Wastewater purification with nanoparticle-treated bed
Nanoparticle-treated particle packs, such as sand beds, may effectively filter and purify liquids such as waste water. When tiny contaminant particles in waste water flow through the particle pack, the nanoparticles will capture and hold the tiny contaminant particles within the pack due to the nanoparticles' surface forces, including, but not necessarily limited to van der Waals and electrostatic forces. Coating agents may help apply the nanoparticles to the particle surfaces in the filter beds or packs.
1. A method for purifying an aqueous liquid containing contaminant particles, the method comprising:
contacting said aqueous liquid containing contaminant particles selected from a group consisting of sediments, soil particles, and mining particles with a particle pack comprising substrate particles and comparatively smaller particulate additives;
where the substrate particles are comparatively larger than the particulate additive and are sand,
where the particle pack is at least partially coated with a coating agent comprising alcohol,
where the particulate additives have a mean particle size from about 4 nm to about 500 nm and are comprised of calcium oxide; and
attracting said contaminant particles from the aqueous liquid to the particulate additive to purify the aqueous liquid.
2. The method of claim 1 where the effective amount of the particulate additives ranges from about 1 part by weight particulate additive for about 200 to about 5000 parts by weight of the particle pack.
3. The method of claim 1 where the mean particle size of the substrate particles in the particle pack ranges from about 2000 microns to about 45 microns.
4. A method for purifying aqueous fluids containing contaminant particles, the method comprising:
contacting said aqueous liquid containing contaminant particles selected from a group consisting of sediments, soil particles, and mining particles with a particle pack comprising substrate particles and comparatively smaller particulate additives;
where the substrate particles are comparatively larger than the particulate additive, have a mean particle size of from about 2000 microns to about 45 microns and are sand,
where the particle pack is at least partially coated with a coating agent comprising alcohol,
where the particulate additives have a mean particle size of 1000 nm or less and are comprised of calcium oxide;
where the particulate additive ranges from about 1 part by weight for about 200 to about 5000 parts by weight of the particle pack; and
attracting said contaminant particles from the aqueous liquid to the particulate additive to purify the aqueous liquid.
5. The method of claim 4 where the mean particle size of the particulate additives is from about 4 nm to about 500 nm.