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Atmospheric gas analyser

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Submission Deadline Has Passed

This tender's submission deadline has passed and is no longer accepting applications. The information below is kept for reference purposes.

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Deadline
Expired
February 04, 2026
Contract Details
Category
Restricted Procedure
Reference
010243-2026
Value
£82,840
Location
Eastern Scotland, United Kingdom
Published
August 03, 2026
CPV Code
Project Timeline

Tender Published

February 05, 2026

Deadline for Questions

January 28, 2026

Submission Deadline

February 04, 2026

Budget
£82,840
Duration
Not specified
Location
Eastern Scotland
Type
Restricted Procedure

Original Tender Description

SUMMARY The University of Edinburgh Field Spectroscopy Facility requires a sensor system/analyser with the capability to measure N2O (nitrous oxide), CO2 (carbon dioxide) and CH4 (methane) concentrations at altitude/height simultaneously and in real time, at a detection limit in the <1 ppb for methane, <0.5 ppb for N2O and < 200 ppb for CO2. The concentrations are required for flux measurements, and therefore the temporal frequency of measurements is important, measurement frequency needs to be no less than 1 Hz, ideally at 5 Hz. PAYLOAD WEIGHT AND INTERFACE To enable use of the facility’s existing UAV equipment the sensor must be able to interface with a DJI M400 drone, and the total sensor weight must be under 7kg. MEASUREMENT APPROACH Measurements of these gasses must be made simultaneously, to a synchronised timing and measurement frequency, and the measurement at a given timestamp should be taken from the same shared volume of air. This should produce a single combined data series. To give an example of the intention; At timestamp 1, a volume of air, V1, has been ‘ingested’, and will be tested by the analyser to give measurements of N2O(t=1), CO2 (t=1) and CH4(t=1). At timestamp 2, (1 second in the future, if operating at 1 Hz), a new volume of air V2 is ingested and analysed to give measurements of N2O(t=2), CO2 (t=2) and CH4(t=2). And so on, at the ‘Hz’ rating the device operates at. Measurement must be conducted in-situ/in-flight at real time while the UAV operates; storing volumes of air for after-operation analysis would not be suitable. CONCLUSION After a market evaluation it is believed there is only one solution which can fulfil the combined requirements – the Aeris Sensors MIRA Strato. As such we intend to award via the Negotiated Procedure Without Prior Call for Competition, to their sole EU distributor, on the basis competition is absent for technical reasons. Any suppliers who wish to query or challenge this notice should do so within 10 calendar days of its publication. Value represents cost excluding VAT and import duties (if applicable).

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Basic Requirements

  • Company registration in EU required
  • Proven track record in similar projects
  • Financial stability documentation

Documents

3 documents available with AI summaries

OCDS RecordDOC
010243-2026_ocds_record.json

The University of Edinburgh intends to award a contract for a UAV-compatible sensor system capable of real-time, simultaneous measurement of N2O, CO2, and CH4 at altitude with specific detection limits and frequencies, via a negotiated procedure due to a sole-source solution (Aeris Sensors MIRA Strato).

OCDS Release PackageDOC
010243-2026_ocds_release.json

The University of Edinburgh seeks a real-time, in-situ atmospheric gas analyser for N2O, CO2, and CH4, compatible with a DJI M400 drone (under 7kg, 1-5Hz, <1ppb detection limits), and intends to award a sole-source contract due to unique technical requirements, inviting challenges from other suppliers.

Official PDF VersionPDF
010243-2026_official.pdf

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