Process for removing arsenic from drinking water
Arsenic is removed from water and other aqueous feeds by (1) treating the feed with a compound containing cerium in the +4 oxidation state, preferably cerium dioxide, to oxidize arsenic in the +3 oxidation state to arsenic in the +5 oxidation state and (2) removing the arsenic in the +5 oxidation state from the aqueous phase, normally by contacting the treated feed with alumina or other precipitating agent containing cations in the +3 oxidation state.
1. A device for removing arsenic from drinking water comprising:
(a) an inlet communicating with a source of said drinking water;
(b) an oxidation vessel containing solids comprising a compound containing cerium in the +4 oxidation state in an amount sufficient to oxidize said arsenic to the +5 oxidation state and a particulate arsenic precipitating agent that reacts with arsenic in the +5 oxidation state to form insoluble arsenic compounds, wherein said solids are essentially devoid of lanthanum oxide, said vessel has an entry portion and an exit portion and said entry portion communicates with said inlet; and
(c) an outlet communicating with said exit portion of said vessel.
2. The device defined by claim 1 wherein said compound containing cerium in the +4 oxidation state comprises cerium dioxide.
3. The device defined by claim 1 wherein said vessel comprises a cartridge or filter containing said solids and said device is designed to fit beneath a sink or on the outlet of a faucet.
4. The device defined by claim 1 wherein said vessel comprises a tank containing said solids.
5. The device defined by claim 1 wherein said compound containing cerium in the +4 oxidation state is mixed with said particulate arsenic precipitating agent.
6. The device defined by claim 5 wherein said particulate arsenic precipitating agent is selected from the group consisting of alumina, ion exchange resins, crystalline aluminosilicates, clays and porous ceramics.
7. The device defined by claim 1 wherein said compound containing cerium in the +4 oxidation state is supported on said particulate arsenic precipitating agent.
8. The device defined by claim 7 wherein said particulate arsenic precipitating agent is selected from the group consisting of alumina, ion exchange resins, crystalline aluminosilicates, clays and porous ceramics.
9. The device defined by claim 1 wherein said particulate arsenic precipitating agent comprises cerium in the +3 oxidation state.
10. A device for removing arsenic from drinking water comprising:
(a) an inlet communicating with a source of said drinking water;
(b) an oxidation vessel containing solids consisting essentially of a compound containing cerium in the +4 oxidation state in an amount sufficient to oxidize said arsenic to the +5 oxidation state, wherein said vessel has an entry portion and an exit portion and said entry portion communicates with said inlet; and
(c) an outlet communicating with said exit portion of said vessel.
11. The device defined by claim 10 wherein said solids consist essentially of cerium dioxide.