SENOVA BIOTECH (SHANGHAI) CO., LTD.
SENOVA BIOTECH (SHANGHAI) CO., LTD.
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Type III Laboratory Water Purification System 15L/H Laboratory Ro Water Systems

Product Details

Place of Origin: China

Brand Name: Senova

Certification: CE

Model Number: MetaPure15N

Payment & Shipping Terms

Minimum Order Quantity: 1 unit

Price: Available upon request

Packaging Details: plywood case

Delivery Time: 5-20 working days

Payment Terms: T/T

Supply Ability: 100 units

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Specifications
Highlight:

Type III Laboratory Water Purification System

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Laboratory Water Purification System 15L/H

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15L/H Laboratory Ro Water Systems

Productname:
Laboratory Ultrapure Water System
Keywords:
Ultrapure Water System For Laboratory
Feed Water:
Tap Water
Output Water:
Type I, Type II, Type III
Powersupply:
220V/50Hz Or 110V/60Hz
Water Tank:
Optional
Productname:
Laboratory Ultrapure Water System
Keywords:
Ultrapure Water System For Laboratory
Feed Water:
Tap Water
Output Water:
Type I, Type II, Type III
Powersupply:
220V/50Hz Or 110V/60Hz
Water Tank:
Optional
Description
Type III Laboratory Water Purification System 15L/H Laboratory Ro Water Systems

15L Type I Type II Type III Pure(RO) Ultra Pure Water System MetaPure15N with Built-in Water Tank

It is all-in-one system to produce Type I,II and III pure water. It is specially designed for users whose pure water applications are wide but also concern cost effective aspect.

Features

  1. High-Purity Output: Generates Class I ultrapure water (18.2 MΩ.cm) directly from tap water sources.
  2. Proactive Quality Protection: Built-in alarm system alerts users to any water quality deviations.
  3. Optimized Laboratory Design: Compact footprint maximizes available laboratory space utilization.
  4. Dual Cartridge Configuration: Extended purification cartridges provide enhanced service life and easy replacement.
  5. Specialized Water Processing: Ultrafiltration technology removes endotoxins and RNase contaminants.
  6. Biological Research Ready: Perfectly suited for demanding cell culture and molecular biology protocols.
  7. Simplified Maintenance: User-replaceable cartridges minimize system downtime.
  8. Consistent Performance: Maintains water quality standards through continuous system monitoring.
  9. Operational Efficiency: Extended cartridge life reduces maintenance frequency and costs.
  10. Versatile Installation: Adaptable design fits various laboratory configurations and layouts.
  11. Quality Control Features: Comprehensive monitoring ensures output meets specified standards.
  12. Technology Innovation: Incorporates latest advances in water purification science and engineering.
  13. Built-in water tank

Optional: External water tank

Specifications

Model MetaPure15N
Feed Water Requirement
Source Tap water
Conductivity* <2000us/cm
Hardness** <450ppm as CaCO3
Pressure 0.05~0.5MPa(7 - 72psi)
Temperature 5~40℃
Purification Water(Class III)
Ionic Rejection >95%
Bacteria Rejection >99%
Conductivity 1~20us/cm
Productivity Rate 15L/h
High Quality Purification Water(Class II)
Resistivity At 25℃ 10MΩ.cm
TOC <30ppb
Dissolved Organic <0.1ppm
Ultrapurification Water(Class I)
Resistivity At 25℃ 16~17MΩ.cm
Flow Rate 1~1.5L/min
TOC Level(optional with UV) <30ppb
Particulate(≥0.02um) <1pc/ml
Bacteria <1cfu/ml
Electrical Requirements
Electrical Voltage 110V/220V±10%
Electrical Frequency 50Hz/60Hz
Packing Information
Net Weight
Main units 38kg
Water tank (-/20G) N/A
External Dimensions(WxDxH)
Main units 390x530x500mm
Water tank (-/20G) N/A
Shipping weight
Main units 51kg
Water tank (-/20G) N/A
Shipping Dimensions(WxDxH)
Main units 515x660x750mm
Water tank (-/20G) N/A

Introduction about laboratory water purification system

Environmental sustainability is an increasing concern in laboratories. Water purification systems contribute to this goal by reducing plastic bottle consumption. Furthermore, modern RO systems can be configured to improve water efficiency. Implementing good practices—such as using the lowest acceptable water grade for a task, promptly fixing leaks, and optimizing system recovery rates—reduces both water waste and operational costs. Choosing systems with longer-life filters and recyclable components further minimizes the environmental impact, aligning laboratory operations with broader sustainability objectives.

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