Testomat® 808 SIO2 Reagent set, reagents A 100 ml & B 100 ml

Product number: 140808
92,80 €*
* Prices excl. VAT plus shipping costs.
Heyl

Product information

Dimensions: 125 x 140 x 70 mm
Weight: 0,280 kg
Measurement parameters: Silica SiO2
Measuring range: 0.3 - 1.2 ppm
Range of application: Monitoring the level of SiO2 in the water, Application: sterilisation of hospitals, silica monitoring.

Description

Description "Testomat® 808 SIO2 Reagent set, reagents A 100 ml & B 100 ml"

Original reagent kit from Heyl for measuring silicate in water for use in the Testomat 808 SIO2 – two 100 ml bottles (A+B) for precise SIO2 monitoring.

SIO2 reagent kit for Testomat 808 – reagents A+B for silicate measurement

Complete A+B reagent set for reliable determination of silicate content

The Testomat 808 SIO2 reagent set A+B consists of two original 100 ml bottles of reagents A and B, which have been specially developed for photometric silicate measurement. The kit covers the entire measurement process and is ready for immediate use. Thanks to the coordinated measurement range of 0.3 to 1.2 ppm SIO2, even low silicate concentrations can be reliably detected.

Advantages of the original reagent kit for silicate measurement from Heyl

With the A+B reagent set, you can use precisely coordinated components for silicate determination in the Testomat 808 SIO2. The reagents are factory calibrated and guarantee consistently reproducible results in the monitoring range from 0.3 to 1.2 ppm SIO2.

Application & areas of use

  • Measuring parameter: Silicon dioxide in water – particularly important for pure or deionised water.
  • Measuring range: approx. 0.3–1.2 ppm SIO2 – tailored to the capacity of the Testomat 808 SIO2 system.
  • Package contents: 100 ml each of reagent A and reagent B
  • Areas of application: Monitoring of silicate in deionised water, process water, in clinical sterilisation processes or other technical water systems.
  • Advantages: Original reagents ensure continuously accurate measurements and support the functional integrity of the measuring system.

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