CHEMICAL INDICATOR STRIP FOR DISINFECTION
20220412932 · 2022-12-29
Inventors
Cpc classification
C09D11/50
CHEMISTRY; METALLURGY
C09D11/106
CHEMISTRY; METALLURGY
A61L2202/24
HUMAN NECESSITIES
A61L2/28
HUMAN NECESSITIES
International classification
A61L2/28
HUMAN NECESSITIES
C09D11/50
CHEMISTRY; METALLURGY
Abstract
A chemical indicator strip for detecting disinfectant that includes a film substrate, and an indicator portion with a first and a second ink. The first and the second ink can react in the presence of a threshold level of disinfectant for a threshold level of exposure time. The chemical indicator strip can be used in a method of detecting a threshold level of disinfectant. The method can include exposing a chemical indicator strip to a concentration of disinfectant for a preset amount of time. The method can include providing a visual indicator to a user that changes from a first color to a second color. The method can indicate that the chemical indicator strip has been exposed to a threshold concentration of disinfectant for a threshold amount of time when a complete color change occurs on the chemical indicator strip from the first color to the second color.
Claims
1. A chemical indicator strip for detecting hydrogen peroxide and/or ozone, wherein the chemical indicator strip comprises: a film substrate; an indicator portion comprising a first ink and a second ink; and wherein the first ink and the second ink react in the presence of a threshold level of disinfectant for a threshold level of exposure time.
2. The chemical indicator strip of claim 1, wherein the first ink and the second ink are water based resin carriers.
3. The chemical indicator strip of claim 2, wherein the first ink and the second ink include an acrylic emulsion, water, reactive pigments, a non-reactive colorant, and a defoaming agent.
4. The chemical indicator strip of claim 1, wherein the first ink is IEVG-02 and wherein the second ink is IORC-01.
5. The chemical indicator strip of claim 4, wherein the IEVG-02 comprises a styrene resin, water, petroleum, ammonia, phenol red pigment, common yellow pigment, common blue pigment, and quaternary ammonium bromide.
6. The chemical indicator strip of claim 5, wherein the styrene resin comprises between a 60% wt-80% wt of the IEVG-02, wherein the water comprises between a 1% wt-15% wt of the IEVG-02, wherein the petroleum defoamer comprises between 0.5% wt-1.0% wt, between 1.0% wt-1.5% wt, or between 1.5% wt-2.0% wt of the IEVG-02, wherein the ammonia comprises between 0% wt-5% wt or between 5% wt-10% wt of the IEVG-02, wherein the phenol red pigment comprises between 0.5% wt-1.0% wt of the IEVG-02, wherein the common yellow pigment comprises between 1% wt-5% wt of the IEVG-02, wherein the common blue pigment comprises between 1.0% wt-1.5% wt of the IEVG-02, and wherein the quaternary ammonium bromide comprises between 6% wt-8% wt of the IEVG-0.
7. (canceled)
8. (canceled)
9. (canceled)
10. (canceled)
11. (canceled)
12. The chemical indicator strip of claim 5, wherein the IEVG-02 comprises styrene resin with a 70% wt, water with a 12% wt, petroleum with a 1.5% wt, ammonia with a 4% wt, phenol red pigment with a 1% wt, common yellow pigment with a 3% wt, common blue pigment with a 1% wt, and a quaternary ammonium bromide with a 7.5% wt.
13. (canceled)
14. The chemical indicator strip of claim 4, wherein the IORC-01 comprises styrene acrylic emulsion resin, water, rosolin acid, and petroleum defoamer.
15. The chemical indicator strip of claim 14, wherein the styrene acrylic emulsion resin comprises between 80% wt-90% wt of the IORC-01, wherein the water comprises between 5% wt-10% wt of the IORC-01, wherein the rosolin acid comprises between 0% wt-5% wt of the IORC-01, and wherein the petroleum defoamer comprises between 0% wt-2% wt of the IORC-01.
16. The chemical indicator strip of claim 14, wherein the IORC-01 comprises styrene acrylic emulsion resin with a 88.5% wt, water with a 8.5% wt, rosolin acid with a 1% wt, and petroleum defoamer with a 1% wt.
17. The chemical indicator strip of claim 1, wherein the film substrate comprises a single layer of biaxially oriented polypropylene.
18. The chemical indicator strip of claim 1, wherein the film substrate comprises an adhesive to allow the chemical indicator strip to attach to a surface.
19. The chemical indicator strip of claim 1, wherein the chemical indicator strip has a length between 2-4 inches and a width of between 0.75-1 inches.
20. The chemical indicator strip of claim 1, wherein the indicator portion is configured to change from a first color to a second color.
21. The chemical indicator strip of claim 20, wherein the first color is red or orange and wherein the second color is green.
22. (canceled)
23. The chemical indicator strip of claim 1, wherein the indicator portion is positioned at a first end of the chemical indicator strip.
24. The chemical indicator strip of claim 1, wherein the indicator portion is a square.
25. The chemical indicator strip of claim 20, wherein the indicator portion completely changes from the first color to the second color when the threshold level of disinfectant is detected.
26. The chemical indicator strip of claim 20, wherein the indicator portion does not change, or only partially changes from the first color to the second color when the threshold level of disinfectant is not detected.
27. (canceled)
28. The chemical indicator strip of claim 1, wherein the threshold level of exposure time is between 5 minutes and 10 minutes.
29-54. (Cancelled)
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0032] These and other features, aspects and advantages are described below with reference to the drawings, which are intended for illustrative purposes and should in no way be interpreted as limiting the scope of the embodiments. Furthermore, various features of different disclosed embodiments can be combined to form additional embodiments, which are part of this disclosure. In the drawings, like reference characters denote corresponding features consistently throughout similar embodiments. The following is a brief description of each of the drawings.
[0033]
[0034]
[0035]
[0036]
[0037]
DETAILED DESCRIPTION
[0038] The present disclosure describes an indicator for use in methods and systems for disinfection/sterilization. The disclosed cycle or process indicator (“CI”) strips can be used as an indicator when placed in a chamber with an item for disinfection or sterilization. When the CI is placed in the chamber for disinfection/sterilization, the CI can notify the user whether the items for disinfection/sterilization has been exposed to necessary levels of disinfectant/sterilant. In some embodiments, the CI can indicate to the user whether the item(s) for disinfection/sterilization has been exposed to necessary levels of H.sub.2O.sub.2 and/or ozone (e.g., activated oxygen).
[0039] In some embodiments, the CI can indicate whether a threshold level of disinfectant/sterilant by changing color. For example, the CI can include a colored box that changes from a first color to a second color when threshold levels of disinfectant/sterilant are detected. In some embodiments, the CI strip can include a box that changes from an red and/or orange to a green color when the threshold for H.sub.2O.sub.2 and/or ozone (e.g., activated oxygen) has been reached.
[0040]
[0041]
[0042]
[0043]
[0044]
[0045] In some embodiments, the complete color change of the indicator 210 on the CIP strip 200 indicates to the user that the levels of sterilant/disinfectant has reached the threshold value. This can indicate to the user, for example, that the item to be sterilized/disinfected has been properly sterilized/disinfected as the item has been exposed the requisite concentration of sterilant/disinfectant. In the example illustrated in
Materials and Dimensions for CI Strip
[0046] In some embodiments, the CI strips can include a film substrate. In some embodiments, the film substrate is a single layer of biaxially oriented polypropylene (BOPP). In some examples, the film substrate can include an adhesive. The adhesive can allow the CI strips to be attached like a sticker to various surfaces (e.g., a log book).
[0047] In some embodiments, the CI strip can be rectangular, though any other geometric shape that allows exposure to the sterilant can be used. In those embodiments employing a rectangular shape, the CI strip can have a width of 1″ and a length of 341 . In some embodiments, the CI strip can have a width of 0.85″ and a length of 4″. In some examples, the CI strip can have a width of 0.75″ and a length of 2.75″. In some embodiments, the CI strip can have a width of 0.50″, 0.55″, 0.60″, 0.65″, 0.70″, 0.75″, 0.80″, 0.85″, 0.90″, 0.95″, 1.0″, 1.05″, 1.10″, 1.15″, 1.20″, 1.25″, between 0.50″-0.75″, between 0.75″-1.041 , between 1.0″-1.25″, and any value in between those ranges listed, including endpoints. In some examples, the CI strip can have a length of 2.50″, 2.55″, 2.60″, 2.65″, 2.70″, 2.75″, 2.80″, 2.85″, 2.90″, 2.95″, 3.0″, 3.05″, 3.10″, 3.15″, 3.20″, 3.25″, 3.30″, 3.35″, 3.40″, 3.45″, 3.55″, 3.60″, 3.65″, 3.70″, 3.75″, 3.80″, 3.85″, 3.90″, 3.95″, 4.0″ between 2.50″-2.75″, between 2.75″-3.0″, between 3.0″-3.25″, between 3.25″-3.50″, between 3.50″-3.75″, between 3.75″-4.0″, and any value in between those ranges listed, including endpoints. In some examples, the ratio between the width and the length of the CI strip is 1:2, 1:3, 3:11, 1:4, between 1:3-1:2, between 1:4-1:3, between 1:5-1:4, and any value in between those ranges listed, including endpoints.
Ink for Use in CI Strip
[0048] The CI strip can be printed with a plurality of inks. For example, the CI strip can include a IEVG-02 ink and a IORC-01 ink. In some embodiments, the CI strip includes a IEVG-02 ink and a IORO-01 ink. The two inks can be made of a water based resin carrier. The carrier can include an acrylic emulsion, water, reactive pigments, a non-reactive colorant, and a defoaming agent. In some embodiments, the defoaming agent can prevent bubbles from forming when on press. In some examples, when used on card stock, we use ink that includes a BOPP substrate married to polylith card stock as both are polymers.
IEVG-02 Ink
[0049] As discussed above, the CI strip can be printed with an IEVG-02 ink. In some embodiments, the IEVG-02 ink can include a combination of the following ingredients: styrene resin, water, petroleum defoamer, ammonia, phenol red, common yellow pigment, common blue pigment, and quaternary ammonium bromide.
[0050] In some embodiments, the IEVG-02 ink can include a styrene resin. The styrene resin can comprise a 60% wt, 62% wt, 64% wt, 66% wt, 68% wt, 70% wt, 72% wt, 74% wt, 76% wt, 78% wt, 80% wt, between 60%-65% wt, between 65%-70% wt, between 70%-75% wt, between 75%-80% wt, between 60%-70% wt, between 70%-80% wt, between 60%-80% wt, and any value in between those ranges listed, including endpoints.
[0051] In some embodiments, the IEVG-02 ink can include water. The water can comprise a 1% wt, 2% wt, 3% wt, 4% wt, 5% wt, 6% wt, 7% wt, 8% wt, 9% wt, 10% wt, 11% wt, 12% wt, 13% wt, 14% wt, 15% wt, between 1%-5% wt, between 5%-9% wt, between 9%-15% wt, between 1%-15% wt, and any value in between those ranges listed, including endpoints.
[0052] In some embodiments, the IEVG-02 ink can include a petroleum defoamer. The petroleum defoamer can comprise a 0.10% wt, a 0.20% wt, a 0.30% wt, a 0.40% wt, a 0.50% wt, a 0.60% wt, a 0.70% wt, a 0.80% wt, a 0.90% wt, a 1% wt, a 1.10% wt, a 1.20% wt, a 1.30% wt, a 1.40% wt, a 1.50% wt, a 1.60% wt, a 1.70% wt, a 1.80% wt, a 1.90% wt, a 2.0% wt, between 0%-0.50% wt, between 0.50%-1.0% wt, between 1.0%-1.5% wt, between 1.5%-2.0% wt, and any value in between those ranges listed, including endpoints.
[0053] In some embodiments, the IEVG-02 ink can include ammonia. The ammonia can comprise 1% wt, 2% wt, 3% wt, 4% wt, 5% wt, 6% wt, 7% wt, 8% wt, 9% wt, 10% wt, between 1%-3% wt, between 3%-5% wt, between 5%-7% wt, between 7%-10% wt, between 0%-5% wt, between 5%-10% wt, and any value in between those ranges listed, including endpoints.
[0054] In some embodiments, the IEVG-02 ink can include phenol red. The phenol red can comprise a 0.10% wt, a 0.20% wt, a 0.30% wt, a 0.40% wt, a 0.50% wt, a 0.60% wt, a 0.70% wt, a 0.80% wt, a 0.90% wt, a 1% wt, a 1.10% wt, a 1.20% wt, a 1.30% wt, a 1.40% wt, a 1.50% wt, a 1.60% wt, a 1.70% wt, a 1.80% wt, a 1.90% wt, a 2.0% wt, between 0%-0.50% wt, between 0.50%-1.0% wt, between 1.0%-1.5% wt, between 1.5%-2.0% wt, and any value in between those ranges listed, including endpoints.
[0055] In some embodiments, the IEVG-02 ink can include common yellow pigment. The common yellow pigment can comprise a 1% wt, 1.10% wt, 1.20% wt, 1.30% wt, 1.40% wt, 1.50% wt, 1.60% wt, 1.70% wt, 1.80% wt, 1.90% wt, 2.0% wt, 2.10% wt, 2.20% wt, 2.30% wt, 2.40% wt, 2.50% wt, 2.60% wt, 2.70% wt, 2.80% wt, 2.90% wt, 3.0% wt, 3.1% wt, 3.2% wt, 3.3% wt, 3.4% wt, 3.5% wt, 3.6% wt, 3.7% wt, 3.8% wt, 3.9% wt, 4.0% wt, 4.1% wt, 4.2% wt, 4.3% wt, 4.4% wt, 4.5% wt, 4.6% wt, 4.7% wt, 4.8% wt, 5.0% wt, between 1%-1.50% wt, between 1.5%-2.0% wt, between 2.0%-2.50% wt, between 2.50%-3.0% wt, between 1%-2% wt, between 2%-3% wt, between 3%-4% wt, between 4%-5% wt, between 1%-5%, and any value in between those ranges listed, including endpoints.
[0056] In some embodiments, the IEVG-02 ink can include common blue pigment. The common blue pigment can comprise a 0.10% wt, a 0.20% wt, a 0.30% wt, a 0.40% wt, a 0.50% wt, a 0.60% wt, a 0.70% wt, a 0.80% wt, a 0.90% wt, a 1% wt, a 1.10% wt, a 1.20% wt, a 1.30% wt, a 1.40% wt, a 1.50% wt, a 1.60% wt, a 1.70% wt, a 1.80% wt, a 1.90% wt, a 2.0% wt, between 0%-0.50% wt, between 0.50%-1.0% wt, between 1.0%-1.5% wt, between 1.5%-2.0% wt, and any value in between those ranges listed, including endpoints.
[0057] In some embodiments, the IEVG-02 ink can include quaternary ammonium bromide. The quaternary ammonium bromide can comprise a 0.10% wt, a 0.20% wt, a 0.30% wt, a 0.40% wt, a 0.50% wt, a 0.60% wt, a 0.70% wt, a 0.80% wt, a 0.90% wt, a 1% wt, a 1.10% wt, a 1.20% wt, a 1.30% wt, a 1.40% wt, a 1.50% wt, a 1.60% wt, a 1.70% wt, a 1.80% wt, a 1.90% wt, a 2.0% wt, a 3.0% wt, a 3.1% wt, 3.2% wt, a 3.3% wt, a 3.4% wt, a 3.5% wt, a 3.6% wt, a 3.7% wt, a 3.8% wt, a 3.9% wt, a 3.9% wt, a 4.0% wt, a 4.1% wt, a 4.2% wt, a 4.3% wt, a 4.4% wt, a 4.5% wt, a 4.6% wt, a 4.7% wt, a 4.8% wt, a 4.9% wt, a 5.0% wt, a 5.1% wt, a 5.2% wt, a 5.3% wt, a 5.4% wt, a 5.5% wt, a 5.6% wt, a 5.7% wt, a 5.8% wt, a 5.9% wt, a 6.0% wt, a 6.1% wt, a 6.2% wt, a 6.3% wt, a 6.4% wt, a 6.5% wt, a 6.6% wt, a 6.7% wt, a 6.8% wt, a 6.9% wt, a 7.0% wt, a 7.1% wt, a 7.2% wt, a 7.3% wt, a 7.4% wt, a 7.5% wt, a 7.6% wt, a 7.7% wt, a 7.8% wt, a 7.9% wt, a 8.0% wt, between 0%-0.50% wt, between 0.50%-1.0% wt, between 1.0%-1.5% wt, between 1.5%-2.0% wt, between 2.0%-2.5% wt, between 2.5%-3.0% wt, between 3.0%-3.5% wt, between 3.5%-4.0% wt, between 4.0%-4.5% wt, between 4.5%-5.0% wt, between 5.0%-5.5% wt, between 5.5%-6.0% wt, between 6.0%-6.5% wt, between 6.5%-7.0% wt, between 7.0%-7.5% wt, between 7.5%-8.0% wt, between 0%-2% wt, between 2%-4% wt, between 4%-6% wt, between 6%-8% wt, and any value in between those ranges listed, including endpoints.
[0058] In some embodiments, the IEVG-02 ink comprises a 70% wt of styrene resin, a 12% wt of water, a 1.5% wt of petroleum, a 4% wt of ammonia, a 1% wt of phenol red pigment, a 3% wt of common yellow pigment, a 1% wt of common blue pigment, a 7.5% wt of quaternary ammonium bromide.
[0059] In some examples, to prepare the IEVG-02 ink, the components of the IEVG-02 ink are added into a pail and mixed together for a minimum of one hour. Following mixing, the IEVG-02 ink can be filtered through a 250 micron filter into a clean container.
IORC-01 Ink
[0060] The CI strip can be printed with an IORC-01 ink. In some embodiments, the IORC-01 ink can include a combination of the following ingredients: styrene acrylic emulsion resin, water, rosolin acid, and petroleum defoamer.
[0061] In some embodiments, the IORC-01 ink can include a styrene acrylic emulsion resin. The styrene acrylic emulsion resin can comprise a 50% wt, 55% wt, 60% wt, 65% wt, 70% wt, 75% wt, 80% wt, 85% wt, 90% wt, between 50%-60% wt, between 60%-70% wt, between 70%-80% wt, between 80%-90% wt, and any value in between those ranges listed, including endpoints.
[0062] In some embodiments, the IORC-01 ink can include water. Water can comprise 2% wt, 4% wt, 6% wt, 8% wt, 10% wt, 12% wt, 14% wt, 16% wt, 18% wt, 20% wt, 22% wt, 24% wt, 26% wt, 28% wt, 30% wt, between 2%-5% wt, between 5%-10% wt, between 10%-15% wt, between 15%-20% wt, between 20%-25% wt, between 25%-30% wt, and any value in between those ranges listed, including endpoints.
[0063] In some embodiments, the IORC-01 ink can include rosolin acid. The rosolin acid can comprise 0.1% wt, 0.2% wt, 0.3% wt, 0.4% wt, 0.5% wt, 0.6% wt, 0.7% wt, 0.8% wt, 0.9% wt, 1% wt, 2% wt, 3% wt, 4% wt, 5% wt, 6% wt, 7% wt, 8% wt, 9% wt, 10% wt, between 0%-1% wt, between 1%-3% wt, between 3%-5% wt, between 5%-7% wt, between 7%-10% wt, between 0%-5% wt, between 5%-10% wt, and any value in between those ranges listed, including endpoints.
[0064] In some embodiments, the IORC-01 ink can include a petroleum defoamer. The petroleum defoamer can comprise a 0.10% wt, a 0.20% wt, a 0.30% wt, a 0.40% wt, a 0.50% wt, a 0.60% wt, a 0.70% wt, a 0.80% wt, a 0.90% wt, a 1% wt, a 1.10% wt, a 1.20% wt, a 1.30% wt, a 1.40% wt, a 1.50% wt, a 1.60% wt, a 1.70% wt, a 1.80% wt, a 1.90% wt, a 2.0% wt, between 0%-0.50% wt, between 0.50%-1.0% wt, between 1.0%-1.5% wt, between 1.5%-2.0% wt, between 0%-2.0% wt, and any value in between those ranges listed, including endpoints.
[0065] In some examples, to prepare the IORC-01 ink, the components of the IORC-0 link are added into a pail and mixed together for a minimum of one hour. Following mixing, the IORC-0 link can be filtered through a 250 micron filter into a clean container.
[0066] In some embodiments, the IEVG-02 ink includes: styrene resin with a wt % of one of 60% wt, 65% wt, 70% wt, 75% wt, 80% wt, between 60%-70% wt, between 70%-80% wt, or between 60%-80% wt; water with a wt % of one of 5% wt, 6% wt, 7% wt, 8% wt, 9% wt, 10% wt, 11% wt, 12% wt, between 5%-9% wt, between 9%-15% wt; petroleum defoamer with a wt % of one of 0.50% wt, 1% wt, 1.50% wt, between 0.50%-1.0% wt, between 1.0%-1.5% wt, or between 1.5%-2.0% wt; ammonia with a wt % of one of 1% wt, 5% wt, 10% wt, or between 5%-10% wt; phenol red with a wt % of one of 0.50% wt, 1% wt, 1.50% wt, 2.0% wt, between 0.50%-1.0% wt, between 1.0%-1.5% wt, or between 1.5%-2.0% wt; common yellow pigment with a wt % of one of 1% wt, 1.50% wt, 2.0% wt, 2.50% wt, between 1%-1.50% wt, between 1.5%-2.0% wt, between 2.0%-2.50% wt; common blue pigment with a wt % of one of 0.50% wt, 1% wt, 1.50% wt, 2.0% wt, between 0.50%-1.0% wt, between 1.0%-1.5% wt, between 1.5%-2.0% wt; and quaternary ammonium bromide with a wt % of one of 0.50% wt, 1% wt, 1.50% wt, 2.0% wt, between 0.50%-1.0% wt, between 1.0%-1.5% wt, between 1.5%-2.0% wt. In some embodiments, the IORC-01 ink includes styrene acrylic emulsion resin with a wt % of one of 50% wt, 60% wt, 70% wt, 80% wt, 90% wt, between 50%-60% wt, between 60%-70% wt, between 70%-80% wt, between 80%-90% wt; water with a wt % of one of 8% wt, 10% wt, 12% wt, 14% wt, 16% wt, 18% wt, 20% wt, between 5%- 10% wt, between 10%-15% wt, between 15%-20% wt; rosolin acid with a 1% wt, 2% wt, 3% wt, 4% wt, 5% wt, 6% wt, 7% wt, 8% wt, 9% wt, 10% wt, between 1%-3% wt, between 3%-5% wt, between 5%-7% wt, between 7%-10% wt, between 0%-5% wt, between 5%-10% wt; and petroleum defoamer with a wt % of one of 0.50% wt, 1% wt, 1.50% wt, 2.0% wt, between 0.50%-1.0% wt, between 1.0%-1.5% wt, between 1.5%-2.0% wt.
[0067] In some embodiments, the IORC-01 ink comprises a 88.5% wt of styrene acrylic emulsion resin, a 8.5% wt of water, a 1% wt of rosolin acid, and a 1% wt of petroleum defoamer.
Method of Manufacture
[0068] To manufacture the CI strip, the IEVG-02 is first printed and then dried onto a film substrate. The IORC-01 ink is then used and printed on top of the IEVG-02 ink and allowed to dry before use.
In Operation
[0069] As discussed above, the indicator of the CI strip is printed with a IEVG-02 ink and a IORC-01 ink. In some embodiments, as shown in
[0070] In some examples, the chemical indicator can change its color when all or most of the sensitive chemicals and inks on the indicator surface reacts with the active molecules (e.g., H.sub.2O.sub.2 and O.sub.3) in the circulating effluent. In some embodiments, active molecules are delivered to the surface of the indicator through diffusion between the surface and the effluent in the gas form. In some examples, the total amount of delivered active molecules (R) to the surface is a product of the delivery rate (K) and exposure time (T). In some embodiments, K can be expressed as:
K=D*C;
D=diffusion coefficient, C=active molecule concentration
Total active molecule delivery=R=K*T=D*C*T
[0071] In some examples, the indicator color change occurs when the concentration of active molecules and exposure time is sufficient to cause the surface chemicals to react. This can indicate that the disinfection parameters were met. In some embodiments, the exposure time can be 5 minutes, 6 minutes, 7 minutes, 8 minutes, 9 minutes, 10 minutes, 11 minutes, 12 minutes, 13 minutes, 14 minutes, 15 minutes, between 5 minutes-6 minutes, between 6 minutes-7 minutes, between 7 minutes-8 minutes, between 8 minutes-9 minutes, between 10 minutes-11 minutes, between 11 minutes-12 minutes, between 12 minutes-13 minutes, between 13 minutes-14 minutes, between 14 minutes-15 minutes, and any value in between those ranges listed, including endpoints. In some embodiments, the chemistry of the CI strip can be customized to cycle time.
[0072] In some embodiments, this color change is brought about by a reaction of the H.sub.2O.sub.2 with the bromide compound in the IEVG-02 ink. In some examples, the color change is brought about by a reaction of the given concentration H.sub.2O.sub.2 for a minimum prescribed time with the bromide compound in the IEVG-02 ink. This can produce HBR followed by a redox reaction that impacts the phenol red in the IEVG-02 ink to produce a colorless end color. This then allows the two pigments of yellow and blue in the IEVG-02 ink to show a green color.
[0073] In some examples, a second reaction occurs wherein the presence of ozone oxidizes the rosolin acid in the IORC-01 ink. The initial color of the rosolin acid is a red/orange color and, once oxidized, it becomes colorless. The combination of the two reactions—the reaction of the H.sub.2O.sub.2 with the IEVG-02 ink and the reaction of the ozone (e.g., activated oxygen) with the IORC-01 ink—produces a green signal color when the two inks are printed on one another. In some embodiments, the reaction is accomplished by the minimum prescribed time.
[0074] Accordingly, it is to be understood that the embodiments of the invention herein described are merely illustrative of the application of the principles of the invention. Reference herein to details of the illustrated embodiments is not intended to limit the scope of the claims, which themselves recite those features regarded as essential to the invention. The drawings are for the purpose of illustrating embodiments of the invention only, and not for the purpose of limiting it.
[0075] It is contemplated that various combinations or subcombinations of the specific features and aspects of the embodiments disclosed above may be made and still fall within one or more of the inventions. Further, the disclosure herein of any particular feature, aspect, method, property, characteristic, quality, attribute, element, or the like in connection with an embodiment can be used in all other embodiments set forth herein. Accordingly, it should be understood that various features and aspects of the disclosed embodiments can be combined with or substituted for one another in order to form varying modes of the disclosed inventions. Thus, it is intended that the scope of the present inventions herein disclosed should not be limited by the particular disclosed embodiments described above. Moreover, while the invention is susceptible to various modifications, and alternative forms, specific examples thereof have been shown in the drawings and are herein described in detail. It should be understood, however, that the invention is not to be limited to the particular forms or methods disclosed, but to the contrary, the invention is to cover all modifications, equivalents, and alternatives falling within the spirit and scope of the various embodiments described and the appended claims. Any methods disclosed herein need not be performed in the order recited. The methods disclosed herein include certain actions taken by a practitioner; however, they can also include any third-party instruction of those actions, either expressly or by implication. For example, actions such as “deploying an instrument sterilized using the systems herein” include “instructing the deployment of an instrument sterilized using the systems herein.” In addition, where features or aspects of the disclosure are described in terms of Markush groups, those skilled in the art will recognize that the disclosure is also thereby described in terms of any individual member or subgroup of members of the Markush group.
[0076] The ranges disclosed herein also encompass any and all overlap, sub-ranges, and combinations thereof. Language such as “up to,” “at least,” “greater than,” “less than,” “between,” and the like includes the number recited. Numbers preceded by a term such as “about” or “approximately” include the recited numbers. For example, “about 10 nanometers” includes “10 nanometers.”
[0077] Any titles or subheadings used herein are for organization purposes and should not be used to limit the scope of embodiments disclosed herein.