What is claimed is:
1. A sealing apparatus comprising:
a lid which is designed to be used with microplates, having an outer surface; and an inner surface; and
a microplate mat having a top side and a bottom side, the bottom side having multiple protrusions formed thereon which correspond to and seal an array of openings in a microplate, the top side of the microplate mat being attached to the inner surface of the lid.
2. The sealing apparatus of claim 1 wherein the lid is made of non-flexible material comprising polystrene, polypropylene, polycarbonate or acrylic.
3. The sealing apparatus of claim 2 wherein the mat is made of flexible material comprising silicone, polypropylene, sodium polysulfide, polychloroprene (neoprene), butadienestyrene copolymners (SBR), or rubber.
4. The sealing apparatus of claim 3 wherein the mat is attached to the lid with an adhesive comprising glue or double-sided adhesive tape.
The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.
1. A catalyst system comprising:
a first catalytic composition comprising;
(i) a first component comprising a zeolite, and
(ii) a second component comprising a homogeneous solid mixture containing at least one catalytic metal and at least one metal inorganic support; wherein the pores of the solid mixture have an average diameter in a range of about 1 nanometer to about 15 nanometers;
wherein the first component and the second component form an intimate mixture.
2. The catalyst system of claim 1, wherein the catalytic metal comprises alkali metals, alkaline earth metals, transition metals, or a combination thereof.
3. The catalyst system of claim 1, wherein the catalytic metal comprises silver, platinum, gold, palladium, iron, nickel, cobalt, gallium, indium, ruthenium, rhodium, osmium, iridium, or combinations of at least two of the foregoing metals.
4. The catalyst system of claim 1, wherein the catalytic metal comprises silver.
5. The catalyst system of claim 1, wherein the metal inorganic support comprises alumina.
6. The catalyst system of claim 1, wherein the zeolite comprises zeolite Y, zeolite beta, mordenite, ferriertie, ZSM-5, ZSM-12, ZSM-22, ZSM-23, ZSM-34, ZSM-35, ZSM-38, ZSM-48; ZSM-50; ZSM-57, zeolite A, zeolite X or a combination comprising at least two of the foregoing.
7. The catalyst system of claim 1, further comprising a second catalytic composition disposed downstream from the first catalytic composition; the second catalytic composition comprising a first catalytic material disposed on a first substrate, wherein the first catalytic material is selected from the group consisting of platinum, palladium, ruthenium, rhodium, osmium, and iridium.
8. The catalyst system of claim 7, wherein the first substrate comprises at least one member selected from the group consisting of alumina, titania, zirconia, ceria, silicon carbide and mixtures thereof.
9. The catalyst system of claim 1, further comprising a delivery system configured to deliver a reductant.
10. The catalyst system of claim 9, wherein the reductant is a hydrocarbon.
11. The catalyst system of claim 10, wherein the hydrocarbon has an average carbon chain length in the range of about 2 carbon atoms to about 24 carbon atoms.
12. The catalyst system of claim 9, wherein the reductant is one or more of diesel, ultra-low sulfur diesel, ethanol, gasoline, and octane.
13. The catalyst system of claim 9, wherein the reductant is an oxygenated hydrocarbon.
14. The catalyst system of claim 13, wherein the reductant is ethanol.
15. The catalyst system of claim 9, wherein the reductant is diesel.
16. The catalyst system of claim 9, wherein the delivery system further comprises a co-reductant.
17. The catalyst system of claim 16, wherein the co-reductant is hydrogen.
18. The catalyst system of claim 1, further comprising at least one promoting metal.
19. The catalyst system of claim 18, wherein the at least one promoting metal is selected from the group consisting gallium, indium, gold, vanadium, zinc, tin, bismuth, cobalt, molybdenum, and tungsten.
20. A catalyst system comprising:
a first catalytic composition comprising,
(i) a first component comprising a zeolite; and
(ii) a second component comprising a homogeneous solid mixture containing at least one catalytic metal and at least one metal inorganic network; wherein the pores of the solid mixture have an average diameter in a range of about 1 nanometer to about 15 nanometers;
wherein the first component and the second component form an intimate mixture; and
a second catalytic composition disposed downstream from the first catalytic composition, the second catalytic composition comprising;
a first catalytic material disposed on a first substrate, wherein the first catalytic material is selected from the group consisting of platinum, palladium, ruthenium, rubidium, osmium, and iridium.
21. The catalyst system of claim 20, further comprising a delivery system configured to deliver a reductant.
22. The catalyst system of claim 21, wherein the delivery system further comprises a co-reductant.
23 The catalyst system of claim 20, further comprising:
a third catalytic composition disposed between the first catalytic composition and the second catalytic composition, the third catalytic composition comprising;
(i) a zeolite, or
(ii) a second catalytic material disposed on a second substrate, the second catalytic material selected from the group consisting of one or more of tungsten, titanium, and vanadium.
24 The catalyst system of claim 23 wherein the second substrate comprises alumina, titania, zirconia, ceria, silicon carbide and mixtures thereof.
25. The catalyst system of claim 20, wherein the zeolite comprises zeolite Y, zeolite beta, mordenite, ferriertie, ZSM-5, ZSM-12, ZSM-22, ZSM-23, ZSM-34, ZSM-35, ZSM-38, ZSM-48; ZSM-50; ZSM-57, zeolite A, zeolite X or a combination comprising at least two of the foregoing.
26. The catalyst system of claim 20, further comprising at least one promoting metal.
27. An exhaust system comprising:
a fuel delivery system configured to deliver a fuel to an engine;
an exhaust stream path configured to receive an exhaust stream from the engine;
a reductant delivery system configured to deliver a reductant to the exhaust stream path; and
a catalyst system disposed in the exhaust stream path, wherein the catalyst system comprises:
a first catalytic composition comprising,
(i) a first component comprising a zeolite, and
(ii) a second component comprising a homogeneous solid mixture containing at least one catalytic metal and at least one metal inorganic network; wherein the pores of the solid mixture have an average diameter in a range of about 1 nanometer to about 15 nanometers;
wherein the first component and the second component form an intimate mixture.
28. The exhaust system of claim 27, further comprising a second catalytic composition disposed downstream from the first catalytic composition; the second catalytic composition comprising a first catalytic material disposed on a first substrate, wherein the first catalytic material is selected from the group consisting of platinum, palladium, ruthenium, rhodium, osmium, and iridium.
29. The exhaust system of claim 27, further comprising at least one promoting metal.
30. The exhaust system of claim 27, wherein the reductant is a hydrocarbon.
31. The exhaust system of claim 30, wherein the hydrocarbon has an average carbon chain length in the range of about 2 carbon atoms to about 24 carbon atoms.
32. The exhaust system of claim 27, wherein the reductant is one or more of diesel, ultra-low sulfur diesel, ethanol, gasoline, and octane.
33. The exhaust system of claim 27, wherein the reductant is an oxygenated hydrocarbon.
34. The exhaust system of claim 33, wherein the reductant is ethanol.
35. The exhaust system of claim 27, wherein the reductant is diesel.
36. The exhaust system of claim 27, wherein the delivery system further comprises a co-reductant.
37. The exhaust system of claim 36, wherein the co-reductant is hydrogen.
38. An exhaust system comprising:
a fuel delivery system configured to deliver a fuel to an engine;
an exhaust stream path configured to receive an exhaust stream from the engine;
a reductant delivery system configured to deliver a reductant to the exhaust stream path; and
a catalyst system disposed in the exhaust stream path, wherein the catalyst system comprises:
a first catalytic composition comprising,
(i) a first component comprising a zeolite, and
(ii) a second component comprising a homogeneous solid mixture containing at least one catalytic metal and at least one metal inorganic network; wherein the pores of the solid mixture have an average diameter in a range of about 1 nanometer to about 15 nanometers;
wherein the first component and the second component form an intimate mixture; and
a second catalytic composition disposed downstream from the first catalytic composition, the second catalytic composition comprising;
a first catalytic material disposed on a first substrate, wherein the first catalytic material is selected from the group consisting of platinum, palladium, ruthenium, rubidium, osmium, and iridium.
39. The exhaust system of claim 38, further comprising at least one promoting metal.
40. The exhaust system of claim 38, wherein the reductant delivery system further comprises a co-reductant.
41. The exhaust system of claim 38, further comprising:
a third catalytic composition disposed between the first catalytic composition and the second catalytic composition, the third catalytic composition comprising;
(i) a zeolite, or
(ii) a second catalytic material disposed on a second substrate, the second catalytic material selected from the group consisting of one or more of tungsten, titanium, and vanadium.