H05B3/60

PROCESS FOR FAST AND HOMOGENEOUSLY HEATING A LIQUID PRODUCT AND APPARATUS FOR SUCH PROCESS

The invention relates to an apparatus for fast and homogeneously heating a liquid product to a heating temperature by means of resistive heating, the apparatus comprising at least two vertically mounted, longitudinal, heating chambers that are arranged in series.

The invention further relates to a process for fast and homogeneously heating a liquid product to a heating temperature by means of resistive heating in such apparatus comprising (a) continuously supplying the liquid product to the first heating chamber in series and flowing the liquid product continuously through the at least two heating chambers; (b) continuously generating an electrical current through the liquid product flowing through the heating chambers by continuously applying an electrical potential over each heating chamber, wherein the direction of the current is continuously alternated with a frequency of at least 500 Hz, to obtain heated liquid product; and (c) continuously discharging heated liquid product from the last heating chamber in series, wherein the liquid product has an electrical conductivity of at least 0.03 S/m.

PROCESS FOR FAST AND HOMOGENEOUSLY HEATING A LIQUID PRODUCT AND APPARATUS FOR SUCH PROCESS

The invention relates to an apparatus for fast and homogeneously heating a liquid product to a heating temperature by means of resistive heating, the apparatus comprising at least two vertically mounted, longitudinal, heating chambers that are arranged in series.

The invention further relates to a process for fast and homogeneously heating a liquid product to a heating temperature by means of resistive heating in such apparatus comprising (a) continuously supplying the liquid product to the first heating chamber in series and flowing the liquid product continuously through the at least two heating chambers; (b) continuously generating an electrical current through the liquid product flowing through the heating chambers by continuously applying an electrical potential over each heating chamber, wherein the direction of the current is continuously alternated with a frequency of at least 500 Hz, to obtain heated liquid product; and (c) continuously discharging heated liquid product from the last heating chamber in series, wherein the liquid product has an electrical conductivity of at least 0.03 S/m.

Systems and methods for controlling a vacuum arc remelting furnace based on power input
10591217 · 2020-03-17 · ·

A control system for a vacuum arc remelting (VAR) process for a metal includes a direct current (DC) power source, a ram drive, voltage drip short sensor, and a controller, which includes a processor. The drip short sensor may be configured to measure a drip short frequency of the electric arc over a period of time. The controller is configured to determine a real time arc gap length between the electrode tip and the melt pool based on a correlation between the drip short frequency and arc gap length. The controller is further configured to control power input to the electrode by the DC power supply by determining an input power level to input to the electrode based on the real time arc gap length, the input power level configured to generate a desired arc gap length, by the DC power supply, at the input power level.

Solids-packed apparatus for performance of endothermic reactions with direct electrical heating

The present invention relates to an electrically heatable packed pressure-bearing apparatus for conducting endothermic reactions having an upper (3), middle (1) and lower (3) apparatus section, where at least one pair of electrodes (4, 5) in a vertical arrangement is installed in the middle section (1) and all electrodes are disposed in an electrically conductive solid-state packing (26), the upper and lower apparatus sections have a specific conductivity of 105 S/m to 108 S/m, and the middle apparatus section is electrically insulated against the solid-state packing, wherein the upper and lower apparatus sections are electrically insulated from the middle apparatus section, the upper electrode is connected via the upper apparatus section and the lower electrodes via the lower apparatus section or the electrodes are each connected via one or more connecting elements (10, 16) that are in electrical contact with these sections and the ratio of the cross-sectional areas of the upper and lower electrode to the cross-sectional area of the respective current-conducting connecting element or, without use of a connecting element, the ratio of the cross-sectional area of the upper and lower electrode to the cross-sectional area of the respective current-conducting apparatus section is 0.1 to 10.

Solids-packed apparatus for performance of endothermic reactions with direct electrical heating

The present invention relates to an electrically heatable packed pressure-bearing apparatus for conducting endothermic reactions having an upper (3), middle (1) and lower (3) apparatus section, where at least one pair of electrodes (4, 5) in a vertical arrangement is installed in the middle section (1) and all electrodes are disposed in an electrically conductive solid-state packing (26), the upper and lower apparatus sections have a specific conductivity of 105 S/m to 108 S/m, and the middle apparatus section is electrically insulated against the solid-state packing, wherein the upper and lower apparatus sections are electrically insulated from the middle apparatus section, the upper electrode is connected via the upper apparatus section and the lower electrodes via the lower apparatus section or the electrodes are each connected via one or more connecting elements (10, 16) that are in electrical contact with these sections and the ratio of the cross-sectional areas of the upper and lower electrode to the cross-sectional area of the respective current-conducting connecting element or, without use of a connecting element, the ratio of the cross-sectional area of the upper and lower electrode to the cross-sectional area of the respective current-conducting apparatus section is 0.1 to 10.

Densification methods and apparatuses
10549497 · 2020-02-04 · ·

A method includes a first electrode exhibiting a first Seebeck coefficient, a second electrode exhibiting a second Seebeck coefficient greater than the first Seebeck coefficient, and particles between the first and second electrodes exhibiting a third Seebeck coefficient between the first and second Seebeck coefficients. Heat is generated due to the Peltier effect at a junction between the first electrode and the particles and at a junction between the second electrode and the particles. Heat is removed due to the Peltier effect at the junction between the first electrode and the particles and at the junction between the second electrode and the particles. The particles are densified due to heating and cooling phase transitions between a higher-temperature solid phase and a lower-temperature solid phase while compressing the particles. An apparatus includes the first and second electrodes and an alternating current power supply electrically connected to the first and second electrodes.

APPARATUS AND METHOD FOR HEATING MASSES WITH ELECTRIC CURRENT
20240090084 · 2024-03-14 ·

A device for applying electric current to mass. The device includes a vessel having a cylindrical wall with a stirrer arranged in the vessel. The stirrer is mounted on a first end of a rotationally driven stirrer shaft. The stirrer shaft with a spacing is enclosed by a first electrode. The first electrode is immobile and fixed to a lid arranged to cover an open cross-section of the vessel. The cylindrical wall forms a second electrode, wherein the first electrode and the second electrode are connectable to opposite polarities of a current source.

METHOD FOR TREATING A LIQUID, IN PARTICULAR AN AQUEOUS LIQUID, WITH A VIEW TO HEATING SAME, GENERATING STEAM, DEVELOPING A CATALYTIC REACTION, PRODUCING NANOPARTICLES AND/OR CONCENTRATING AT LEAST ONE SPECIES PRESENT THEREIN
20240074005 · 2024-02-29 ·

Method for treating a liquid with a view to heating same, generating steam, developing a catalytic reaction and/or concentrating at least one species present therein, wherein a flow of a liquid is caused to circulate in at least one treatment area formed between at least two electrodes connected to an alternating current source with a phase alternation frequency greater than or equal to

METHOD FOR TREATING A LIQUID, IN PARTICULAR AN AQUEOUS LIQUID, WITH A VIEW TO HEATING SAME, GENERATING STEAM, DEVELOPING A CATALYTIC REACTION, PRODUCING NANOPARTICLES AND/OR CONCENTRATING AT LEAST ONE SPECIES PRESENT THEREIN
20240074005 · 2024-02-29 ·

Method for treating a liquid with a view to heating same, generating steam, developing a catalytic reaction and/or concentrating at least one species present therein, wherein a flow of a liquid is caused to circulate in at least one treatment area formed between at least two electrodes connected to an alternating current source with a phase alternation frequency greater than or equal to

Electrical Heating Device
20240057225 · 2024-02-15 ·

An electrical heating device has several cartridges disposed one above the other, each of which has two openings disposed on opposite face side surfaces. One of the openings forms an inlet, and another of the openings forms an outlet. Deflection devices deflect flow within the cartridges from a first cartridge to a second cartridge that is adjacent to the first cartridge. A PTC heating device is provided between two adjacent cartridges and is coupled in a thermally conductive manner to flow channels provided in the adjacent cartridges.