Patent classifications
B01F35/2213
Method for manufacturing ultra-fine bubbles having oxidizing radical or reducing radical by resonance foaming and vacuum cavitation, and ultra-fine bubble water manufacturing device
A method is provided for producing fine-bubble water by resonance foaming and vacuum cavitation, and a device for manufacturing each of ultra-fine-bubble water of hydrogen gas having a reducing radical function, ultra-fine-bubble water of air and oxygen gas having an oxidizing radical function, ozone ultra-fine-bubble water having a sterilization function enabled by ozone, and fine-bubble water of nitrogen/carbon dioxide gas for increasing the ability to preserve the freshness of raw agricultural products, livestock products, and marine products.
Full-Electric Drive Cementing Control System
A full-electric drive cementing control system is disclosed. The system includes: a water supply system for supplying clear water; an ash supply system for supplying dry ash; a slurry mixing system for performing a slurry mixing operation to form slurry; a plunger pump for pumping the slurry to a cementing operation object; and a control assembly for controlling, in response to a received cementing operation instruction, connection of a pipeline between an outlet of the water supply system and an inlet of the slurry mixing system and a pipeline between an outlet of the ash supply system and the inlet of the slurry mixing system, controlling, according to a preset slurry mixing parameter, the slurry mixing system to mix the clear water and the dry ash to form the slurry required for a cementing operation, and controlling, according to a preset perfusion parameter, a driving motor to drive the plunger pump to work, the cementing operation instruction carrying the preset slurry mixing parameter and the preset perfusion parameter.
MECHANICAL SYSTEM THAT FLUIDIZES, MIXES, COATS, DRIES, COMBINES, CHEMICALLY REACTS, AND SEGREGATES MATERIALS
The present application is directed towards systems for adding components to materials being fluidized in a vibratory mixer by use of atomizers or sprayers. A mechanical system can fluidizes, mix, coat, dry, combine, or segregate materials. The system may comprise a vibratory mixer, mixing vessel containing a first material and a sprayer to introduce a second material. The vibratory mixer may generate a fluidized bed of a first material and the sprayer, coupled to the mixing vessel, may introduce a second material onto the fluidized bed to mix the materials in a uniform and even fashion.
Analyzing microdroplet outline size and adjusting channel pressure to alter microdroplet size
The invention generally relates to methods and systems for manipulating droplet size. In certain aspects, the invention provides methods for manipulating droplet size that include forming droplets of aqueous fluid surrounded by an immiscible carrier fluid, and manipulating droplet size during the forming step by adjusting pressure exerted on the aqueous fluid or the carrier fluid.
SYSTEMS AND METHODS FOR CARBONATING LIQUID IN A CONTAINER AND DETECTING CARBON DIOXIDE LEVELS IN A CARBON DIOXIDE SOURCE
A system or method for carbonating a liquid includes receiving, in a sealed container of a carbonator of a drink dispenser system, a predetermined amount of liquid, identifying a predetermined carbonation level associated with a flavoring material, and setting a target pressure of the sealed container based on the predetermined carbonation level. The target pressure is selected from a plurality of different target pressures. The system or method also can include releasing pressurized carbon dioxide from a carbon dioxide source into the sealed container holding the predetermined amount of the liquid therein until an internal pressure of the sealed container is substantially equal to the target pressure. The system or method can also include dispensing, into a drink container, the flavoring material and the liquid from the sealed container of the carbonator.
MANIPULATING DROPLET SIZE
The invention generally relates to methods and systems for manipulating droplet size. In certain aspects, the invention provides methods for manipulating droplet size that include forming droplets of aqueous fluid surrounded by an immiscible carrier fluid, and manipulating droplet size during the forming step by adjusting pressure exerted on the aqueous fluid or the carrier fluid.
Portable Dosing System and Method of Use
A portable dosing system used for the transfer of liquid and slurries from a feed container to a mix container that monitors the amount transferred by measuring the change in pressure within the feed container.
System and method for controlled manufacturing of mono-disperse microbubbles
The present invention is related to a system and method for controlled manufacturing of mono-disperse microbubbles. According to the invention, the mono-disperse nature of the collection of generated microbubbles can be improved by releasing the pressurized gaseous medium used in the system using release valve units. This further allows the system to be embodied as a portable system. In turn, the operator of an ultrasound imaging apparatus may use the system according to the invention to generate microbubbles on a patient-by-patient basis.
Mechanical system that fluidizes, mixes, coats, dries, combines, chemically reacts, and segregates materials
The present application is directed towards systems for adding components to materials being fluidized in a vibratory mixer by use of atomizers or sprayers. A mechanical system can fluidizes, mix, coat, dry, combine, or segregate materials. The system may comprise a vibratory mixer, mixing vessel containing a first material and a sprayer to introduce a second material. The vibratory mixer may generate a fluidized bed of a first material and the sprayer, coupled to the mixing vessel, may introduce a second material onto the fluidized bed to mix the materials in a uniform and even fashion.
MIXER VEHICLE WITH TWIN SCREW MIXER
A mixer vehicle comprises a chassis and mixer drum coupled with the chassis. The mixer drum includes a first cylindrical inner volume and a second cylindrical inner volume. The first cylindrical inner volume and the second cylindrical inner volume are fluidly coupled with each other at passageways positioned at both ends of the mixer drum. The mixer drum further comprises a first mixer screw positioned within the first cylindrical inner volume and a second mixer screw positioned within the second cylindrical inner volume. The first mixer screw and the second mixer screw are configured to be driven to rotate to drive a slurry material between the first cylindrical inner volume and the second cylindrical inner volume to mix the slurry material.