Abstract:
A liquid antibacterial soap comprising trichlorocarbanilide, wherein the composition includes, 0.1-5 wt. % trichlorocarbanilide, 0-40 wt. % water, 0.1-40 wt. % of a surfactant or mixture of surfactants, 10-60 wt. % of lower glycols to render the composition visually clear and stable, and 0.1-10 wt. % of a mixture of additional adjuvant ingredients.
Abstract:
Antimicrobial compositions having a rapid antiviral and antibacterial effectiveness, and a persistent antiviral effectiveness, are disclosed. The antimicrobial compositions contain a phenolic antimicrobial agent, a disinfecting alcohol, a gelling agent, and an organic acid, wherein the phenolic antimicrobial agent is present in a continuous aqueous phase in an amount of at least 50% of saturation concentration and the composition has a pH of about 5 or less.
Abstract:
Antimicrobial compositions having a rapid antiviral and antibacterial effectiveness, and a persistent antiviral effectiveness, are disclosed. The anti-microbial compositions contain (a) an antimicrobial agent, (b) a disinfecting alcohol, and (c) (i) an organic acid, (ii) an inorganic salt comprising a cation having a valence of 2, 3, or 4 and a counterion capable of lowering a surface pH to about 5 or less, (iii) an aluminum, zirconium, or aluminum-zirconium complex, or (iv) mixtures thereof, wherein the composition has a pH of about 5 or less.
Abstract:
A liquid antibacterial soap comprising trichlorocarbanilide, wherein the composition includes, 0.1-5 wt. % trichlorocarbanilide, 0-40 wt. % water, 0.1-40 wt. % of a surfactant or mixture of surfactants, 10-60 wt. % of lower glycols to render the composition visually clear and stable, and 0.1-10 wt. % of a mixture of additional adjuvant ingredients.
Abstract:
Antibacterial compositions having antibacterial effectiveness and reduced eye irritation potential are disclosed. The antibacterial compositions contain a quaternary ammonium compound, an alkamine oxide, a nonionic compound, optional adjuvant materials known in the art, and water. The eye irritation is decreased by decreasing the amount, by weight, of alkamine oxide present in the composition and alternatively, or in combination therewith, increasing the ratio of nonionic material to alkamine oxide present in the composition.
Abstract:
Antimicrobial compositions having a rapid antiviral and antibacterial effectiveness, and a persistent antiviral effectiveness, are disclosed. The antimicrobial compositions contain a phenolic antimicrobial agent, a surfactant, a hydrotrope, a hydric solvent, and an organic acid, wherein the phenolic antimicrobial agent is present in a continuous aqueous phase in an amount of at least 25% of saturation concentration and the composition has a pH of about 5 or less.
Abstract:
Antimicrobial compositions having a rapid and persistent antiviral and antibacterial effectiveness are disclosed. The antimicrobial compositions contain (a) a divalent zinc salt, (b) an optional disinfecting alcohol, (c) an optional antimicrobial agent, and (d) an optional organic acid, wherein the composition has a pH of about 5 or less.
Abstract:
Antimicrobial compositions having a rapid and persistent antiviral and antibacterial effectiveness are disclosed. The antimicrobial compositions contain (a) a divalent zinc salt, (b) an optional disinfecting alcohol, (c) an optional antimicrobial agent, and (d) an optional organic acid, wherein the composition has a pH of about 5 or less.
Abstract:
Method and article for providing a rapid, broad spectrum bacterial control, and a rapid and persistent antiviral control on an inanimate surface is disclosed. In the method, a compound or composition capable of lowering surface pH to less than about 4 is applied to the surface, and preferably is allowed to remain on the surface, and the nonvolatile components of the composition can form a barrier film or layer on a treated surface.
Abstract:
Antimicrobial compositions having a rapid antiviral and antibacterial effectiveness are disclosed. The antimicrobial compositions contain a phenolic antimicrobial agent, a surfactant, a hydrotrope, and a disinfecting alcohol, wherein the phenolic antimicrobial agent is present in a continuous aqueous phase in an amount of at least 25% of saturation concentration.