The Raman Rxn-41 probe is a rugged, process insertion probe with no sample handling system. Its single cable design streamlines installation, eliminates risk scenarios, and minimizes installation cost for long fiber runs in the process environment. The Rxn-41 probe is ideally suited for use in chemical plants and refineries to measure batch or continuous flow production. For direct measurements in cryogenic fluids, an optimized cryogenic version of the Raman Rxn-41 probe is available.
Chemical: reaction monitoring, blending, feed and final product monitoring
Suitable for hazardous area/classified environments
Spektroskopia ramanowska - zaawansowana metoda analizy optycznej
Zwiększenie bezpieczeństwa zakładu, zapewnienie jakości produktu i optymalizacja procesów. Spektroskopia ramanowska umożliwia pomiar w czasie rzeczywistym składu i struktury molekularnej próbek produktu w warunkach laboratoryjnych, jak i produkcyjnych.
Check out the findings from the GERG report on the use of a Raman Rxn4 analyzer and Raman Rxn-41 cryogenic probe for the reliable chemical composition measurement in LNG custody transfer applications.
Zwiększenie bezpieczeństwa zakładu, zapewnienie jakości produktu i optymalizacja procesów. Spektroskopia ramanowska umożliwia pomiar w czasie rzeczywistym składu i struktury molekularnej próbek produktu w warunkach laboratoryjnych, jak i produkcyjnych.
Probe spectral coverage is limited by the coverage of the analyzer being used.
Maximum laser power into probehead (mW)
< 499
Sample interface
Temperature (25.4 mm / 1 inch) standard configuration: -30 to 120 °C / -22 to 248 °F (316L stainless steel) -30 to 150 °C / -22 to 302 °F (C276 alloy) -30 to 150 °C / -22 to 302 °F (Grade 2 titanium) Temperature (25.4 mm / 1 inch) cryogenic configuration: -196 to 70°C / -320.8 to 158 °F (C276 alloy) -196 to 70 °C / -320.8 to 158 °F (Hybrid metal combination) Temperature (60.33 mm / 2.375 inch) standard configuration: -30 to 120°C / -22 to 248 °F (316L stainless steel) -30 to 150 °C / -22 to 302 °F (C276 alloy) -30 to 150 °C / -22 to 302 °F (Grade 2 titanium) Temperature ramp: ≤ 30 °C/min ≤ 54 °F/min Flange: up to 305 mm / 12 inch diameter, ASME B16.5 or DIN EN1092 Type B flanges available upon request Relative humidity: up to 95%, non-condensing
Pressure
Min pressure: Full vacuum (0 bara) but not ultrahigh vacuum (UHV) where outgassing maybe a concern Max Pressure 25.4 mm / 1 inch standard probe: 141.5 barg / 2053 psig (316L stainless steel) 186.6 barg / 2707 psig (C276 alloy) 144.1 barg / 2090 psig (Grade 2 titanium) 25.4 mm / 1 inch cryogenic probe: 213.7 barg / 3100 psig (C276 alloy) 158.6 barg / 2300 psig (Hybrid metal combination) 60.33 mm / 2.375 inch probe: 49.7 barg / 721 psig (316L stainless steel) 68.8 barg / 998 psig (C276 alloy) 51.5 barg / 747 psig (Grade 2 titanium)
An overview brochure about our Raman Rxn5 analyzer (including the Raman Rxn-30 probe, the Rxn-40 probe, and the Rxn-41 probe), a Raman spectroscopy analyzer system for gas phase measurements powered by Kaiser Raman technology.
Raman analyzer application guide for the oil & gas and chemical
industries - Composition analysis of gas streams and LNG
PU (Publikacja)
Wersja angielska - 12/2021
New version available in English
A guide to our Raman spectroscopy analyzer and probe portfolio, powered by Kaiser Raman technology, for composition analysis of gas streams and LNG (includes the Raman Rxn4 analyzer, the Raman Rxn5 analyzer, the Raman Rxn-30 probe, and Raman Rxn-41 probe) in the chemical industry and oil & gas industry.
An overview brochure about the Raman Rxn-41 probe, a Raman spectroscopy probe for cryogenic liquid measurement powered by Kaiser Raman technology in the Oil & Gas / LNG industry.
Raman technology for the chemical industry - Reliable
composition measurement of chemical process streams
Broszura nt. innowacji (IN)
Wersja angielska - 10/2021
New version available in English
An overview brochure about our Raman spectroscopy analyzer systems, powered by Kaiser Raman technology, for the chemical industry (includes the Raman Rxn2 analyzer, Raman Rxn4 analyzer, Raman Rxn5 analyzer, and the Raman Rxn-10 probe, Raman Rxn-20 probe, Raman Rxn-30 probe, Raman Rxn-40 probe, and Raman Rxn-41 probe).
Raman spectrographic probes - Robust optical measurement
of chemical composition
Broszura nt. innowacji (IN)
Wersja angielska - 10/2021
New version available in English
An overview brochure about our Raman spectroscopy probe portfolio including the Rxn-10 probe, Rxn-20 probe, Rxn-30 probe, Rxn-40 probe, Rxn-41 probe, Rxn-45 probe, Rxn-46 probe, and probe accessory optics (bIO-Optic, Raman single use optic system / SUB, immersion optic , non-contact optic), powered by Kaiser Raman technology.
Raman technology for the LNG industry - Real-time
composition measurement of LNG process streams
Broszura nt. innowacji (IN)
Wersja angielska - 04/2022
New version available in English
An overview brochure about our Raman spectroscopy analyzer systems,powered by Kaiser Raman technology, for the LNG industry / Oil & Gas industry (includes the Raman Rxn4 analyzer, the Raman Rxn5 analyzer, and the Raman Rxn-41 probe).
Optical analysis technologies for LNG - Reliable, real-time TDLAS
and Raman measurement
Broszura nt. innowacji (IN)
Wersja angielska - 11/2023
New version available in English
A portfolio overview brochure about our TDLAS and Raman spectroscopy analyzer systems for the LNG / Oil & Gas industry (includes the SS2100, SS2100i, SS2100a, J22, JT33, Raman Rxn4 and Raman Rxn5 analyzers, and the Raman Rxn-41 probe).
Raman method for custody transfer measurements of LNG
Broszury (WP)
Wersja angielska - 08/2023
New version available in English
This whitepaper details the GERG report findings on the use of a Raman Rxn4 analyzer and Raman Rxn-41 cryogenic probe for th e reliable chemical composition measurement in LNG custody transfer applications.
LNG: Adapting to a more strategic role calls for effective
quality analysis
Broszury (WP)
Wersja angielska - 09/2022
New version available in English
This whitepaper examines the role of Raman spectroscopy (including a Raman Rxn4 analyzer, Raman Rxn5 analyzer, and Rxn-41 probe) and TDLAS (J22 and SS2100 gas analyzers) to measure LNG quality.
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