Location History:
- Munchen, DE (1998)
- Munich, DE (2014 - 2015)
Company Filing History:
Years Active: 1998-2015
Title: The Innovative Contributions of Nicole Schodel
Introduction
Nicole Schodel is a prominent inventor based in Munich, Germany. She has made significant contributions to the field of gas processing and purification, holding a total of five patents. Her work focuses on developing methods that enhance the efficiency and effectiveness of gas treatment processes.
Latest Patents
One of her latest patents is a method for processing coke oven gas. This invention relates to a technique that integrates coke oven gas, which contains hydrogen, into a process for producing dimethyl ether. The method establishes a specific ratio of hydrogen to carbon monoxide, adjusted for carbon dioxide concentration, to form a DME-containing product gas. This product gas is then utilized in converting dimethyl ether to olefins, resulting in an olefin-containing product gas from which ethylene and/or propylene can be separated.
Another notable patent involves a method for removing impurities from gas flows that contain oxygen. This process effectively removes oxides of sulfur and nitrogen from oxygen-containing gas streams through scrubbing with a washing agent. The method proposes converting impurities at elevated pressures into salts, allowing for economical gas purification, particularly in large oxyfuel furnaces.
Career Highlights
Nicole has worked with notable companies such as Linde Aktiengesellschaft and Plansee SE. Her experience in these organizations has contributed to her expertise in gas processing technologies and innovations.
Collaborations
Some of her coworkers include Florian Winkler and Roland Ritter, who have collaborated with her on various projects and innovations in the field.
Conclusion
Nicole Schodel's contributions to gas processing and purification technologies highlight her innovative spirit and dedication to advancing the industry. Her patents reflect her commitment to developing efficient methods that address contemporary challenges in gas treatment.