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  1. jaypar

    Underground nitrogen and co2 piping

    Thanks Steve and TBP, The piping is copper for the nitrogen pipe and SS for CO2 pipe. If I enclose/ encapsulate the two pipes in a larger corrosion resistant PVC/ plastic pipe or in a closed underground concrete trench that have elctrical conduits running in the same trench. Would I still need...
  2. jaypar

    Underground nitrogen and co2 piping

    Hi All, I have a client who is insisting on underground piping to route the nitrogen and co2 piping from the tank farm to process area. I am concerned about corrosion. Any pointers? Thanks
  3. jaypar

    Ammonia in waste stream to thermal oxidizer

    If I have ammonia in my waste gas stream to the thermal oxidizer will the incineration of ammonia generate more NOX or will it serve to reduce NOX. Any pointers?
  4. jaypar

    Ammonia in waste stream

    Thankyou 25362 and JEB66 for your response. The reaction you indicated are typical of NOX destruction when we add anhydrous ammonia in SCR or SCNR after burner. In my waste stream, I have ammonia around 30 lb/h which will be destructed/combusted in thermal oxidizer. Do you anticipate the same...
  5. jaypar

    Ammonia in waste stream

    THanks bimr, THis is a exhaust from process and drying area. Hope this helps
  6. jaypar

    Ammonia in waste stream

    I have a 25000 scfm waste stream at 200 deg.F oxidizer. It has around 30 lb/h of ammonia. It also contains 300 lb/h of alcohol in addition to around 1.5 lb/h of NMOC's (Silazanes). I have 0.18 lb/h of particulates. I cannot use a catalytic system given my particulate and silzane loading...
  7. jaypar

    Hydrogen uses

    Vinny, Hydrogen has several applications. One way to use hydrigen is in Fuel cells you could power your own facility using the hydrigen that you generate more efficiently. Currently there is ONSI that makes Phosphoric acid fuel cells. Fuel Cell Energy that makes Molten Carbonate Fuel cells...
  8. jaypar

    Exchanger Sizing

    Carrie, a rough calculation to find the energy required to cool the room can be obtained by the basic equation Q = M (Mass of air in the room) x Cp(air) x delta T (Difference between 95 - 80) Now mass of air in the room is = Volume of air in the room x density of air We know the volume of air...
  9. jaypar

    Water treatment reference book

    Dear Adavidi, I suggest you look at Water treatment Handbook from Osmonics. It is complete with sections such as identifying impurities, methods of water purification, examples of high ourity system, appendices and glossary. It is a consice 145 page comprehensive handbook. Alternatively you...

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