Product category:
Liquid Analysis: DO, Ozone, BOD, TOC
News Release from: Analytik Jena UK | Subject: Multi N/C series
Edited by the Processingtalk Editorial
Team on 19 February 2008
Versatile TOC analyser from Analytik
Jena
The Multi N/C series of catalytic combustion analysers have been designed for the fully automatic determination of bound carbon (TIC/TOC, TC, NPOC, POC) and/or total nitrogen (TNb)
With TOC and TNb determined simultaneously, the Multi N/C series meets the requirements of DIN-EN, USEPA, ASTM, FDA and USP standards The novel design provides an extended dynamic range for TOC measurements from 2ppb up to 30,000ppm without dilution
This article was originally published on Processingtalk on 28 Sep 2007 at 8.00am (UK)
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The Multi N/C series of catalytic combustion analysers from Analytik Jena UK offer extraordinary versatility for TOC (Total Organic Carbon) and TNb (Total Bound Nitrogen) measurement
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This allows the systems to be used in applications ranging from trace-level analysis of ultrapure waters in the pharmaceutical industry to the analysis of drinking, ground and surface waters with medium TOC, or measuring highly contaminated, particulate wastewaters.
The versatile double furnace configuration can also be oriented either for solid samples with easy switching between the two configurations.
For solid samples, the high combustion temperature of up to 1800C and ability to handle up to 3g of sample ensures reliable analysis even of inhomogeneous solid samples.
High accuracy results are ensured using patented VITA technology, which automatically determines the retention time of the sample in the analyser.
This not only leads to good accuracy and sensitivity but also excellent repeatability.
VITA improves repeatability from typically 5-10% in the 0.5 - 1.0mg/l range and 3-5% in the 1000 to 5000mg/l range to 1-2% across the measuring ranges.
In addition, VITA significantly reduces the intervals between calibrations to around 6 months, reducing running costs.
Multi N/C series instruments can be calibrated across the entire detection range using a single standard sample, eliminating the need for a large number of standard reference materials.
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