Location History:
- Mullica Hill, NJ (US) (2005)
- West Deptford, NJ (US) (2013 - 2021)
Company Filing History:
Years Active: 2005-2021
Title: The Innovative Contributions of Joseph J Marcinko
Introduction
Joseph J Marcinko, based in West Deptford, NJ, is a prominent inventor known for his significant contributions to the field of adhesives and biopolymers. With an impressive portfolio of 17 patents, Marcinko has made strides in creating sustainable adhesive solutions using plant-based materials.
Latest Patents
Among his latest innovations are the patents for protein-containing adhesives. These inventions focus on the manufacture and use of protein adhesives, which include a unique combination of lignin and ground plant meal or isolated polypeptide compositions sourced from plant biomass. Additionally, he has developed variations that incorporate plant protein compositions paired with hydroxyaromatic/aldehyde, urea/aldehyde, or amine/aldehyde components. Another significant patent within this realm discloses protein adhesives that contain certain additives, such as exfoliated clay or partially exfoliated clay, enhancing their performance and usability.
Career Highlights
Marcinko's career features impactful roles at companies like Evertree and Biopolymer Technologies, Ltd. His work at these organizations has enabled him to apply his innovative ideas in real-world applications, establishing him as a leader in the development of eco-friendly adhesives.
Collaborations
Throughout his journey, Marcinko has collaborated with notable co-inventors, including Anthony A Parker and Herbert R Gillis. These partnerships have facilitated the exchange of ideas and have driven further innovation in adhesive technologies.
Conclusion
Joseph J Marcinko's contributions to the field of adhesives highlight the importance of innovation in creating sustainable solutions. With a strong emphasis on plant-based materials in his patents, Marcinko continues to inspire future inventions that align with ecological responsibility and advancement in adhesive technology. His work serves as a testament to the potential of biopolymers in modern applications, paving the way for a more sustainable future.