Buyer Name: CEFAS
Buyer Address: Pakefield Road, Lowestoft, NR33 0HT, United Kingdom
Contact Name: Giovana Cousseau
Contact Email: procure@cefas.gov.uk
Buyer Name: CEFAS
Buyer Address: Pakefield Road, Lowestoft, NR33 0HT, United Kingdom
Contact Name: Giovana Cousseau
Contact Email: procure@cefas.gov.uk
The Chemistry Function at the Cefas Lowestoft Laboratory has a requirement for an inductively coupled plasma optical emission spectrometer (ICP-OES) for the analysis of environmental samples. The system will be capable of analysing trace elements in diluted acid matrix solutions (HNO3, HCl and HF) formed from microwave acid digestion of marine sediment and biota samples. Ex-demonstration instruments under 3 years old may be proposed at a reduced price and provided 12 months extended warranty is offered. Where an ex-demonstration instrument is proposed, this must be clearly declared in the supplier's quotation. This purchase is being conducted under the LUPC Framework Agreement: High Value Laboratory Equipment (HVLE) - LAB3162 NW, Lot 3 - Spectroscopy Equipment. Scope of Requirements: 1. Technical Requirement The requirement is for a fully automated, bench-top ICP-OES system capable of high-throughput, multi-elemental analysis with robust performance for a wide range of sample matrices. The system must deliver high sensitivity, low detection limits, and excellent long-term stability, supporting both routine and research applications. The objective is to enhance analytical capacity, improve data quality, and ensure compliance with relevant standards (e.g., ISO 17025). The OES system must: • Have an argon gas source which it uses efficiently. • Be axial mode (or duo mode), and not purely radial mode. • Have sub-1ppb detection limits for most required elements (at optimal wavelength). • Operate under a wavelength range of approximately 180 to 850 nm or better. • Be robust and demonstrate minimal downtime due to maintenance. • Include the chiller unit. • Include an autosampler and associated paraphernalia. • Include a sample tray containing at least 150 positions (with options of rack configuration for standard and sample solutions). 2. Environmental Considerations • Unit must have an ultra-low power consumption. • Unit must be designed for reuse/remanufacture and of regenerative nature to eliminate waste where possible. • Consideration of how packaging will be managed. Ideally at the time of installation the supplier will remove packaging and dispose of by ethical and environmentally friendly methods. Where possible packaging is to be re-used or recycled. • Consideration of life cycle assessment for the equipment. • Trade-in or removal of the old system will be of benefit. If a trade-in option can be provided, please include the relevant details in the Pricing Schedule 2 table of this RFQ.
No linked documents found for this notice.
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"description": "The Chemistry Function at the Cefas Lowestoft Laboratory has a requirement for an\r\ninductively coupled plasma optical emission spectrometer (ICP-OES) for the analysis of\r\nenvironmental samples. The system will be capable of analysing trace elements in diluted acid\r\nmatrix solutions (HNO3, HCl and HF) formed from microwave acid digestion of marine\r\nsediment and biota samples. Ex-demonstration instruments under 3 years old may be\r\nproposed at a reduced price and provided 12 months extended warranty is offered. Where\r\nan ex-demonstration instrument is proposed, this must be clearly declared in the supplier\u0027s\r\nquotation.\r\nThis purchase is being conducted under the LUPC Framework Agreement: High Value\r\nLaboratory Equipment (HVLE) - LAB3162 NW, Lot 3 - Spectroscopy Equipment.\r\nScope of Requirements:\r\n1. Technical Requirement\r\nThe requirement is for a fully automated, bench-top ICP-OES system capable of\r\nhigh-throughput, multi-elemental analysis with robust performance for a wide range\r\nof sample matrices. The system must deliver high sensitivity, low detection limits, and\r\nexcellent long-term stability, supporting both routine and research applications. The\r\nobjective is to enhance analytical capacity, improve data quality, and ensure\r\ncompliance with relevant standards (e.g., ISO 17025).\r\nThe OES system must:\r\n\u2022 Have an argon gas source which it uses efficiently.\r\n\u2022 Be axial mode (or duo mode), and not purely radial mode.\r\n\u2022 Have sub-1ppb detection limits for most required elements (at optimal\r\nwavelength).\r\n\u2022 Operate under a wavelength range of approximately 180 to 850 nm or better.\r\n\u2022 Be robust and demonstrate minimal downtime due to maintenance.\r\n\u2022 Include the chiller unit.\r\n\u2022 Include an autosampler and associated paraphernalia.\r\n\u2022 Include a sample tray containing at least 150 positions (with options of rack\r\nconfiguration for standard and sample solutions).\r\n2. Environmental Considerations\r\n\u2022 Unit must have an ultra-low power consumption.\r\n\u2022 Unit must be designed for reuse/remanufacture and of regenerative nature to\r\neliminate waste where possible.\r\n\u2022 Consideration of how packaging will be managed. Ideally at the time of\r\ninstallation the supplier will remove packaging and dispose of by ethical and\r\nenvironmentally friendly methods. Where possible packaging is to be re-used or\r\nrecycled.\r\n\u2022 Consideration of life cycle assessment for the equipment.\r\n\u2022 Trade-in or removal of the old system will be of benefit. If a trade-in option can be\r\nprovided, please include the relevant details in the Pricing Schedule 2 table of\r\nthis RFQ.",
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