Company Filing History:
Years Active: 2013-2015
Title: Innovations of Sibel Selcuk in Silicon-Sulfur Compounds
Introduction
Sibel Selcuk is an accomplished inventor based in Westfield, IN (US). She holds three patents that showcase her expertise in the field of chemical engineering, particularly in the development of silicon-sulfur compounds.
Latest Patents
One of her latest patents is a method for preparing silicon-sulfur compounds and their use in bituminous compositions. This innovative method involves combining an organosilane or mixtures of organosilanes, a sulfide, a halogen acceptor, and a solvent to form a reaction mixture. The organosilane reacts with the sulfide in the presence of a halogen acceptor to produce a sulfur modified organosilane compound. This compound can be introduced into a polymer modified or unmodified asphalt binder, where it reacts with components in the asphalt mixture to form a modified asphalt. Notably, the organosilanes used can be sourced from waste products, such as Direct Product Residue, allowing for the reuse of waste materials in asphalt binders. Another significant patent involves the use of silica for the removal of organosilanes. This method entails contacting a sample with silica, allowing the organosilanes to couple to the surface of the silica, which can be provided as particles or as a reactive filter media.
Career Highlights
Sibel has worked with notable companies, including Heritage Environmental Services, LLC and Heritage Research Group. Her experience in these organizations has contributed to her innovative approaches in her field.
Collaborations
Sibel has collaborated with various professionals, including her coworker Perry Eyster, who has played a role in her research and development efforts.
Conclusion
Sibel Selcuk's contributions to the field of silicon-sulfur compounds demonstrate her innovative spirit and commitment to advancing chemical engineering. Her patents not only highlight her technical expertise but also reflect her dedication to sustainability through the reuse of waste materials.