Company Filing History:
Years Active: 2009-2021
Title: Innovations of Timothy J Rittof
Introduction
Timothy J Rittof is a notable inventor based in West Chicago, IL (US). He has made significant contributions to the field of wastewater treatment and salt recovery, holding a total of six patents. His innovative approaches have the potential to enhance environmental sustainability and resource recovery.
Latest Patents
One of his latest patents is titled "Enhanced process for selective salt recovery from wastewater, waste salts, and brines." This process involves treating wastewater or waste brines that contain sodium and chloride ions. The waste brine is concentrated and directed to a Mirabilite crystallizer, which produces hydrated sulfate salt crystals and a first solution. The hydrated crystals are then melted to form an aqueous sulfate solution, which is sent to a sodium sulfate crystallizer that produces sodium sulfate salt crystals. The first solution from the Mirabilite crystallizer is processed through a nanofiltration device, generating a permeate stream and a reject stream containing sulfate. The permeate stream is directed to a sodium chloride crystallizer, resulting in sodium chloride salt crystals, while the reject stream is recycled back to the Mirabilite crystallizer.
Career Highlights
Timothy has worked with prominent companies in the water treatment industry, including Veolia Water Technologies, Inc. and United States Filter Corporation. His experience in these organizations has contributed to his expertise in developing innovative solutions for water and salt recovery.
Collaborations
Throughout his career, Timothy has collaborated with various professionals, including James F Rieke and Sebastien Bessenet. These collaborations have likely enriched his work and led to further advancements in his field.
Conclusion
Timothy J Rittof's contributions to the field of wastewater treatment and salt recovery demonstrate his commitment to innovation and environmental sustainability. His patents reflect a deep understanding of the complexities involved in resource recovery, making him a significant figure in this area.