Non-invasive Analysis Platform for Rapid Screening
- Buyer
- University of Ottawa
- Location
- Ottawa, ON, CAN
- Closing date
- Jul 28, 2026
- Published
- Jun 30, 2026
- Province or region
- Ontario
- Notice type
- Open to bid
- Reference number
- 0000326249
- Solicitation number
- 42972-5a-RFP
Summary
Supply of a non-invasive analytical platform for rapid screening of chemical/biochemical effluents from Flow Chemistry Research Stations, able to accept effluent from a third-party fluid diverter, report composition to a third-party controller, and detect concentrations down to 10 mg/mL within ~10 seconds. Buyer: University of Ottawa, Ottawa, Ontario.
From the notice
Non-invasive Analysis Platform for Rapid Screening of chemical/biochemical effluents from Flow Chemistry Research Stations The analysis platform of the “Flow Chemistry Research Stations” (Module 1) must be capable of receiving a portion of the effluent from the station via a third-party fluid diverter (not a part of this RFP) and reporting composition of matter of the effluent portion to a third-party controller software (also not a part of this RFP). uOttawa will procure/build/supply the diverter and the controller for the fulfilment of the analytical workflow that is in this RFP. The analytical techniques must be capable of rapidly measuring composition of matter from effluent concentrations as low as 10 mg/mL in 10 seconds or more data acquisition time. The proponent is permitted to propose more than one measurement techniques if proponent’s current product portfolio includes multiple detectors that the proponent believes either acts as complimentary measurement techniques or makes analytical data superior to a single measurement technique. The proponent is encouraged to provide a clear persepective on fluid communication among the measurement techniques and the integrability of the proposed measurement platform to a third-party controller. Data from the analytical platform would allow uOttawa to A. optimize flow parameters. B. perform lead optimization. C. advance PAT for rapid online analysis. The majority of effluents from the “Flow Research Stations” would involve fine chemicals. The proponents are encouraged to include any biological applications done or conceptualised using the proposed platform.
Work type
Contact
Olivier Sanche