Nanostructured sorbent materials for capturing environmental mercury vapor
The present invention is a method and material for using a sorbent material to capture and stabilize mercury. The method for using sorbent material to capture and stabilize mercury contains the following steps. First, the sorbent material is provided. The sorbent material, in one embodiment, is nano-particles. In a preferred embodiment, the nano-particles are unstabilized nano-Se. Next, the sorbent material is exposed to mercury in an environment. As a result, the sorbent material captures and stabilizes mercury from the environment. In the preferred embodiment, the environment is an indoor space in which a fluorescent has broken.
1. A packaging material for capturing mercury, comprising:
an active layer containing sorbent material for capturing and stabilizing mercury, the sorbent material comprising unstabilized nano-Se particles having high mercury capture;
whereby mercury is captured and stabilized by the sorbent material.
2. The packaging material of claim 1 , further comprising:
a non-porous barrier layer, situated on a top surface of the active layer to slow or prevent the passage of mercury allowing time for adsorption by the active layer.
3. The packaging material of claim 1 , further comprising:
a protective layer underlying a bottom surface of the active layer, the protective layer containing a porous carrier material to prevent skin contact with the sorbent material of the active layer during handling.
4. A package for products which contain mercury comprising:
a sorbent material effective for capturing and stabilizing mercury, the sorbent material comprising unstabilized nano-Se particles having high mercury capture,
a carrier material and
the sorbent material being carried on the carrier material.
5. The package of claim 4 , further comprising:
the sorbent material in a location advantageous for capturing and stabilizing mercury vapor emitted from the product.
6. The package of claim 4 , wherein the carrier material is a liner within the package.
7. The package of claim 4 , wherein the carrier material is porous.
8. The package of claim 4 , wherein the carrier material is non-porous.
9. The package of claim 4 , wherein the carrier material is selected from a group consisting of: cardboard, textiles, paper, and plastic.
10. The package of claim 4 , wherein:
the sorbent material is impregnated within the carrier material.
11. The package of claim 4 , wherein:
the sorbent material is sprayed onto the carrier material.
12. The package of claim 4 , wherein:
the carrier material is dipped into the sorbent material.
13. The package of claim 4 , wherein the carrier material forms a part of a package for products containing mercury.
14. The package of claim 13 , where the carrier material forms a part of a package for fluorescent bulbs.
15. The package of claim 13 , where the carrier material forms a part of a package for mercury containing waste.
16. The package of claim 4 , further comprising:
the sorbent material in a pouch in a location advantageous for capturing and stabilizing mercury vapor from the product.