B03B13/00

MATERIAL SEPARATION AND CONVEYANCE USING TUNED WAVES
20190134670 · 2019-05-09 ·

Systems, methods and computer readable media for material separation and conveying using tuned waves are disclosed.

MATERIAL SEPARATION AND CONVEYANCE USING TUNED WAVES
20190134670 · 2019-05-09 ·

Systems, methods and computer readable media for material separation and conveying using tuned waves are disclosed.

METHOD AND APPARATUS FOR CONTROLLING A FIBER FRACTIONATION SYSTEM
20190085509 · 2019-03-21 ·

A method for controlling a fiber fractionation system for fractionating an input material into a long fraction (LF) stream comprising LF fibers and a short fraction (SF) stream comprising SF fibers includes measuring an average LF fiber length at one or more locations post-fractionation, and maintaining the average LF fiber length within a target variability range by automatically altering a rotational speed of a rotor of the fiber fractionation system.

METHOD AND APPARATUS FOR CONTROLLING A FIBER FRACTIONATION SYSTEM
20190085509 · 2019-03-21 ·

A method for controlling a fiber fractionation system for fractionating an input material into a long fraction (LF) stream comprising LF fibers and a short fraction (SF) stream comprising SF fibers includes measuring an average LF fiber length at one or more locations post-fractionation, and maintaining the average LF fiber length within a target variability range by automatically altering a rotational speed of a rotor of the fiber fractionation system.

System and Method for Enhanced Separation and Recovery of Heavy Metals and Rare Earth Elements from Electronic Waste, Mining Residues, and Sediments Using Electronic Charge, Magnetic Beads, and Bubble Mechanisms
20240246089 · 2024-07-25 ·

An advanced method and system for processing mixtures containing clay, metals, and pollutants. The process begins with the separation of clay and metal, followed by the detoxification of pollutants using magnetic beads. Enhancement of pollutant treatment is achieved through the application of nano-bubbles generated by a proprietary bubble generator. The method further includes a detailed screening and classification of particles, utilizing magnetic and gravity separation techniques, the latter of which is supported by an innovative anti-leakage net designed to capture and recycle leaked particles. The process concludes with the effective separation and collection of target elements and rare earth elements (REE), employing flotation for the final classification and extraction. This method represents a comprehensive and efficient approach to mixture processing, emphasizing pollutant removal and resource recovery.

Hydrodynamic removal of dense materials from a slurry

The invention relates to a device and to a method for the hydrodynamic removal of dense materials from a suspension, said device comprising a hydrocyclone (1), which holds the suspension, a classifying tube (2), which adjoins the hydrocyclone, and a storage chamber (3), which holds the removed dense materials, wherein a flushing water flow to the classifying tube (2) and a flushing water flow to the storage chamber (3) are provided, which can be controlled in a closed-loop or open-loop manner by means of a control element provided at the feed to the classifying tube and a control element provided at the feed to the storage chamber, respectively.

Hydrodynamic removal of dense materials from a slurry

The invention relates to a device and to a method for the hydrodynamic removal of dense materials from a suspension, said device comprising a hydrocyclone (1), which holds the suspension, a classifying tube (2), which adjoins the hydrocyclone, and a storage chamber (3), which holds the removed dense materials, wherein a flushing water flow to the classifying tube (2) and a flushing water flow to the storage chamber (3) are provided, which can be controlled in a closed-loop or open-loop manner by means of a control element provided at the feed to the classifying tube and a control element provided at the feed to the storage chamber, respectively.

METHODS AND APPARATUS FOR THE CONTINUOUS MONITORING OF WEAR AND PRESSURE IN CENTRIFUGAL CONCENTRATORS
20180304277 · 2018-10-25 ·

A system for the continuous monitoring of wear and/or pressure within a gravity concentrator/centrifugal separator [10] is disclosed. The system may comprise a gravity concentrator/centrifugal separator [10] having a cone [30], rotor housing shell [20], and water jacket [40]. At least one detector [34] may be provided to at least one of the cone [30], rotor housing shell [20], and water jacket [40]. At least one integrated or handheld sensor [60] may be provided adjacent to portions of the gravity concentrator/centrifugal separator [10], the sensor [60] being configured to communicate (e.g., wirelessly) with the at least one detector [34] during operation of the gravity concentrator/centrifugal separator [10]. In use, the cone [30] may wear away and ultimately affect a function of the least one detector [34]. In use, pressure changes within the water jacket [40] may change and ultimately affect a function (e.g., an output signal) of the least one detector [34]. The at least one sensor [60] may be configured to monitor said function(s) of the least one detector [34]. When the at least one sensor [60] detects a change in the signal of the at least one detector [34], an operator or control system may be notified that maintenance or cone [30] replacement may be necessary; and/or an operator or control system may be notified that one or more operational inputs may need to be adjusted to obtain peak performance of the gravity concentrator/centrifugal separator [10].

GRAVITY SEPARATION DEVICE
20180280991 · 2018-10-04 · ·

Provided is a gravity separation device wherein occurrences of shelving, flashing, and the like inside the device can be suppressed, variations in the flow rate of underflow obtained by gravity separation can be minimized and underflow can be stably extracted. This gravity separation device, which separates overflow and underflow using differences in specific gravity from mixed material, is provided with a separation section that has a supply pipe for supplying a slurry of the mixed material at the top and separates that slurry into overflow and underflow, and a deposition section that is positioned below the separation section and wherein the underflow that has been separated by precipitation is deposited. An extraction pipe for extracting the underflow is connected to the deposition section, and a valve for extracting the underflow and a metering pump for quantitatively extracting the underflow are provided in the extraction pipe.

GRAVITY SEPARATION DEVICE
20180280991 · 2018-10-04 · ·

Provided is a gravity separation device wherein occurrences of shelving, flashing, and the like inside the device can be suppressed, variations in the flow rate of underflow obtained by gravity separation can be minimized and underflow can be stably extracted. This gravity separation device, which separates overflow and underflow using differences in specific gravity from mixed material, is provided with a separation section that has a supply pipe for supplying a slurry of the mixed material at the top and separates that slurry into overflow and underflow, and a deposition section that is positioned below the separation section and wherein the underflow that has been separated by precipitation is deposited. An extraction pipe for extracting the underflow is connected to the deposition section, and a valve for extracting the underflow and a metering pump for quantitatively extracting the underflow are provided in the extraction pipe.