Method for removing mercury and/or arsenic from contaminated water using an intimate mixture of organoclay and elemental sulfur
The use of a sulfur-impregnated organoclay provides a mercury or arsenic removal media having increased reactivity, stability, and mercury removal ability. The Hg/As removal media described herein is prepared by impregnating an organophilic clay with elemental (free state) sulfur. Alternatively, the clay can be made organophilic by onium ion reaction prior to or simultaneously with impregnating the organoclay with sulfur.
1. A method of removing mercury and/or arsenic from contaminated water comprising
contacting the contaminated water with a contaminant removal media that comprises an intimate mixture of an organoclay and elemental sulfur; wherein the contaminant removal media was prepared prior to contacting it with the contaminated water by extruding a mixture of the organoclay and elemental sulfur in its free state.
2. The method of claim 1 , wherein the contaminant removal media comprises:
50 to 99.5 wt. % of an organoclay; and
0.5 to 50 wt. % elemental sulfur.
3. The method of claim 2 , wherein the organoclay comprises a layered phyllosilicate intercalated with an intercalant agent, and wherein the contaminant removal media comprises:
1-90 wt. % of the layered phyllosilicate;
10-50 wt. % of the intercalant agent; and
0.5-50 wt. % of elemental sulfur.
4. The method of claim 3 , wherein the contaminant removal media comprises:
35-83 wt. % of the layered phyllosilicate;
15-45 wt. % of the intercalant agent; and
2-20 wt. % of elemental sulfur.
5. The method of claim 4 , wherein the contaminant removal media comprises:
50-77 wt. % of the layered phyllosilicate;
20-40 wt. % of the intercalant agent; and
3-10 wt. % of elemental sulfur.
6. The method of claim 5 , wherein the contaminant removal media comprises:
59-71 wt. % of the layered phyllosilicate;
25-35 wt. % of the intercalant agent; and
4-6 wt. % of elemental sulfur.
7. The method of claim 6 , wherein the contaminant removal media comprises:
65 wt. % of the layered phyllosilicate;
30 wt. % of the intercalant agent; and
5 wt. % of elemental sulfur.
8. The method of claim 1 , wherein the contaminant removal media has a particle size between 18 and 40 mesh, U.S. Sieve Series.
9. A method of removing mercury or arsenic from water comprising contacting the water with an intimate mixture of a layered phyllosilicate intercalated with a surface-modifying, layer-expanding intercalant; and elemental sulfur; wherein the intimate mixture was prepared by extruding a mixture of the layered phyllosilicate; the intercalant agent; and elemental sulfur in its free state.
10. The method of claim 9 , wherein the intimate mixture is prepared by extruding a mixture of the layered phyllosilicate; the surface-modifying, layer-expanding intercalant; and the elemental sulfur.
11. The method of claim 9 , wherein the layer-expanding intercalant is selected from the group consisting of onium ions, a polymer, and a mixture thereof.
12. The method of claim 9 , wherein the contaminant removal media has a particle size between 18 and 40 mesh, U.S. Sieve Series.
13. A method of regenerating contaminated water containing an organic contaminant, and mercury and/or arsenic contaminants comprising:
contacting the contaminated water with an organoclay for removal of organic contaminants; and
contacting the contaminated water with an intimate mixture of an organoclay and elemental sulfur for removal of mercury or arsenic; wherein the intimate mixture was prepared by extruding a mixture of 1-90 wt. % of a layered phyllosilicate; 10-50 wt. % of an intercalant agent; and 0.5-50 wt. % of elemental sulfur in its free state.
14. A method of removing mercury and/or arsenic from mercury and/or arsenic contaminated water comprising:
flowing a mercury and/or arsenic contaminated water through a liquid permeable cartridge; the cartridge comprising a contaminant removal media that comprises an intimate mixture of an organoclay and elemental sulfur; wherein the intimate mixture was prepared by extruding a mixture of 1-90 wt. % of a layered phyllosilicate; 10-50 wt. % of an intercalant agent; and 0.5-50 wt. % of elemental sulfur in its free state.