University College CorkCorkTED
Contract for the provision of a combined High-Resolution Mass Spectrometer (HRMS) for metabolomic analysis equipped with Desorption Electrospray Ionisation (DESI) imaging capability, based on a Waters Xevo QTof/MRT platform with Desorption Electrospray Ionisation (DESI) XS with imaging capabilities.
¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬University College Cork is seeking to procure: 1. A combined High-Resolution Mass Spectrometer (HRMS) for metabolomic analysis equipped with Desorption Electrospray Ionisation (DESI) imaging capability, based on a Waters Xevo QTof/MRT platform with Desorption Electrospray Ioni...
No credit card · Instant access
Content at a glance
- Tender type:
- Tender
- Contracting authority:
- University College Cork
- Published:
- August 18, 2026
- Deadline:
- Not specified
Tender description
Show full descriptionCollapse description
¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬¬University College Cork is seeking to procure: 1. A combined High-Resolution Mass Spectrometer (HRMS) for metabolomic analysis equipped with Desorption Electrospray Ionisation (DESI) imaging capability, based on a Waters Xevo QTof/MRT platform with Desorption Electrospray Ionisation (DESI) XS with imaging capabilities 2. A complementary triple quadrupole mass spectrometer (Waters Xevo TQ-S cronos/micro) for highly sensitive targeted quantitative metabolomics. This infrastructure is required to support a Mass Spectrometry Core Facility (MS-IMPACT) funded through the Higher Education Research Equipment Grant (HEREG). The combined platform will provide complementary capabilities spanning discovery metabolomics, structural characterisation, spatial molecular imaging, and targeted quantitative analysis. The HRMS with DESI will be used for biological, environmental, pharmaceutical, forensic, archaeological, geological and bioprocess research applications and analysis from simple and complex mixtures with the ability to simultaneously to identify known metabolites with high sensitivity, discover previously unknown molecular features, determine accurate molecular masses and elemental compositions, characterise peptides, intact proteins, glycans, and small molecules, spatially localise pharmaceuticals, metabolites and chemical entities within complex biological and non-biological samples, including microbial modifications. One of the key differentiators for the Xevo QTof/MRT platform over other instruments is the reduced sampling time which enables better consistency over the peak range – this is particularly important when sampling a surface but important in many applications. The infrastructure will support applications including: biopharmaceutical characterisation, intact protein mass analysis; peptide mapping, glycan and glycopeptide profiling, microbial fermentation studies, food and environmental metabolomics, natural product discovery, clinical biomarker discovery; pharmaceutical synthesis, process, metabolites and degradation products, forensic and contaminant analysis. A key requirement of this infrastructure is the ability to perform ambient, minimally destructive mass spectrometry imaging (MSI) ideally within one vendor integrated platform offering (hardware, software, support). The Xevo G3 QTof will be compatible for DESI XS imaging for routine comprehensive tissue imaging and for locating substrates on a range of materials. DESI enables direct analysis of compounds from surfaces under ambient conditions with little or no sample preparation, by generating charged microdroplets that extract and ionise molecules directly from the sample surface. Unlike matrix-assisted laser desorption ionisation (MALDI), DESI does not require matrix deposition, minimises chemical modification/ morphological changes in samples, reduces risk of analyte redistribution caused by matrix application; enables rapid analysis of heterogeneous samples; allows analysis under near-native conditions, facilitates analysis of diverse surfaces including tissues, microbial colonies, materials, chemical deposits, geological samples, paints/pigments and forensic samples including e.g. hair, nails , fingerprints, blood and explosive residues. DESI therefore provides a unique capability for a broad range of sample types. The DESI XS platform coupled to a high-resolution accurate mass instrument will enable: spatial metabolomics, microbial colony metabolite mapping, localisation of pharmaceutical compounds; analysis of fermentation processes; imaging of endogenous metabolites and investigation of biological and material interfaces. The imaging capability is a critical requirement of the infrastructure and represents a significant efficiency enhancement beyond conventional LC-MS analysis, allowing spatial characterisation in two dimensions. The HRMS is central to the UCC MS Core Facility and allows the simultaneous analysis of both known and ‘unknown’ compounds for high-resolution metabolomics capability to advance arrange of research programmes across the physical and life sciences. It therefore provides the required combination of sensitivity, accurate mass measurement, MS/MS capability and compatibility with DESI MS/MS imaging technology. The triple quadrupole mass spectrometer will be used in a complementary approach to the HRMS focused on targeted known metabolites across a range of food, nutrition and life science applications. While HRMS provides discovery and structural information, triple quadrupole mass spectrometry remains the benchmark technique for quantitative metabolomics, targeted biomarker validation, pharmacokinetic studies, low abundance metabolite detection; outine analytical workflows. The Xevo TQ-S cronos/micro platform provides, multiple reaction monitoring (MRM) provides high sensitivity, excellent quantitative precision high sample throughput. Applications include, but is not limited to, analysis of a range of fat- and water-soluble vitamins (as status biomarkers for population nutritional status surveillance), nucleotide sugars, amino acids, lipid mediators, microbial metabolites, pharmaceutical compounds and clinical biomarkers.
Further details
With free access, documents, deadlines and submission notes are available in a structured format.
- Core requirements of the tender prioritized and prepared
- Deadlines, eligibility criteria and documents in one workflow
- Guidance for structured bid preparation
- Automatically discover matching follow-up tenders
30 days free · no credit card · cancel anytime
All procurement details
Buyer, lots, participants, locations, documents, and procedure data have already been captured. Open any area to see the complete information in your workspace.
6 data areas available
30 days free · no credit card · cancel anytime
Documents
Unlock50 details capturedDocuments · Document bundle
Buyer
Unlock3 details capturedBuyer · Address · Contact
Lots
Unlock1 detail capturedLots LOT-0001
Procedure data
Unlock5 details capturedPublication number · Procedure reference · Procedure type · Contract type · +1 more
Performance locations
Unlock2 details capturedPerformance locations
Publisher
Unlock3 details capturedPublisher · Address · Contact
Related tenders
10Cryogenic ion trap mass spectrometer for infrared laser spectroscopy for HFML-FELIX
Stichting Nederlandse Wetenschappelijk Onderzoek Instituten (NWO-I)AMSTERDAMThe HFML-FELIX institute houses an international user facility hosting a series of infrared free-electron lasers (FELs) that are available for experiments to both local and visiting (inter)national scientists. The lasers cover the infrared region from 2.8 – 150 µm with macropulse energies > 100 mJ (10 µs pulses @ 10 Hz). A major application of the FELs involves infrared ion spectroscopy, where vibrational spectra are obtained for the ionized molecules inside a mass spectrometer with the aim to elucidate their chemical structure. For this purpose, a high-resolution and high-sensitivity cryogenic ion trap mass spectrometer (MS) is required that will meet the diverse requirements of high sensitivity in analytical applications, high resolution in MS analysis, ion storage at cryogenic temperature leading to high spectral resolution in the IR spectra, and optical access to the ions in the cryogenic trap by the high pulse energies of the FELs. 1x Cryogenic ion trap mass spectrometerCryogenic ion trap mass spectrometer for infrared laser spectroscopy for HFML-FELIX
Stichting Nederlandse Wetenschappelijk Onderzoek Instituten (NWO-I)AMSTERDAMThe HFML-FELIX institute houses an international user facility hosting a series of infrared free-electron lasers (FELs) that are available for experiments to both local and visiting (inter)national scientists. The lasers cover the infrared region from 2.8 – 150 µm with macropulse energies > 100 mJ (10 µs pulses @ 10 Hz). A major application of the FELs involves infrared ion spectroscopy, where vibrational spectra are obtained for the ionized molecules inside a mass spectrometer with the aim to elucidate their chemical structure. For this purpose, a high-resolution and high-sensitivity cryogenic ion trap mass spectrometer (MS) is required that will meet the diverse requirements of high sensitivity in analytical applications, high resolution in MS analysis, ion storage at cryogenic temperature leading to high spectral resolution in the IR spectra, and optical access to the ions in the cryogenic trap by the high pulse energies of the FELs. 1x Cryogenic ion trap mass spectrometerSupply and Maintenance of an Ultra High Performance Liquid Chromatography system coupled to a Quadrupole Tandem Mass Spectrometer (UHPLC-MS/MS-QQQ)
European Commission, DG GROW - Internal Market, Industry, Entrepreneurship and SMEsBrusselsDeadline: Sep 09Supply of an Ultra High Performance Liquid Chromatography system coupled to a Quadrupole Tandem Mass Spectrometer (UHPLC MS/MS QQQ) designed to provide a versatile platform for a wide range of analytical applications throughout its service life, its immediate priority is the separation, detection and quantification of per and polyfluoroalkyl substances (PFAS) in complex matrices at parts per trillion (ppt) levels. The procurement package includes installation, comprehensive training, guarantee and a full-service maintenance support/CTF – 260188 Supply, Delivery (unloaded and positioned at the point of use), Installation, Commissioning, Training, Warranty and Maintenance of a TGA for Solid Fuel Characterisation and Evolved Gas Analysis Coupling
Finance Directorate - Queen's University BelfastBelfastDeadline: Aug 13The School of Chemistry and Chemical Engineering requires the procurement of a thermogrimetric analysis system to support the characterisation of solid fuels and related materials within the PEACEPLUS Clean Air project. The primary purpose of the equipment is to measure thermal decomposition behaviour, mass loss profiles, ash-related behaviour, and combustion characteristics of solid fuel samples under controlled atmospheres. The equipment will support research, method development, and future accredited testing activity associated with solid fuel assessment and emissions-related investigations. The required system must also include provision for coupling to a separately procured gas chromatography–mass spectrometry system for evolved gas analysis. This requirement is intended to establish a robust analytical platform aligned, where applicable, to relevant ISO and ASTM approaches for fuel and thermal analysis.Prima BT Bench Top Process Mass Spectrometer (Prima BT MS)
Aalto University Foundation srAALTOPrima BT is a process mass spectrometry platform designed for near real-time off-gas analysis from multiple bioreactors that fulfils the requirements specified in “Definition of Requirements”. It employs a magnetic sector mass spectrometer, providing high long-term stability and precision for the measurement of key gases (e.g., O₂, CO₂, N₂, Ar) across multiple streams, supporting scales from benchtop development to pilot studies. The system computes bioprocess performance indicators such as oxygen uptake rate (OUR), carbon dioxide evolution rate (CER), and respiratory quotient (RQ), providing continuous process insight without interrupting the culture. Each bioreactor stream is sampled independently through automated multiplexing, allowing customized timing, calibration factors, and data acquisition per reactor. Time-resolved gas compositions are recorded for every stream, facilitating robust mass balance calculations and volumetric mass transfer analysis. The BT MS software enables full instrument control, automated calibration and validation routines, secure data logging, and integration with laboratory and process control systems via standard protocols (e.g., OPC) for real-time monitoring, alarm management, and compliant data archival. In summary, the device is designed for comprehensive bioprocess monitoring, enabling precise, non-invasive analysis of gas exchange dynamics across multiple bioreactors simultaneously, with the magnetic sector MS providing unparalleled stability and reproducibility.LA3673C-UCC-CFT for the Supply of a Fully Integrated Precision Ferroelectric and Piezoelectric Analysis Platform
Education Procurement Service (EPS)LimerickDeadline: Aug 24Tyndall National Institute, University College Cork requests the supply of a Precision Ferroelectric and Piezoelectric Analysis Platform, comprising of seven complementary subsystems with functionality requirements as follows 1. Measurement Core 2. Optical Metrology 3. Thermal Modules 4. HV Subsystem 5. Fixturing and Probing 6. Workstation 7. Infrastructure The Platform must have the ability to perform comprehensive, high resolution ferroelectric and piezoelectric characterisation of ferroic materials, spanning bulk ceramics, ultrathin films and full wafers, across a broad temperature range. The primary purpose of this platform is to provide a unified, high performance infrastructure for the fundamental research and industrial benchmarking of advanced ferroic and piezoelectric materials. It will be utilised for the precision characterisation of material properties at various stages of development, from initial thin film growth and bulk ceramic synthesis to full wafer level device integration and reliability testing, supporting the development of next generation sensors, actuators, and beyond CMOS computing architectures. Materials with controlled ferroic responses are key to enabling next generation technologies. Ferroelectric and piezoelectric materials are vital for precision actuators, sensors, photonic systems, and non volatile memories, while multiferroics, combining electric and magnetic order, present transformative potential for ultra low power, non volatile logic and memory.LA3673C-UCC-CFT for the Supply of a Fully Integrated Precision Ferroelectric and Piezoelectric Analysis Platform
Education Procurement Service (EPS)LimerickDeadline: Aug 31Tyndall National Institute, University College Cork requests the supply of a Precision Ferroelectric and Piezoelectric Analysis Platform, comprising of seven complementary subsystems with functionality requirements as follows 1. Measurement Core 2. Optical Metrology 3. Thermal Modules 4. HV Subsystem 5. Fixturing and Probing 6. Workstation 7. Infrastructure The Platform must have the ability to perform comprehensive, high resolution ferroelectric and piezoelectric characterisation of ferroic materials, spanning bulk ceramics, ultrathin films and full wafers, across a broad temperature range. The primary purpose of this platform is to provide a unified, high performance infrastructure for the fundamental research and industrial benchmarking of advanced ferroic and piezoelectric materials. It will be utilised for the precision characterisation of material properties at various stages of development, from initial thin film growth and bulk ceramic synthesis to full wafer level device integration and reliability testing, supporting the development of next generation sensors, actuators, and beyond CMOS computing architectures. Materials with controlled ferroic responses are key to enabling next generation technologies. Ferroelectric and piezoelectric materials are vital for precision actuators, sensors, photonic systems, and non volatile memories, while multiferroics, combining electric and magnetic order, present transformative potential for ultra low power, non volatile logic and memory.ID 6396032 - AFBI – Supply, Delivery, Installation and Commissioning of an Imaging Flow-Cytometry System for Automated Shipboard Phytoplankton Analysis to Support the SEUPB PEACEPLUS-Funded ACCLIMATISE Project
Agri-Food and BioSciences InstituteBelfastThe Agri‑Food and Biosciences Institute (AFBI) is one of the world’s leading providers of scientific research and evidence-based services to government, non-governmental, and commercial organisations. With a unique breadth of facilities and multidisciplinary scientific capability spanning agriculture, animal health, food, the environment, biosciences, and economics, AFBI undertakes a wide range of impactful research projects for both the public and private sectors. The Fisheries and Aquatic Ecosystems Branch (FAEB) of AFBI requires the procurement of one flow cytometry-based plankton imaging system capable of high resolution imaging, optical triggering, and automated morphological analysis of marine plankton and suspended particulates. AFBI requires the supply, delivery, installation, and commissioning of the complete system, including all necessary hardware, software, accessories, and consumables to ensure full operational capability. Comprehensive warranty coverage, and reactive repair support are mandatory requirements, as well as the provision of on site operator training for AFBI staff to ensure effective use of the equipment post commissioning.CFT - 260187 Supply, Delivery (unloaded and positioned at the point of use), Installation, Commissioning, Training, Warranty and Maintenance of a GC\MS System for Analysis of Evolved Gases and Combustion Products from Solid Fuels - PEACEPLUS Funded
Finance Directorate - Queen's University BelfastBelfastDeadline: Aug 12The School of Chemistry and Chemical Engineering requires the procurement of a Gas Chromatography–Mass Spectrometry (GC/MS) system to support the analysis of volatile and semi-volatile compounds generated from the thermal decomposition and combustion of solid fuels and related materials. The system will form part of an integrated analytical capability under the PEACEPLUS Clean Air project, supporting research, method development, and future accredited testing activity. The primary function of the GC/MS system is to enable qualitative and quantitative analysis of evolved gases and combustion products, including volatile organic compounds, oxygenated species, and other trace emissions relevant to air quality and fuel characterisation. The system must be capable of operating as a standalone analytical platform and must also be compatible with a separately procured thermogravimetric analysis (TGA) system for evolved gas analysis workflows. The specification therefore includes requirements for interfacing, gas transfer, and handling of low-concentration, transient species.ID 6396032 - AFBI – Supply, Delivery, Installation and Commissioning of an Imaging Flow-Cytometry System for Automated Shipboard Phytoplankton Analysis to Support the SEUPB PEACEPLUS-Funded ACCLIMATISE Project
Construction and Procurement DeliveryBelfastDeadline: Jul 19The Agri‑Food and Biosciences Institute (AFBI) is one of the world’s leading providers of scientific research and evidence-based services to government, non-governmental, and commercial organisations. With a unique breadth of facilities and multidisciplinary scientific capability spanning agriculture, animal health, food, the environment, biosciences, and economics, AFBI undertakes a wide range of impactful research projects for both the public and private sectors.Funding has been secured through the Special EU Programmes Body (SEUPB) administered PEACEPLUS scheme to deliver the ACCLIMATISE project, an all-island initiative aimed at developing an integrated marine climate change monitoring and assessment toolbox for the island of Ireland. As part of this programme, AFBI is seeking to procure next‑generation observational technologies capable of monitoring and quantifying changes in plankton communities and associated marine food webs within the Irish Sea. The Fisheries and Aquatic Ecosystems Branch (FAEB) of AFBI requires the procurement of one flow cytometry-based plankton imaging system capable of high resolution imaging, optical triggering, and automated morphological analysis of marine plankton and suspended particulates. Suppliers should refer to the Specification for further information on the requirements.
Frequently asked questions about this tender
- How can I apply for this tender?
- Create a free account on Auftrag One. You will then see all documents, deadlines and submission notes in a structured workflow.
- What is the submission deadline?
- No specific submission deadline is currently stated for this notice.
- Who is the contracting authority?
- The contracting authority is University College Cork.
- Which documents are needed to get started?
- Typically you need the service description, proof of eligibility, deadline notes and possibly form sheets. On Auftrag One these items are displayed in prioritized order.