B01J12/02

Apparatus and method of producing inorganic powder

Provided are an apparatus for producing inorganic powder, and a method of producing inorganic powder by using such. The apparatus includes a vaporization part where a condensed-phase precursor is vaporized to obtain a gas-phase precursor, a partial precipitation part where the gas-phase precursor obtained in the vaporization part is partially precipitated to a condensed phase, and a reaction part where the gas-phase precursor remaining after being partially precipitated to a condensed phase in the partial precipitation part reacts with a reaction gas to obtain inorganic powder. An equilibrium vapor pressure of the gas-phase precursor in the partial precipitation part is lower than a vapor pressure of the gas-phase precursor obtained in the vaporization part, and an equilibrium vapor pressure of the precursor in the reaction part is equal to or higher than a vapor pressure of the gas-phase precursor partially precipitated to a condensed phase in the partial precipitation part.

Apparatus and method of producing inorganic powder

Provided are an apparatus for producing inorganic powder, and a method of producing inorganic powder by using such. The apparatus includes a vaporization part where a condensed-phase precursor is vaporized to obtain a gas-phase precursor, a partial precipitation part where the gas-phase precursor obtained in the vaporization part is partially precipitated to a condensed phase, and a reaction part where the gas-phase precursor remaining after being partially precipitated to a condensed phase in the partial precipitation part reacts with a reaction gas to obtain inorganic powder. An equilibrium vapor pressure of the gas-phase precursor in the partial precipitation part is lower than a vapor pressure of the gas-phase precursor obtained in the vaporization part, and an equilibrium vapor pressure of the precursor in the reaction part is equal to or higher than a vapor pressure of the gas-phase precursor partially precipitated to a condensed phase in the partial precipitation part.

SYSTEM AND PROCESS FOR RECLAIMING A METAL-CONTAINING SALT SOLUTION FROM A LITHIUM-CONTAINING BATTERY MATERIAL, AND CHEMICALS THEREOF
20240226839 · 2024-07-11 ·

A system and process for recovering a metal containing organic and/or inorganic salt solution from a lithium-containing battery material, and chemicals thereof is disclosed. The process includes leaching the lithium-containing battery material in a leaching solution comprising water and sulfuric acid (H.sub.2SO.sub.4) to obtain a leachate solution, adding metal hydroxide (Me(OH).sub.x) to the leachate solution, titrating the leachate solution with an aqueous acid solution to maintain the leachate solution to be at a pH 7.0 or less and obtaining a precipitate comprising metal sulfate (Me.sub.ySO.sub.4), and separating solid forms of metal sulfate (Me.sub.ySO.sub.4) from the leachate solution and acquiring the metal-containing organic and/or inorganic salt solution that can be reused in batteries in a battery manufacturing process

SYSTEM AND PROCESS FOR RECLAIMING A METAL-CONTAINING SALT SOLUTION FROM A LITHIUM-CONTAINING BATTERY MATERIAL, AND CHEMICALS THEREOF
20240226839 · 2024-07-11 ·

A system and process for recovering a metal containing organic and/or inorganic salt solution from a lithium-containing battery material, and chemicals thereof is disclosed. The process includes leaching the lithium-containing battery material in a leaching solution comprising water and sulfuric acid (H.sub.2SO.sub.4) to obtain a leachate solution, adding metal hydroxide (Me(OH).sub.x) to the leachate solution, titrating the leachate solution with an aqueous acid solution to maintain the leachate solution to be at a pH 7.0 or less and obtaining a precipitate comprising metal sulfate (Me.sub.ySO.sub.4), and separating solid forms of metal sulfate (Me.sub.ySO.sub.4) from the leachate solution and acquiring the metal-containing organic and/or inorganic salt solution that can be reused in batteries in a battery manufacturing process

Device for manufacturing polysilicon using horizontal reactor and method for manufacturing same

The present invention relates to a polysilicon production apparatus. The apparatus includes: a horizontal reaction tube positioned in an insulated tube and having an inlet port through which gaseous raw materials including silicon-containing reactant gases and a reducing gas are supplied, an outlet port through which residual gases exit, a reaction surface with which the gaseous raw materials come into contact, and a plurality of bottom openings through which molten polysilicon produced by the reactions of the gaseous raw materials is discharged; one or more internal structures placed in the horizontal reaction tube to provide additional reaction surfaces; and first heating means adapted to heat the reaction surface of the horizontal reaction tube. The present invention also relates to a method for the production of polysilicon using the apparatus.

Device for manufacturing polysilicon using horizontal reactor and method for manufacturing same

The present invention relates to a polysilicon production apparatus. The apparatus includes: a horizontal reaction tube positioned in an insulated tube and having an inlet port through which gaseous raw materials including silicon-containing reactant gases and a reducing gas are supplied, an outlet port through which residual gases exit, a reaction surface with which the gaseous raw materials come into contact, and a plurality of bottom openings through which molten polysilicon produced by the reactions of the gaseous raw materials is discharged; one or more internal structures placed in the horizontal reaction tube to provide additional reaction surfaces; and first heating means adapted to heat the reaction surface of the horizontal reaction tube. The present invention also relates to a method for the production of polysilicon using the apparatus.

Method of Preparing a Material of a Battery Cell
20180361338 · 2018-12-20 ·

A continuous process for producing a material of a battery cell using a system having a mist generator, a drying chamber, one or more gas-solid separators and a reactor is provided. A mist generated from a liquid mixture of two or more metal precursor compounds in desired ratio is dried inside the drying chamber. Heated air or gas is served as the gas source for forming various gas-solid mixtures and as the energy source for reactions inside the drying chamber and the reactor. One or more gas-solid separators are used in the system to separate gas-solid mixtures from the drying chamber into solid particles mixed with the metal precursor compounds and continuously deliver the solid particles into the reactor for further reaction to obtain final solid material particles with desired crystal structure, particle size, and morphology.

Method of Preparing a Material of a Battery Cell
20180361338 · 2018-12-20 ·

A continuous process for producing a material of a battery cell using a system having a mist generator, a drying chamber, one or more gas-solid separators and a reactor is provided. A mist generated from a liquid mixture of two or more metal precursor compounds in desired ratio is dried inside the drying chamber. Heated air or gas is served as the gas source for forming various gas-solid mixtures and as the energy source for reactions inside the drying chamber and the reactor. One or more gas-solid separators are used in the system to separate gas-solid mixtures from the drying chamber into solid particles mixed with the metal precursor compounds and continuously deliver the solid particles into the reactor for further reaction to obtain final solid material particles with desired crystal structure, particle size, and morphology.

Method of preparing a material of a battery cell
12064757 · 2024-08-20 ·

A continuous process for producing a material of a battery cell using a system having a mist generator, a drying chamber, one or more gas-solid separators and a reactor is provided. A mist generated from a liquid mixture of two or more metal precursor compounds in desired ratio is dried inside the drying chamber. Heated air or gas is served as the gas source for forming various gas-solid mixtures and as the energy source for reactions inside the drying chamber and the reactor. One or more gas-solid separators are used in the system to separate gas-solid mixtures from the drying chamber into solid particles mixed with the metal precursor compounds and continuously deliver the solid particles into the reactor for further reaction to obtain final solid material particles with desired crystal structure, particle size, and morphology.

Method of preparing a material of a battery cell
12064757 · 2024-08-20 ·

A continuous process for producing a material of a battery cell using a system having a mist generator, a drying chamber, one or more gas-solid separators and a reactor is provided. A mist generated from a liquid mixture of two or more metal precursor compounds in desired ratio is dried inside the drying chamber. Heated air or gas is served as the gas source for forming various gas-solid mixtures and as the energy source for reactions inside the drying chamber and the reactor. One or more gas-solid separators are used in the system to separate gas-solid mixtures from the drying chamber into solid particles mixed with the metal precursor compounds and continuously deliver the solid particles into the reactor for further reaction to obtain final solid material particles with desired crystal structure, particle size, and morphology.