LC PURE Laboratory MINI-60 60L/h Medium-sized EDI Module An Efficient Ultra-pure Water Solution for Small and Medium-sized Laboratory Scenarios

As a medium-sized model in the LC PURE MINI series, the MINI-60, with a standard water production capacity of 60L/h, precisely matches the continuous water demand of small and medium-sized laboratories, achieving a performance leap in a compact design:
Moderate Size, Flexible Deployment
With dimensions of 380×150×144mm and a weight of only 8KG, it can be easily integrated into the layout of laboratory workbenches. A microbial laboratory of a disease control center installed it next to a biological safety cabinet, which not only meets the daily water demand of 300L but also does not occupy core operating space.
Stable Water Production, No Regeneration Troubles
Adopting an optimized EDI membrane stack design, the product water resistivity is stably maintained at 15-18MΩ·CM, without the need for acid-base regeneration, completely getting rid of the frequent maintenance of traditional ion exchange columns. After a university material laboratory started using it, the number of resin replacement operations was reduced by 4 times per month, saving 24 hours of labor costs.
Energy-efficient and Green Compliance
With a maximum power of 0.5KW/H, the electricity cost for 10 hours of daily operation is only 5 yuan, and there is no waste liquid discharge during the water production process. A pharmaceutical company's QC laboratory used this to meet the requirements of the ISO 14001 environmental management system, becoming a demonstration equipment for green laboratories.
Convenient Expansion, Adaptable to Upgrades
It supports parallel operation of 2-4 units, with a maximum water production capacity of 280L/h, easily coping with the increase in water demand brought by the expansion of experimental scale. An environmental monitoring station met the peak water demand during emergency detection through 3 parallel units.
Parameter Item | Specific Value |
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Standard Water Production Flow | 60L/h |
Maximum Water Production Flow | 70L/h |
Minimum Water Production Flow | 50L/h |
Operating Voltage | 0-80VDC |
Operating Current | 2.5A (0-6A adjustable) |
Number of Membrane Pairs | 2 sets |
Operating Net Weight | 8KG |
Maximum Power | 0.5KW/H |
Fresh Water Inlet/Outlet | 3-point PE pipe |
Concentrated Water Inlet/Outlet | 2-point PE pipe |
Center Length A | 144mm |
Total Length B | 74mm |
Front-back Positioning Length C | 114mm |
Overall Height | 380mm |
Overall Width | 150mm |
Left-right Positioning | 45mm |
Water Inlet Requirement | RO product water (conductivity ≤5μS/cm) |
Product Water Quality | ≥15MΩ·CM |
Case: A Third-party Testing Laboratory
It originally used large industrial-grade EDI equipment to handle small water demand, which had problems of high energy consumption and slow startup. After replacing with MINI-60:
The product water resistivity was stably maintained at 16.8±0.3MΩ·CM, meeting the strict water requirements of liquid chromatography-mass spectrometry, and the reproducibility of detection data was improved by 25%;
The equipment startup time was shortened from 30 minutes to 10 minutes, and the response speed of emergency sample testing was increased by 60%;
The annual electricity cost was reduced by 12,000 yuan, and the equipment floor space was reduced by 70%.
Physicochemical Testing: Cleaning and reagent preparation for batch sample pretreatment
Bioengineering: Ultra-pure water supply for cell culture and fermentation experiments
Pharmaceutical R&D: Preparation of formula water for small-scale pilot production lines
Environmental Monitoring: Experimental water for water quality analysis and pollutant detection
University Laboratories: Centralized water supply for multiple groups of students conducting experiments simultaneously
For laboratories with a daily water consumption of 100-500L, the MINI-60 balances water production and space occupation. It can not only meet the demand for continuous and stable ultra-pure water but also avoid the resource waste of large equipment. Its maintenance-free design and flexible expansion capability make it a cost-effective choice for small and medium-sized experimental scenarios.
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