ELGA PURELAB Quest
Brochures and specifications | 2020 | ELGA LabWaterInstrumentation
High-purity water is foundational across laboratory workflows, from analytical techniques such as HPLC, MS, atomic spectroscopy to molecular biology and general chemistry. Ensuring consistent quality and minimizing contaminants like organic carbon, ions, endotoxins and bacteria are critical for reliable results, instrument longevity, and regulatory compliance.
The technical specification for the PURELAB® Quest ultraviolet (UV) water purification system outlines its capability to generate Type I (ultrapure), Type II (pure) and Type III (RO) water from tap water input. This overview examines design features, performance metrics, environmental considerations and application breadth.
Key components and processes include:
Performance specifications from bench tests and robotic dispensing cycles reveal:
The integrated system offers:
Advancements likely include tighter integration with laboratory information management systems, enhanced real-time monitoring analytics, modular upgrades for specialty filters, further reductions in consumable use, and incorporation of sustainable materials to lower ecological impact.
The PURELAB® Quest UV delivers a versatile, space-saving solution for producing laboratory-grade water across multiple purity levels. Its robust performance, ease of use, environmental considerations and digital connectivity position it as a valuable resource in modern analytical and life science laboratories.
No external literature references were provided in the source specification.
Laboratory instruments
IndustriesOther
ManufacturerELGA LabWater
Summary
Significance of the Topic
High-purity water is foundational across laboratory workflows, from analytical techniques such as HPLC, MS, atomic spectroscopy to molecular biology and general chemistry. Ensuring consistent quality and minimizing contaminants like organic carbon, ions, endotoxins and bacteria are critical for reliable results, instrument longevity, and regulatory compliance.
Objectives and Study Overview
The technical specification for the PURELAB® Quest ultraviolet (UV) water purification system outlines its capability to generate Type I (ultrapure), Type II (pure) and Type III (RO) water from tap water input. This overview examines design features, performance metrics, environmental considerations and application breadth.
Methodology and Instrumentation
Key components and processes include:
- UV lamp operating at 185/254 nm for organic carbon reduction
- Purification pack integrating ion exchange and activated carbon
- Reverse osmosis membrane with recirculation pump to inhibit biofilm formation
- Sensors monitoring resistivity and temperature in real time
- Optional point-of-use filters for endotoxin and bacteria control
Main Results and Discussion
Performance specifications from bench tests and robotic dispensing cycles reveal:
- Type I water: resistivity 18.2 MΩ·cm, TOC < 5 ppb, bacterial counts < 0.1 cfu/ml, endotoxin < 0.001 EU/ml, flow up to 1.2 l/min
- Type II water: resistivity > 1 MΩ·cm, TOC < 50 ppb, bacterial < 100 cfu/ml
- Type III water: conductivity < 20 µS/cm, TOC < 200 ppb, bacterial < 1000 cfu/ml, rejection rates > 96 % ions, > 99 % organics
- Combined daily output: up to 10 l of Type I/II and 30 l of Type III water
- Noise level below 40 dBA and power consumption around 120 VA
Benefits and Practical Applications
The integrated system offers:
- Streamlined supply of three lab water grades from a single unit
- Continuous quality monitoring and automated sanitization routines
- Reduced environmental footprint through > 85 % reclaimed materials and minimized waste
- Suitability for critical workflows including chromatography, spectroscopy, molecular assays, cell culture media preparation, instrument rinsing and hydroponics
Future Trends and Applications
Advancements likely include tighter integration with laboratory information management systems, enhanced real-time monitoring analytics, modular upgrades for specialty filters, further reductions in consumable use, and incorporation of sustainable materials to lower ecological impact.
Conclusion
The PURELAB® Quest UV delivers a versatile, space-saving solution for producing laboratory-grade water across multiple purity levels. Its robust performance, ease of use, environmental considerations and digital connectivity position it as a valuable resource in modern analytical and life science laboratories.
References
No external literature references were provided in the source specification.
Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.
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