Lohja, Finland

Airi Saerkilahti


 

Average Co-Inventor Count = 6.0

ph-index = 1

Forward Citations = 6(Granted Patents)


Company Filing History:


Years Active: 2019-2020

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2 patents (USPTO):Explore Patents

Title: Airi Saerkilahti: Innovator in Tobacco-Derived Nanocellulose Materials

Introduction

Airi Saerkilahti is a notable inventor based in Lohja, Finland. She has made significant contributions to the field of cellulose nanomaterials, particularly those derived from tobacco. With a total of two patents to her name, her work is paving the way for innovative industrial applications.

Latest Patents

Airi's latest patents focus on the development of tobacco-derived nanocellulose material. The disclosures relate to cellulose nanomaterials made or derived from tobacco and the methods for their production. These tobacco-derived cellulose nanomaterials can be utilized in various industrial applications, including film forming applications and solution thickening technologies. The invention emphasizes methods for preparing tobacco-derived cellulose nanomaterials using fewer fibrillation cycles compared to traditional wood pulp production. Specifically, the method involves receiving a tobacco pulp in a dilute form, creating a tobacco pulp suspension with a consistency of less than about 5%. The process includes mechanically fibrillating the tobacco pulp suspension to generate a tobacco-derived nanocellulose material with an average particle size dimension ranging from about 1 nm to about 100 nm.

Career Highlights

Airi Saerkilahti is currently employed at R.J. Reynolds Tobacco Company, where she continues to innovate in her field. Her work is instrumental in advancing the applications of tobacco-derived materials in various industries.

Collaborations

Airi collaborates with notable colleagues, including Andries Don Sebastian and Samuel Mark Debusk. Their combined expertise contributes to the success of their projects and the advancement of their research.

Conclusion

Airi Saerkilahti's contributions to the field of tobacco-derived nanocellulose materials highlight her innovative spirit and dedication to advancing industrial applications. Her patents reflect a commitment to developing sustainable and efficient methods in material science.

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