Accelerate scientific innovation and boost research productivity
Drive the pace of scientific innovation and raise research productivity in traditional energy, critical materials, energy storage and environmental sustainability—from water and air quality to carbon capture, energy storage, batteries and hazardous waste management.
Leverage chemistry expertise and electrolyte technology for research programs
Utilize OLI’s decades of electrolyte technology development to jumpstart research projects and innovate faster. Act on chemistry insights to digitize chemical research to raise R&D productivity, create optimal pilot plant designs and develop new capabilities to enhance asset reliability in harsh industrial environments with mineral scaling and corrosion predictions.
Enhance research on sustainability of industrial chemical processes including battery materials, carbon capture and toxic contamination
Leverage OLI’s deep electrolyte capabilities to enhance effectiveness of research initiatives in lithium and rare earth recovery, water and wastewater treatment, capture transportation and storage of CO2air quality and hazardous waste storage and processing with rigorous and accurate simulations.
Deliver automated insights and digital twins for greater productivity and faster commercialization
Utilize automated electrolyte insights for rapid experimental design and enhanced research team productivity. Democratize electrolyte technologies with simple, easy-to-use cloud applications for all classes of users to build digital twin prototypes to mitigate corrosion, scaling and fouling risk, enhance asset reliability and increase sustainability in chemicals processing operation.
OLI software portfolio for scientists, process engineers, environmental engineers and operators
Windows-based desktop and cloud offerings for all user types and applications
Windows desktop offering for chemistry analysis, mineral scaling and corrosion management.
OLI Flowsheet: ESP
Process simulation and design software with energy, mass and species balance and in-depth chemistry insights.
Electrolyte technologies in third-party, Windows-based process simulators (Aspen Plus/ HYSYS, PRO/II) and applications (OSISoft, PowerBI) with APIs.
OLI Cloud Platform
OLI Cloud APIs and OLI Cloud Apps for anywhere, anytime access for all users and applications.
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Partner with OLI for research projects and programs
Process industry research requires advanced simulation software, rigorous chemistry analysis, and market-leading support and applications consulting. Selecting an experienced partner is a critical first step to accelerate innovation and ensure success in water chemistry. OLI’s lifecycle consulting offers personalized support to help organizations leverage the right simulation software and critically evaluated experimental data in order to create powerful, end-to-end solutions that harness the full power of water chemistry applications.
While OLI has already operationalized a number of pertinent chemistries, further research is required to fully understand all chemical properties and phenomena for industrial applications. Successful research partnerships will fuel the development of accessible and accurate models, enabling organizations to design, simulate and optimize industrial processes.
With proven experience in over 25 successful research partnerships with a broad range of global research and government organizations including US Department of Energy (DoE), National Labs, academic institutions and commercial organizations in basic and applied science research, designing prototypes and commercializing technologies, OLI is an ideal research partner.
Engage OLI’s research team to create joint proposals for funded research projects for thermophysical modeling of new and existing processes, materials selection, chemical treatment programs as well as water, air quality, CO2 capture, storage and transport, energy storage and hazardous waste management. Leverage our expertise in chemistry, corrosion, mineral scaling and process modeling to advance your research project.