The Herzog CID 510 is Now Listed in the GOST Diesel Method and Specification

Analytical instrumentation

The Herzog CID 510 is Now Listed in the GOST Diesel Method and Specification

17 Jul, 2019

Published over 7 years ago. See the latest and most current information on Analytical instrumentation.

PAC is very happy to announce that the GOST State Agency (Rosstandard) just certified Herzog’s Cetane Ignition Delay instrument in Russia’s diesel method and specification.

The Herzog CID 510 method is listed under GOST R 58440-2019 for the determination of the derived cetane number in middle distillates and in addendum #2 to the Russian national specification on diesel fuels GOST R52368-2005 (EN 590:2009). This Addendum includes GOST R 58440-2019 as an acceptable test method for cetane number determination within the Russian Federation.

Many thanks to our channel partner in Russia, Neolab for all their hard work in getting this certification. Both the method and the specification will become official on January 1st, 2020.

The Cetane Ignition Delay 510 technology is proven to provide the best precision in the market for determining the Derived Cetane Number of all types of diesel fuel, biodiesel, FAME, HVO, BTL, and GTL.

The CID 510 is also in perfect correlation to ASTM D613, EN 16715, ISO 5165, IP 41 and IP 615. The patented test method ASTM D7668 is approved as standard and officially listed in diesel specifications: ASTM D975, ASTM D6751, ASTM D7467 and EN 590.

To schedule a demo or get a quote for the CID 510 please click here

Latest News

PIN 27.3 June/July 2026

Explore our Digital Edition

Discover the latest news and research

Digital edition

Explore Our Other Sites

Labmate Online
ETH Zurich builds handheld device that detects fat burning from a single breath
Explore more Arrow
Envirotech Online
Designed for semiconductor. Proven across industries.
Explore more Arrow
Pollution Solutions Online
Oil pipeline decommissioning in Wales secures environmental safety for future generations
Explore more Arrow
Chromatography Today
Unlock high-resolution analysis of therapeutic oligonucleotides
Explore more Arrow