Principle of determination of sulfur dioxide by constant potential electrolysis
Principle of determination of sulfur dioxide by constant potential electrolysis, Total:12 items.
The international standard classification for "Principle of determination of sulfur dioxide by constant potential electrolysis" includes: .
The Chinese standard classification for "Principle of determination of sulfur dioxide by constant potential electrolysis" includes: Environmental monitoring instrument and its complete equipment , Analysis methods for industrial wastewater and pollutants .
Professional Standard - Environmental Protection
- HJ 693-2014 Stationary source emission-Determination of nitrogen oxides-Fixed potential by electrolysis method
- HJ/T 57-2000 Determination of Sulphur Dioxide from Exhausted Gas of Stationary Source - Fixed-potential Electrolysis Method
- HJ/T 46-1999 Technical conditions of detector of sulphur dioxide concentration for constant potential electrolysis method
- HJ 973-2018 Stationary source emission - Determination of carbon monoxid - Fixed potential by electrolysis method
- HJ 746-2015 Soil- Determination of redov potential - Potential method
- HJ 57-2017 Stationary source emission - Determination of sulfur dioxide - Fixed potential by electrolysis method
Professional Standard - Water Conservancy
- SL 94-1994 Determination of oxidation - reduction potential (Electrometric method)
Association Francaise de Normalisation
- NF X20-355:1975 Gas analysis-determination of sulfur dioxide by electrical conductimetry.
Korean Agency for Technology and Standards (KATS)
- KS I ISO 11271-2016(2021) Soil quality-Determination of redox potential-Field method
British Standards Institution (BSI)
- BS EN ISO 11905-1:1998 Water quality. Determination of nitrogen.. Method using oxidative digestion with peroxodisulfate
KR-KS
- KS I ISO 11271-2016 Soil quality-Determination of redox potential-Field method
American Society for Testing and Materials (ASTM)
- ASTM UOP291-15 Total Chloride in Alumina and Silica-Alumina Catalysts by Microwave Digestion and Potentiometric Titration