Method of removing heavy metals from an aqueous solution using partially charred rice husks
The inventive subject matter disclosed herein includes multiple novel filter media comprising activated rice husks, as well as filtration systems and methods for removing contaminants from an aqueous solution, such as wastewater produced as a byproduct of various industrial processes, including mining, oil and gas exploration and extraction, farming, manufacturing, and the like.
1. A method to remove a plurality of heavy metals from an aqueous solution comprising:
a method of making partially charred rice husks consisting of
providing rice husks,
exposing the rice husks to a heat source to heat the rice husks to a temperature of between about 250° C. and about 550° C. for a period of between about 1 to about 10 minutes in at atmosphere having less than 2 percent oxygen in order to partially char the rice husks to form partially charred rice husks,
removing the partially charred rice husks from the heat source,
cooling the partially charred rice husks to an ambient temperature,
wherein the partially charred rice husks have a silicon content of not greater than 40 percent, range from between about 0.5 mm to about 5 mm in length, have a specific surface area of between 200-400 m 2 /g, and have a porosity between 0.4 to 0.55; and
passing the aqueous solution through said partially charred rice husks to at least partially remove the heavy metals from the aqueous solution.
2. The method of claim 1 further comprising pressing the aqueous solution from the partially charred rice husks to form a waste cake, wherein the waste cake has-filtration media density of between approximately 0.7 to approximately 2.0 pounds per cubic foot (lb/ft 3 ).
3. The method of claim 1 further comprising the step of regenerating the partially charred rice husks by washing the partially charred rice husks with an aqueous acid solution.
4. The method of claim 3 further comprising passing the aqueous solution through the regenerated partially charred rice husks to further remove heavy metals from the aqueous solution.
5. The method of claim 1 , wherein the plurality of heavy metals consist essentially of manganese, zinc, and nickel.
6. The method of claim 1 , wherein the plurality of heavy metals consist essentially of chromium, copper, nickel, and zinc.