Genie U 12/24/32

The Genie U ultrapure & RO Laboratory Water Purification System produces ultrapure water (Type I) and RO water directly from tap water.

This high-end water system integrates IoT technology with advanced water purification techniques. Based on the RO permeate flow rate, the Genie U pure water system is categorized into three series: 12, 24, and 32. Different configurations with TOC monitoring or tank recirculation options are also available.

Catalog No.: RG0U01000, RG0U010T0, RG0U0100R, RG0U010TR, RG0U02000, RG0U020T0, RG0U0200R, RG0U020TR, RG0U03000, RG0U030T0, RG0U0300R, RG0U030TR

SKU: RG0U01000, RG0U010T0, RG0U0100R, RG0U010TR, RG0U02000, RG0U020T0, RG0U0200R, RG0U020TR, RG0U03000, RG0U030T0, RG0U0300R, RG0U030TR Categories: ,

Description

Genie U Ultrapure & RO Laboratory Water Purification System

The Genie U ultrapure & RO laboratory water purification system produces ultrapure (Type I) and RO pure water directly from tap water. It provides solutions for research professionals using Type I ultrapure and RO pure water in various lab applications. Its optimized flow path design, combined with comprehensive process monitoring, ensures stable and reliable water quality.

The ultrapure water quality meets or exceeds ASTM, CLSI, CAP, and ISO Type I water standards.

The Genie U Ultrapure & RO Laboratory Water System is CE/RoHS certified. RephiLe provides full documentation to support users’ GMP, GSP, GAP, GCP, GLP requirements.

Genie U Water Purification System Brochure >> Download

Features:

Design & Technologies

  • The system can connect with multiple dispensers via CAN cable or wireless, in a “1+N” Mode.
  • Consistent reverse osmosis (RO) permeability across a broad range of ambient temperatures due to a temperature feedback design.
  • A fully automated system simplifies maintenance and ensures water quality through built-in RO rinsing, cleaning, fouling prevention flush, and programmed chlorine and pH cleaning.
  • The system automatically diverts off-spec RO product water to the drain. A recovery loop reuses RO concentrate  to increase pure water yield and comply with environmental protection standards.
  • An incorporated leak protector prevents damage from water leakage by shutting off the feed water in case of unexpected leaks.
  • Options with a tank recirculation loop are available. The tank circulation design guarantees that the pure water quality within the tank meets the required standards.
  • The main system can be tucked away to save precious bench space as it is designed to be wall-mounted, placed on a shelf, or installed under the sink.

Effective TOC level control

  • A 185/254 nm dual-wavelength UV lamp reduces TOC level in ultrapure water.
  • The water tank is standardly equipped with a sanitization module with a mercury-free UV lamp, which effectively controls microbial growth.
  • For models with TOC monitoring, an online TOC monitor operating on the principle of complete oxidation is equipped for TOC monitoring in purified water, ensuring the reliability required for critical applications.

Easy Operation and Maintenance

  • RFID technology facilitates comprehensive monitoring of consumables and accessories’ operational status, delivers real-time performance feedback, and ensures reliable traceability of historical data for operations, maintenance activities, alarms and alert notifications.
  • RFID tags prevent the misplacement of cartridge installations, thereby maintaining system integrity. They also record consumable usage and lifespan. This data-drive approach enables a smart replacement plan,  minimizing waste and lowering operational costs.
  • The control console, an 8-inch color touchscreen, enables the configuration and monitoring of all components and peripheral devices within the water system, and intuitively displays water quality parameters and the operational status of the entire system.
  • A reassuring volumetric dispensing function with adjustable dispensing volumes ranging from 10 mL to 999 L.
  • Signature verification for maintenance and service.

Cartridges and Parts

1. Cartridge

  • The built-in P Pack cartridge removes oxidants, organic substances, particles and scaling ions, preventing them from fouling the RO membranes.
  • The AC Pack contains RephiAC activated carbon for the removal of organic impurities and free chlorine.
  • The ultra-purification cartridge is filled with LeFilTM and OrganeFilTM media to remove trace ions and organic compounds.
  • Multiple models of ultrapure purification cartridge are available to precisely meet the diverse needs of different users. These include conventional general-purpose types, low-TOC types for TOC-sensitive experiments, low-boron types for elemental analysis, low-magnesium types for NGS high-throughput sequencing, ICP types for ICP-MS sub-ppt level analysis, and deep filtration types.

2. Control console

  • The independent control console can be freely combined and placed with the system or dispenser, saving space. This allows users to view information at their preferred angle and height for a comfortable, unrestricted, and convenient experience.
  • Both the console screen and dispenser screens are water-drop proof and can be operated with latex gloves or wet hands.
  • The display menu has two-level password protection for safety purposes.

3. Dispenser

  • The 2.4-inch touchscreen allows for easy setup of volumetric water dispensing, automatically delivering the required water volume, and remembers settings via its memory function.
  • The flow rate control button on the touchscreen of a control console or a dispenser allows adjustment of the water dispensing speed, up to 2 liters per minute.
  • The anti-slip base, height-adjustable dispernser arm, and 360° rotation ensure stability and versatility, accommodating all laboratory apparatus.

4. Final Filter

  • A wide range of final filters (optional) is applicable to ensure ultrapure water without particles, bacteria or pyrogen.

5. Level sensor

  • The integrated continuous level sensor measures the water level within the tank and automatically manages the system to start or stop water production based on requirements.
  • Water level and quality in the tank are viewable from the control console.

Applications

Ultrapure Water RO Pure Water
  • HPLC mobile phase preparation
  • Preparation of reagent blank solution
  • As sample diluents for GC, HPLC, UPLC, AA, ICP-MS and other analytical techniques
  • Preparation of buffer and culture media for mammalian cell culture
  • Preparation of molecular biology reagents, etc.
  • Glassware cleaning
  • Washing machine for glassware
  • Water bath water
  • Autoclave
  • Feed water to laboratory animals

Specification

Feed Water Requirements
Tap water Municipal water, Conductivity < 2000 μS/cm (1000 ppm)
Operating temperature 5 – 35 ℃
Feed water pressure 1 – 6 bar (15 – 90 psi)
Water Flow Rate
RO water production rate (@ 25℃) 12, 24, 32 L/hr
RO water dispensing rate Up to 2.0 L/min
Ultrapure water dispensing rate Up to 2.0 L/min
Product Water Quality
RO water conductivity (@ 25℃) typically < 20 μS/cm (feed water conductivity < 500 μS/cm)
RO rejection 97 to 98% ionic rejection (new RO cartridge)
> 99% organic rejection
> 99% particulates & bacteria rejection
Ultrapure water resistivity (@ 25℃) 18.2 MΩ·cm
Ultrapure water TOC* < 2 ppb
Particles in ultrapure water ( > 0.2 μm) No particles (with a 0.2 μm final filter or RephiBio filter)
Microorganisms in ultrapure water < 0.001 cfu/ml (with a 0.2 μm final filter or RephiBio filter)
Pyrogens (endotoxins) in ultrapure water < 0.001 Eu/ml (with a RephiBio filter)
RNase in ultrapure water < 0.5 pg/ml (with a RephiBio filter)
DNase in ultrapure water <10 pg/ml (with a RephiBio filter)
Product Water Quality Stored in Tank ( for tank recirculation models )
Resistivity (@25℃) > 1 MΩ·cm (default), adjustable
Dimensions
Main system dimensions Width × depth × height 32 × 44 × 54 cm (12.6 × 17.3 × 21.3 in)
Dispenser dimensions Width × depth × height 21 × 29 × 61 cm (8.3 × 11.4 × 24.0 in)
Weight 20 kg
Input Voltage 110 – 240 VAC
Operating Voltage 24 VDC
Main system power < 200 W

*In the appropriate operating conditions, otherwise typically ≤5 ppb.

Ordering Information

Water system

Description Catalog No.
Genie U 12 Water System RG0U01000
Genie U 12 Water System with TOC RG0U010T0
Genie U 12 Water System, with tank recirculation RG0U0100R
Genie U 12 Water System with TOC & tank recirculation RG0U010TR
Genie U 24 Water System RG0U02000
Genie U 24 Water System with TOC RG0U020T0
Genie U 24 Water System, with tank recirculation RG0U0200R
Genie U 24 Water System with TOC & tank recirculation RG0U020TR
Genie U 32 Water System RG0U03000
Genie U 32 Water System with TOC RG0U030T0
Genie U 32 Water System, with tank recirculation RG0U0300R
Genie U 32 Water System with TOC & tank recirculation RG0U030TR

Cartridges and Final Filters

Description Catalog No.
Genie AC Pack RR700AC01
Genie P Pack RR700CP01
Genie P Pack for harder water RR700CP02
Genie H Pack RR700H101
Genie H Pack (low Boron) RR700H201
Genie U Pack RR700Q101
Genie U Pack low TOC RR700Q301
Genie T Pack RR700T101
Genie U Pack (ICP) RR700Q601
0.2 µm PES High Flux Capsule Filter RAFFC7250
RephiBio filter RAFFB7201

Tanks and Accessories

Description Catalog No.
30 L PE Tank with TSM & Vent Filter RATK030GEK
60 L PE Tank with TSM & Vent Filter RATK060GEK
100 L PE Tank with TSM & Vent Filter RATK100GEK
350 L PE Tank with TSM & Vent Filter RATK350GEK
Tank Sanitization Module w/Overflow Sensor for larger tanks RAPRC0131
Bactericidal UV lamp kit for larger tanks RALE030A1
Tank vent filter for Genie RATANKVN7
Sanitization module for Genie (old) RAPRC0127
Tank recirculation upgrade kit with a cartridge RATANKRC7
Tank UV lamp 254 nm for Genie (old) RAUV357A7
Continuous level sensor, 0 – 2 m, 1/4 inch G threads RATLS9107
Submersible Level Sensor, 0 – 3 m RATLS9109
Wall mount kit for Genie tank RASP536

System Accessories

Description Catalog No.
Dispenser kit RG0P0U001
Wireless Dispenser upgrade kit RG0P0U012
Dispenser kit with on-system anchor RG0P0U003
Genie RO Pack, 12 L/H RR70R1001
Genie RO Pack, 16 L/H RR70R1501
Leak protector for Genie RAPRC0118
RO Booster pump, 24 VDC RASP742KT
Recirculation pump, 24 VDC RASP743KT
Genie Cleaning Pack RR700CL01
Dual Wavelength UV lamp for Genie RAUV357B7
Genie control console RG0B01001
Sanitizer, 24 tablets/bottle RAFC00124
Foot switch for Genie RAPRE0221
Wall mount kit for Genie RASP534
Wall mount kit for Genie Dispenser RASP535

Citations

[1] Cobo-Golpe, M., et al. “Predicting concentrations of volatile and semi-volatile compounds in indoor areas through analysis of condensed water samples. A proof of concept.” Chemosphere 360 (2024): 142403.

[2] Golpe, M. Cobo, M. Ramil, and I. Rodríguez. “Comprehensive characterization of volatile and semi-volatile compounds in e-liquids for electronic cigarette using gas chromatography accurate mass spectrometry.” Journal of Chromatography A 1703 (2023): 464114.

[3] Fernández-Fernández, V., M. Ramil, and I. Rodríguez. “Basic micro-pollutants in sludge from municipal wastewater treatment plants in the Northwest Spain: Occurrence and risk assessment of sludge disposal.” Chemosphere 335 (2023): 139094.

[4] Fernández-Fernández, Victoria, et al. “Occurrence and risk assessment of pesticides and pharmaceuticals in viticulture impacted watersheds from Northwest Spain.” Chemosphere 341 (2023): 140098.

[5] Cobo-Golpe, Miguel, et al. “Comparison of UV, chlorination, UV-hydrogen peroxide and UV-chlorine processes for tramadol removal: Kinetics study and transformation products identification.” Journal of Environmental Chemical Engineering 10.3 (2022): 107854.

[6] Cobo-Golpe, Miguel, et al. “Assessment of the occurrence and interaction between pesticides and plastic litter from vineyard plots.” Science of the Total Environment 912 (2024): 169273.

[7] Groenendijk, Dirk J., and Johannes NM van Wunnik. “Surfactant adsorption and ion exchange on calcite surfaces.” Energy & Fuels 35.10 (2021): 8763-8772.

[8] Kamińska, Gabriela. “WWTP effluent treatment with ultrafiltration with different mixed matrix nanocomposite membranes: comparison of performance and fouling behavior.” Archives of Environmental Protection 48.4 (2022).

[9] Cobo-Golpe, Miguel, et al. “Supercritical fluid chromatography time-of-flight mass spectrometry enantiomeric determination of basic drugs in sewage samples.” Journal of Chromatography A 1673 (2022): 463088.

[10] Groenendijk, Dirk J., Ron Bouwmeester, and Johannes NM van Wunnik. “Spectrophotometric determination of Ca2+ and Ca-complex formation constants: application to chemical enhanced oil recovery.” ACS omega 6.7 (2021): 5027-5032.

[11] Zhang, Dongxing, et al. “3d-Printed Biomimetic Superhydrophobic and Multifunctional Ptfe Structures with Enhanced Wear Resistance.” Available at SSRN 5003256.

[12] López-Vázquez, Javier, et al. “Direct, automated and sensitive determination of glyphosate and related anionic pesticides in environmental water samples using solid-phase extraction on-line combined with liquid chromatography tandem mass spectrometry.” Journal of Chromatography A 1687 (2023): 463697.

[13] Golpe, Miguel Cobo, et al. “Chlorhexidine residues in sludge from municipal wastewater treatment plants: analytical determination and toxicity evaluation.” Analytical and Bioanalytical Chemistry 414.22 (2022): 6571-6580.

[14] Pérez-Mayán, Leticia, et al. “Determination of pesticide residues in wine by solid-phase extraction on-line combined with liquid chromatography tandem mass spectrometry.” Journal of Food Composition and Analysis 104 (2021): 104184.

[15] Fernández-Fernández, Victoria, et al. “Solid-phase extraction and fractionation of multiclass pollutants from wastewater followed by liquid chromatography tandem-mass spectrometry analysis.” Analytical and Bioanalytical Chemistry 414.14 (2022): 4149-4165.

[16] Pérez-Mayán, Leticia, et al. “Approaches to liquid chromatography tandem mass spectrometry assessment of glyphosate residues in wine.” Analytical and Bioanalytical Chemistry (2022): 1-11.

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