This inventor holds 1 USPTO granted patent. Top assignee: The Dow Chemical Company. Active years: 2002.
Company Filing History:
Years Active: 2002
Title: Dawn L Carsten: Innovator in Antimicrobial Solutions
Introduction
Dawn L Carsten is a notable inventor based in Midland, MI (US). She has made significant contributions to the field of antimicrobial solutions through her innovative work. With a focus on enhancing the stability and effectiveness of sodium o-phenylphenate formulations, her inventions have the potential to impact various applications in the industry.
Latest Patents
Dawn L Carsten holds a patent for "Low color and low haze formulations of sodium o-phenylphenate." This patent describes a color-stable aqueous solution containing a relatively high concentration of sodium o-phenylphenate. The formulation includes stabilizing components such as an oxygen scavenger and a free radical scavenger. The aqueous solutions prepared according to her invention exhibit an absorbance at 400 nanometers of at most one-half the absorbance exhibited by untreated solutions after incubation for 72 hours at 44°C and 4 hours under ultraviolet light. This innovative aqueous solution is useful as a concentrate that can be diluted to a desirable antimicrobial concentration level prior to application.
Career Highlights
Dawn L Carsten is associated with The Dow Chemical Company, where she has been able to apply her expertise in developing advanced chemical formulations. Her work has contributed to the company's reputation for innovation and quality in the chemical industry.
Collaborations
Throughout her career, Dawn has collaborated with esteemed colleagues such as Charles D Gartner and Richard W Walter, Jr. These collaborations have fostered a productive environment for innovation and have led to the development of effective solutions in her field.
Conclusion
Dawn L Carsten is a pioneering inventor whose work in antimicrobial solutions showcases her commitment to innovation. Her contributions to the field through her patent and collaborations highlight her significant role in advancing chemical formulations.
