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Membrane-hydrocarbon recovery systems

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Membrane Technology to recover expensive gases from Process

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        VaporSep is an innovative and patented membrane-based process for separating and recovering hydrocarbons from light gases such as nitrogen, hydrogen, or methane. The enabling technology is a "reverse selective" membrane that preferentially permeates the larger hydrocarbon vapors compared to the smaller light gases. VaporSep is used to recover valuable hydrocarbons and to purify the light gas for reuse within the process.

Key Benefits

bulletHigh Recovery of Valuable Raw Materials

Greater than 95% recovery of hydrocarbons is commonly attained. Driven by customer requirements, recovery of greater than 99% has been achieved by numerous units.

Purification of Light Gases

Nitrogen has been purified to 99+% for reuse within the process.

Guaranteed Performance

All units are guaranteed to meet or exceed the specified performance.

High On-Stream Time

Since VaporSep systems are designed to tolerate varying process conditions and contaminants, on-stream time is very high, typically more than 98% availability.

Short Payback Time on Investment

Typical payback time ranges from 6 to 12 months.

Custom Design

VaporSep systems are designed to meet the individual requirements of each and every client.

Chemically Resistant

The durable VaporSep membrane has been designed to be chemically resistant to many aggressive solvents such as vinyl chloride, chlorine, methylene chloride, methyl ethyl ketone, and trichloroethylene.

Long Membrane Life

VaporSep systems have been in operation since 1990. Over 100 years of cumulative operating experience has proven that long membrane life can be expected.

Few or No Moving Parts

VaporSep systems either have no moving parts or include a simple, single-stage compressor.

Reduced Emissions

By recovering hydrocarbons, VaporSep significantly reduces the amount sent to the flare or incinerator. Furthermore, by purifying the light gas for reuse in the process, a complete, closed-loop recycle is achieved.

 

 

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