Dispersed zero-valent iron colloids
Stable dispersions of zero-valent iron particles are produced by milling of micro- and nano-scale iron particles (colloids) in the presence of a dispersant or dispersants.
1. A method for treating contaminated soil and water comprising the steps of:
a) preparing a stable dispersion of zero-valent iron particles having a maximum size of 10 μm in an aqueous solution containing a dispersant being one of block or graft copolymers containing both anchoring and stabilizing chains;
b) subjecting said dispersion to one of a grinding or milling operation to produce a solution containing said zero-valent iron particles having an average size less than 100 nanometers; and
c) applying said zero valent iron dispersion to said contaminated soil and water.
2. A method according to claim 1 including the step of using one of sodium polymethacrylate or ammonium polymethacrylate as a dispersant to stabilize said suspension containing zero valent iron particles.
3. A composition for treating contaminants in soil or water consisting of:
a colloidal suspension of zero valent iron particles stabilized by one of a block or graft copolymer containing both anchoring and stabilizing chains wherein said zero valent iron particles have an average size less than 100 nanometers.
4. A composition according to claim 3 including less than 1 to 2% by weight of one of ammonium polymethacrylate and/or sodium polymethacrylate as a stabilizer for said suspension.
5. A composition according to claim 3 wherein said suspension includes up to 30% by wt iron particles.
6. A method for preparing a suspension of zero-valent iron particles comprising the steps of:
preparing a stabilized dispersant of iron particles having a size no larger than 10 μm by introducing one of a block or graft copolymer containing both anchoring and stabilizing chains into said dispersant as a stabilizer; and
grinding or milling said stabilized dispersant for a time sufficient to reduce the size of the zero valent iron particles to a maximum size of 100 nm.
7. A method according to claim 6 including the step of introducing one of sodium polymethacrylate or ammonium polymethacrylate into said dispersant as said stabilizer.
8. A method according to claim 7 including the step of using from 1 to 2% by weight of said ammonium polymethacrylate or said sodium polymethacrylate to produce said stabilized dispersant.
9. A method according to claim 7 including the step of using up to 30% by weight iron particles.