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Low TOC Ultrapure Water System LMLWS-B107

Low TOC Ultrapure Water System LMLWS-B107 delivers 30L/hour output at 2L/min flow rate. Built with two-stage RO system, it ensures effective removal of ions and organic contaminants. Equipped with advanced ultrafiltration module for minimal levels of endotoxin, RNase and DNase. Designed for efficiency, it features compact structure and energy-saving operation. Our purifier maintains TOC levels below 3ppb, ensuring high-quality water.

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Specifications

Output 30L/hour
Flowrate 2L/min
Outlets 2 stage RO and UP
Feed Water Portable tap water, 5 to 45℃, 1 to 4 bar
Stage 1 RO Water Quality Ion rejection rate: greater than 98%, Organic rejection rate (MW above 200dalton): greater than 99%, Particle and bacteria rejection rate: greater than 99%
Stage 2 RO Water Quality Ion rejection rate: greater than 99%, Resistivity: greater than 0.2MΩ.cm at 25℃, Conductivity: less than 5µs/cm
UP Water Quality Resistivity: greater than 18.2MΩ.cm at 25℃, Bacteria: less than 0.01CFU/ml, Particles (0.2µm): less than 1/ml, Heavy metal ion: less than 0.01ppb
TOC Less than 3ppb
Endotoxin Less than 0.001EU/ml
RNases Less than 1pg/ml
DNases Less than 5pg/ml
Display LCD
Power Consumption 72W
Power Supply AC100 to 240V, 50/60Hz
Dimension (L×B×H) 340×500×560mm
Weight 18Kg

Pricing

Product Price Unit Action
Low TOC Ultrapure Water System LMLWS-B107 $ 11150 Each of 1

Features

User-friendly interface 

Backlit LCD display

Self-flushing technology

Easy-to-replace cartridge

Long membrane life

Low energy consumption

Standard Accessories

Accessory

Unit

Quantity

Cartridges  

Set

1

1.8L Buffer Tank 

Each

1

Accessory Bag

Pack

1

Applications

Low TOC Ultrapure Water System LMLWS-B107 is employed in pharmaceuticals, scientific research, healthcare, electronics, and food industries for critical cleaning, manufacturing, and preventing contamination.

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Frequently Asked Questions

1 What is a Low TOC Ultrapure Water System?

A Low TOC Ultrapure Water System is a purification system that produces water with extremely low Total Organic Carbon for high-purity applications.

2 Why is Low TOC Ultrapure Water System essential in pharmaceutical manufacturing?

It is essential in pharmaceutical manufacturing to ensure water purity meets regulatory standards and prevents contamination in drug formulations.

3 Can Low TOC Ultrapure Water System be used in clinical diagnostics?

It can be used in clinical diagnostics to prevent interference in sensitive biochemical and molecular assays.

4 Why is Low TOC Ultrapure Water System important in forensic science labs?

It is important in forensic science labs to avoid contamination in trace evidence analysis, DNA extraction, and toxicology tests.

5 How does Low TOC Ultrapure Water System aid in vaccine production?

It aids in vaccine production by providing contaminant-free water that meets stringent purity requirements essential for biological safety and product efficacy.

6 What role does Low TOC Ultrapure Water System play in biotechnology research?

It plays a critical role in biotechnology research by preventing interference in sensitive assays and preserving the integrity of cell cultures and recombinant protein production.

7 Can Low TOC Ultrapure Water System be used in the food and beverage industry?

It is used in the food and beverage industry for applications requiring ultrapure rinse water, particularly in sterile packaging or ingredient mixing where TOC-sensitive formulations are used.

8 How does Low TOC Ultrapure Water System help in forensic toxicology labs?

It helps in forensic toxicology labs by ensuring uncontaminated baseline water for sample preparation, improving the accuracy of trace-level drug and toxin detection.

9 Can Low TOC Ultrapure Water System be used for quality control in nutraceuticals?

It is used for quality control in nutraceuticals to ensure that analytical testing is not compromised by background organics during assay preparation.

10 Why is Low TOC Ultrapure Water System used in critical aerospace R&D test environments?

It is used in critical aerospace R&D test environments to prevent contamination that could affect data integrity during material, fluid dynamics, or propulsion tests.