereon extending vertically downward in the working part terminating at a point spaced downward on the working part. A paddle defines a horizontal axis and is horizontally mounted on the working part for intruding into the container when the working part is fully inserted into the container whereupon it can rotate about its horizontal axis. The down gearing is coupled to the paddle to transmit power thereto, and one of a motor and a crank provides power to the down gearing.
Abstract:
A mixing blade (10) for mixing a drink in a cup (20) having a dome-shaped lid (30) with an opening (32) therein is provided. The mixing blade comprises tow hollow truncated cones (12, 14) attached base-to-base. A top side of one cone has an opening (18) therein for attaching to a rotatable shaft(2). The cone-shaped walls each have a plurality of openings (16) therein. To mix a drink, the ingredients are measured and placed in the cup and the lid is placed on the cup. The mixing blade is inserted through the opening in the lid and is spun or rotated for a predetermined mixing time. After the blade is removed from the drink, the drink is served and the blade is sanitized in a sanitizing solution before being used to mix another drink. The mixing blade is particularly suitable for the preparation of frozen drinks.
Abstract:
Apparatus and method for increasing dissolved oxygen levels in a liquid. An oxygenation system (100) includes a liquid source (102) from which liquid is introduced into a piping network (106) by a pump (104). Colloidal minerals are injected into the liquid in a dwell chamber (110). The mixture of liquid and minerals flows into an oxygenator (118) where gaseous oxygen is injected into the liquid. The resulting two-phase flow stream is accelerated to supersonic speeds through a linear flow accelerator (126) comprising a flat Venturi (130) and electromagnets (128) positioned adjacent the flat Venturi. The electromagnets generate an electromagnetic field to exert a force on the two-phase mixture in the direction of the flow. The flow stream then passes through a laminar flow grid (132) to remove turbulence, after which the oxygenated liquid is bottled at a bottling system (134).
Abstract:
This invention provides an apparatus and a method for agitating a fluid suspension contained within an at least partially flexible vessel. This invention provides an apparatus comprising a structure for receiving the vessel, an agitating member capable of receiving the vessel, and a motor operatively communicating with the agitating member to substantially uniformly agitate the fluid suspension. This invention also provides a method comprising folding an at least partially flexible vessel so that there are two inner portions and reciprocally moving one or both of the inner portions between a first position and a second position, whereby the fluid suspension is substantially uniformly agitated.
Abstract:
This invention provides an apparatus and a method for agitating a fluid suspension contained within an at least partially flexible vessel. This invention provides an apparatus comprising a structure for receiving the vessel, an agitating member capable of receiving the vessel, and a motor operatively communicating with the agitating member to substantially uniformly agitate the fluid suspension. This invention also provides a method comprising folding an at least partially flexible vessel so that there are two inner portions and reciprocally moving one or both of the inner portions between a first position and a second position, whereby the fluid suspension is substantially uniformly agitated.