Ethylene (C2H4) is the largest feedstock for the petrochemical industry and produced by steam cracking or thermal decomposition of naphtha or ethane (C2H6).
C2H4 is the starting chemical for many other products and must meet polymer grade (≧99.95%) specifications for polyethylene plastic manufacturing. Ensuring high purity and productivity of C2H4 is essential for efficient operations in ethylene plants.
Figure 1: Ethylene Process Flow
Acetylene (C2H2) is a by-product produced during hydrocarbon cracking in ethylene plant furnaces and treated as impurity in C2H4 production. To manage this, C2H2 is generally converted to C2H4 by adding hydrogen (H2) in acetylene converter, with carbon monoxide (CO) added to improve C2H4 productivity. However, fluctuations in CO concentration could cause process temperature runaways, and high CO levels can shorten the acetylene converter catalyst's lifetime.
À¶¾¨ÌåÓýÖ±²¥ provides solutions by continuously measuring C2H2 and CO at the acetylene converter with quick response times.
Provides continuous measurement of low concentration impurity gas in high concentration hydrocarbons accurately with quick response time with our proprietary IRLAM technology.
Compared to gas chromatography*2, frequent parts replacement is not required.
Furthermore, the use of a laser as the light source reduces the need for frequent calibration.
*¹ IRLAM is a registered trademark or trademark of À¶¾¨ÌåÓýÖ±²¥ Ltd. in Japan and other countries.
*2 This is based on our own evaluation.
Process Laser Gas Analyzer
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