Preparation of lithium carbonate from lithium chloride containing brines
This invention relates to a method for the preparation of lithium carbonate from lithium chloride containing brines. The method can include a silica removal step, capturing lithium chloride, recovering lithium chloride, supplying lithium chloride to an electrochemical cell and producing lithium hydroxide, contacting the lithium hydroxide with carbon dioxide to produce lithium carbonate.
1. A method of preparing lithium carbonate from a lithium chloride-rich stream, the method comprising the steps of:
supplying a brine solution containing lithium chloride and silica to a silica removal step to produce a silica-lean lithium chloride containing solution, wherein the silica removal step is operable to remove at least a portion of silica present in the brine, and wherein the brine solution comprises a smackover brine;
processing the silica-lean lithium chloride containing solution through a lithium chloride capture step to obtain a lithium chloride containing feed solution;
contacting the lithium chloride containing feed solution with a solvent extraction mixture to remove at least a portion of divalent ions present in the lithium chloride containing feed solution and produce a purified lithium chloride-rich stream having a reduced concentration of divalent ions relative to the lithium chloride containing feed solution;
supplying the purified lithium-chloride rich stream to an electrochemical cell to produce a lithium hydroxide-rich solution; and
contacting the lithium hydroxide-rich solution with carbon dioxide to produce lithium carbonate.
2. A method of preparing lithium carbonate from a lithium chloride-rich stream, the method comprising the steps of:
supplying a brine solution containing lithium chloride and silica to a silica removal step to produce a silica-lean lithium chloride containing solution, wherein the silica removal step is operable to remove at least a portion of silica present in the brine;
processing the silica-lean lithium chloride containing solution through a lithium chloride capture step to obtain a lithium chloride containing feed solution;
contacting the lithium chloride containing feed solution with a solvent extraction mixture to remove at least a portion of divalent ions present in the lithium chloride containing feed solution and produce a purified lithium chloride-rich stream having a reduced concentration of divalent ions relative to the lithium chloride containing feed solution, wherein the solvent extraction mixture comprises phosphinic acid;
supplying the purified lithium-chloride rich stream to an electrochemical cell to produce a lithium hydroxide-rich solution; and
contacting the lithium hydroxide-rich solution with carbon dioxide to produce lithium carbonate.
3. The method of claim 2 , wherein the brine solution comprises a geothermal brine.
4. The method of claim 2 , wherein the solvent extraction mixture comprises petroleum distillates.
5. The method of claim 4 , wherein the petroleum distillates comprise alkanes, isoalkanes, and cycloalkanes.
6. The method of claim 2 , wherein the solvent extraction mixture comprises a mixture of phosphinic acid and petroleum distillates.