Description

过程蒸汽的进料流量测量

要求

  • 集成温压测量:直接输出总热/净热
  • 对于宽量程工况,可选一体化的内缩径结构

Description

脱氢反应器的温度测量

要求

  • 温度范围宽泛:-40…+600°C / +1100°F
  • 快速响应

Description

粗苯乙烯的流量测量

要求

  • 粗苯乙烯质量流量的高精度测量
  • 四种传感器材质(钛、不锈钢、Hastelloy®、钽)

Description

氢气压缩机下游的差压流量测量

要求

  • 适用于测量氢气
  • 经过校准的差压流量仪表

Description

过程蒸汽的进料流量测量

要求

  • 集成温压测量:直接输出总热/净热
  • 对于宽量程工况,可选一体化的内缩径结构

Description

氢气压缩机下游的压力测量

要求

  • 压缩机监测

Description

补充乙苯和回收乙苯的流量测量

要求

  • 流量和密度的高精度测量
  • 集成温度测量功能

Description

苯、甲苯分离精馏塔的差压测量

要求

  • 精馏塔/塔板的状态监测

Description

未转化乙苯分离精馏塔的差压测量

要求

  • 精馏塔/塔板的状态监测

Description

聚合物及残渣真空分离精馏塔的差压测量

要求

  • 精馏塔/塔板的状态监测

Description

苯乙烯储罐的压力测量

要求

  • 惰化气体的监测

Description

至苯乙烯储罐的进料压力测量

要求

  • 进料压力的控制

概览

Styrene production in plastics & polymers production

High-Precision Instrumentation for Monitoring Temperature and Pressure in Styrene Synthesis

Styrene is an important monomer used in the manufacture of plastics such as polystyrene – best known in its expanded form under the brand name Styropor. But it is also found in foams and other insulating materials. Styrene is manufactured on an industrial scale from ethylbenzene. Catalytic dehydrogenation of ethylbenzene is the most common process for this. The first stage involves producing raw styrene. For this purpose, the reaction mixture provided, consisting of fresh and recycled, unconverted ethylbenzene, diluted with water vapour, is directed through a metal oxide catalyst and is dehydrogenated at 600°C to 650°C. The condensable part is then separated and the hydrogen is extracted and compressed. The raw styrene produced contains, among other components, unreacted ethylbenzene. In the first distillation column, benzene and toluene is removed from the mixture at standard pressure. In the second column, unconverted ethylbenzene is removed and fed back into the reactor. Lastly, in a third column under vacuum the styrene is separated from polymers and other residues.

Precise temperature/heat management is particularly key at the heart of the plant, the dehydrogenation reactor, therefore the temperature and the flow of process steam and ethylbenzene need to be precisely regulated to control the process. Further challenges are presented by the increasing tendency of the styrene to polymerise as the temperature rises and the marginal difference in the boiling points of ethylbenzene and styrene. KROHNE offers state-of-the-art measuring technology here for process monitoring, such as complete thermometers for temperatures well above 600°C with resistant thermowell material and in all common thermowell designs. There are also highly sophisticated vortex flowmeters with integrated temperature and pressure sensor, which allow reliable gross/net heat quantity measurement for steam and condensate. And our electronic differential pressure transmitters provide additional process information thanks to integrated measurement of the static pressure.

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