C22B3/10

SYSTEMS AND METHODS FOR RECOVERING SCRAP SILVER
20210130924 · 2021-05-06 ·

A method of recovering scrap silver. The method includes obtaining scrap sources that include silver. The method also includes submerging the scrap sources in an aqueous solution of hydrofluoric acid (HF). The method further includes adding hydrogen peroxide (H.sub.2O.sub.2) to the aqueous solution of hydrofluoric acid to create a leachate. The method additionally includes extracting silver from the leachate.

METHOD FOR RECOVERING NOBLE METAL FROM HETEROGENEOUS CATALYSTS CONTAINING NOBLE METAL
20230407503 · 2023-12-21 ·

A method for recovering noble metal from a heterogeneous catalyst comprising a solid carrier material and palladium, platinum or rhodium, present at least partially in elemental form, said method comprising the steps of converting the noble metal to an oxidation state>0 by treating the heterogeneous catalyst with an oxidizing agent in the presence of hydrochloric acid so as to form a two-phase system A comprising a hydrochloric aqueous phase A1 and a solid phase comprising the carrier material which is insoluble therein, optionally, at least partially separating the hydrochloric aqueous phase A1 from the two-phase system A and adding a further aqueous phase to the remaining residue of the two-phase system A so as to form a two-phase system B comprising a hydrochloric aqueous phase and a solid phase comprising the carrier material insoluble therein.

METHOD FOR RECOVERING NOBLE METAL FROM HETEROGENEOUS CATALYSTS CONTAINING NOBLE METAL
20230407503 · 2023-12-21 ·

A method for recovering noble metal from a heterogeneous catalyst comprising a solid carrier material and palladium, platinum or rhodium, present at least partially in elemental form, said method comprising the steps of converting the noble metal to an oxidation state>0 by treating the heterogeneous catalyst with an oxidizing agent in the presence of hydrochloric acid so as to form a two-phase system A comprising a hydrochloric aqueous phase A1 and a solid phase comprising the carrier material which is insoluble therein, optionally, at least partially separating the hydrochloric aqueous phase A1 from the two-phase system A and adding a further aqueous phase to the remaining residue of the two-phase system A so as to form a two-phase system B comprising a hydrochloric aqueous phase and a solid phase comprising the carrier material insoluble therein.

Recovery of copper from copper-containing sulfide ores

A process for recovering copper from copper sulfide minerals, the method comprising the steps of leaching copper sulfide minerals with an aqueous solution of ammonium chloride containing cupric chloride at a temperature of between about 40 C. and about 95 C. at atmospheric pressure, to produce a solution of cuprous/cupric chloride.

Recovery of copper from copper-containing sulfide ores

A process for recovering copper from copper sulfide minerals, the method comprising the steps of leaching copper sulfide minerals with an aqueous solution of ammonium chloride containing cupric chloride at a temperature of between about 40 C. and about 95 C. at atmospheric pressure, to produce a solution of cuprous/cupric chloride.

METHODS OF SELECTIVELY RECOVERING PALLADIUM FROM A PALLADIUM-CONTAINING MATERIAL
20210047708 · 2021-02-18 ·

A method of selectively recovering palladium from a palladium-containing material comprises providing a leaching solution comprising hydrochloric acid, hydrogen peroxide, and an iron salt comprising one or both of ferric chloride or ferrous chloride and contacting a palladium-containing material with the leaching solution to dissolve palladium from the palladium-containing material. Related methods of selectively recovering palladium from a palladium-containing material are also disclosed.

METHODS OF SELECTIVELY RECOVERING PALLADIUM FROM A PALLADIUM-CONTAINING MATERIAL
20210047708 · 2021-02-18 ·

A method of selectively recovering palladium from a palladium-containing material comprises providing a leaching solution comprising hydrochloric acid, hydrogen peroxide, and an iron salt comprising one or both of ferric chloride or ferrous chloride and contacting a palladium-containing material with the leaching solution to dissolve palladium from the palladium-containing material. Related methods of selectively recovering palladium from a palladium-containing material are also disclosed.

GAS-ASSISTED MICROFLOW EXTRACTION (GAME) SYSTEM PATENT

The present disclosure concerns a Gas-Assisted Microbubble Extraction (GAME) system with an innovative dispersion module that can be used to efficiently separate and purify base metals and rare earth elements from various sources. The GAME system utilizes a three phase system of a gas phase, an organic phase, and an aqueous phase to efficiently extract low concentration metals from a solution.

GAS-ASSISTED MICROFLOW EXTRACTION (GAME) SYSTEM PATENT

The present disclosure concerns a Gas-Assisted Microbubble Extraction (GAME) system with an innovative dispersion module that can be used to efficiently separate and purify base metals and rare earth elements from various sources. The GAME system utilizes a three phase system of a gas phase, an organic phase, and an aqueous phase to efficiently extract low concentration metals from a solution.

PRECIOUS METALS RECOVERY
20230416872 · 2023-12-28 ·

Discloses a hydrometallurgical process and system for the recovery of precious metals; specifically palladium, rhodium, and platinum metals, at high purity and with limited waste and environmental fouling.