SU416602A1 - - Google Patents

Info

Publication number
SU416602A1
SU416602A1 SU1608614A SU1608614A SU416602A1 SU 416602 A1 SU416602 A1 SU 416602A1 SU 1608614 A SU1608614 A SU 1608614A SU 1608614 A SU1608614 A SU 1608614A SU 416602 A1 SU416602 A1 SU 416602A1
Authority
SU
USSR - Soviet Union
Prior art keywords
oxygen
mixture
analyzed
output
calculated
Prior art date
Application number
SU1608614A
Other languages
English (en)
Russian (ru)
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed filed Critical
Priority to SU1608614A priority Critical patent/SU416602A1/ru
Application granted granted Critical
Publication of SU416602A1 publication Critical patent/SU416602A1/ru

Links

Landscapes

  • Investigating Or Analyzing Non-Biological Materials By The Use Of Chemical Means (AREA)
SU1608614A 1970-12-28 1970-12-28 SU416602A1 (OSRAM)

Priority Applications (1)

Application Number Priority Date Filing Date Title
SU1608614A SU416602A1 (OSRAM) 1970-12-28 1970-12-28

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
SU1608614A SU416602A1 (OSRAM) 1970-12-28 1970-12-28

Publications (1)

Publication Number Publication Date
SU416602A1 true SU416602A1 (OSRAM) 1974-02-25

Family

ID=20463063

Family Applications (1)

Application Number Title Priority Date Filing Date
SU1608614A SU416602A1 (OSRAM) 1970-12-28 1970-12-28

Country Status (1)

Country Link
SU (1) SU416602A1 (OSRAM)

Similar Documents

Publication Publication Date Title
Siegel et al. Determination of 30N2 and application to measurement of N2 evolution during denitrification
Langdon Dissolved oxygen monitoring system using a pulsed electrode: Design, performance, and evoluation
US5129257A (en) System for measuring engine exhaust constituents
Luke Evaluation of a commercial pulsed fluorescence detector for the measurement of low‐level SO2 concentrations during the Gas‐Phase Sulfur Intercomparison Experiment
Schenkel et al. Interference of some trace gases with ozone measurements by the KI method
Bate et al. Calibration of infra-red CO2 gas analyzers
Beckett et al. The manual determination of ammonia in fresh waters using an ammonia-sensitive membrane-electrode
Volltrauer et al. Low-temperature pyrolysis studies by chemiluminescence techniques real-time nitrocellulose and PBX 9404 decomposition
SU416602A1 (OSRAM)
Flühler et al. Field-Measured Nitrous Oxide Concentrations, Redox Potentials, Oxygen Diffusion Rates, and Oxygen, Partial Pressures in Relation to DENITRIFICATION1
Trojanowicz Continuous potentiometric determination of sulphate in a differential flow system
Scott et al. The influence of seawater on fatigue crack propagation rates in structural steel
US3271111A (en) Method and apparatus for boron trihalide analysis
Clerbaux et al. Oxygen content determination using a new analyzer: the Lex-O2-Con
US3296098A (en) Method and apparatus for gas analysis
Landsberg et al. Potentiometric instrument for sulfur determination
Wilcock Reaeration studies on some New Zealand rivers using methyl chloride as a gas tracer
RU2275661C1 (ru) Устройство для градуировки и поверки газоанализаторов
Gulens et al. Comparison of sulfide-selective electrode and gas-stripping monitors for hydrogen sulfide in effluents
Collins et al. An alternative approach to gas phase ozone determination
SU998864A1 (ru) Устройство дл градуировки и поверки датчиков концентрации гели
RU14084U1 (ru) Устройство для определения содержания кислорода в жидкости
Eergashboyevich et al. Semiconductor Sensor for Hydrogen Sulfide on the Basis of Tungsten and Copper Oxides
SU1133530A1 (ru) Устройство дл измерени влажности газов
SU405042A1 (ru) Способ отбора проб для газового анализа