Good quality reverse osmosis ultra-pure water system, for use with applications requiring Type 1 and Type 3 lab water, 18.25MΩ-cm@25℃ resistivity, removes particulates from feed water to less than 1 CFU/mL.
Specification
Model |
Mogene610s/ 620s/ 630s |
Mogene610d/ 620d/ 630d |
Process |
Single pass RO system |
Double pass RO system |
Output of pure water |
≥10L/H |
≥10L/H |
Output of ultrapure water |
≥ 1-1.5L/min |
≥ 1-1.5L/min |
Resistivity at 25℃ |
18.25MΩ.cm |
18.25MΩ.cm |
Conductivity at 25℃ (Type 3 water) |
≤10μs/cm |
≤5μs/cm |
TOC |
< 3ppb |
< 3ppb |
Pyrogens/endotoxins |
< 0.025EU/ml |
< 0.025EU/ml |
Bacteria |
< 1cfu/ml |
< 1cfu/ml |
Particles (> 0.22μm) |
< 1/ml |
< 1/ml |
Absorbance (254nm,1cm optical distance) |
≤ 0.001 |
≤ 0.001 |
Reactive Silica (SiO2) |
< 0.01ppm |
< 0.01ppm |
Heavy metal |
< 0.01ppm |
< 0.01ppm |
Electrical requirements |
220V (230V, 240V) 50Hz |
Power |
≥100W |
≥150W |
Dimension (L/W/H) |
340*550*530mm |
340*550*530mm |
Weight |
≥34KG |
≥45KG |
Tank capacity |
30L |
Note: The model end with 's' has single stage RO module, suitable for feed water inlet TDS<200PPM. Model end with 'd' have double stage RO module, suitable for feed water inlet 200ppm<TDS<400ppm. If feed water inlet TDS>400PPM, suggest an additional industrial type softener.
Product Features
Power-on self-test, water shortage protection alarm, power-off protection.
Built-in RO membrane anti-scaling program, RO membrane manual cleaning button.
Built-in automatic cycle timing of ultra pure water, ultra pure water conservation.
On-line monitoring of water resistance, real-time display of system operating status and warnings.
Pure water tank with cone type structure,a discharge valve at the bottom, easy to clean and disinfect exhausted.
Digital display the time of regular intake or conveying water pressure. Can set time of water outlet.
Lab Test and Corresponding Water Type List
Test Name |
Type III Water |
Type II Water |
Type I Water |
Lab glassware washing |
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Hydroponics |
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Sterilizer use water |
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Gas generator use water |
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Conventional test |
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Reagents/ drugs preparation, dilution |
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Feed water for ultrapure water |
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IC |
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LC/LC-MS |
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HPLC |
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AAS |
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ICP/ICP-MS |
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GC/GC-MS |
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Trace analysis |
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TOC analysis |
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Organic analysis |
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Inorganic analysis |
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Environmental analytical test |
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Microelectronics parts cleaning |
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Precision instrument use water |
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Analytical reagent/ drugs preparation, dilution |
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Mass spectrometry |
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PCR application/analysis |
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DNA/RNA research |
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Proteomics research |
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Plant and animal cell culture |
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Toxicity analysis |
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Microbiology experiment |
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Immunological experiment |
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Biochemistry experiment |
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Serum test |
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IVF |
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Main Consumable List (A water purification system is equipped with a set of consumables. If you want to buy some of the following consumables, contact us now.)
No. |
Name |
Specification |
Lifespan |
1 |
PP filter |
1st stage, 10”/20” (5μm) |
3-6 months |
2 |
Activated Carbon filter |
2nd stage, 10”/20” |
6-12 months |
3 |
Softener filter |
3rd stage, 10”/20” |
6-12 months |
4 |
Precision filter |
4th stage, 10”/20” (1μm) |
10-12 months |
5 |
RO membrane |
75g/300g |
1-2 years |
6 |
Ultra purification resin column |
|
1 year |
7 |
Micro filter |
0.22μm |
1 year |
8 |
UV lamp |
185/254nm |
8000 hours |
9 |
Pure water tank |
30L, 80L, 120L |
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Tips: How to choose the right lab purification water system.
Uses: Different experimental projects have different requirements for the quality of produced water. Based on this, the appropriate machine model can be roughly determined. For example, the amount of Type 3 water used in the laboratory is relatively large, the amount of ultra-pure water is small, or only Type 2 or Type 1 water is used.
Water intake mode: whether to take water continuously or intermittently during work. Are there any special requirements for water pressure or water storage buckets, hoses, etc.
Water use during peak periods: duration of water intake peaks, water requirements, and water quality.
According to the daily water consumption, further determine the specifications of the required ultrapure water system.
Working environment: location, space, distance of water inlet and outlet, power supply, etc.