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MIDI-plant

DGE-Thermolysis plant MIDI

Scrap Tire Recycling

Safety at pyrolysis plants
Presentation: DGE-Thermolysis of scrap tires
Massflow and emissions
Economic of DGE-scrap tire-thermolysis
Information about scrap tires
Information about thermolysis condensate

Technical Details
Infos zum BImSchG
Dirk Gerlach Engineer
 

Wordings in thermolysis / pyrolysis processes

gases

name typical content Remarks
process gas various naming for burnable hot gases
syngas /synthesis gas H2, CO
Due to inputmaterial molecules with S, Cl, Hg, Cd
Generated by gasification with pure oxygen at temperatures over 1.000°C
syngas /synthesis low energy gas N2, H2, CO
Due to inputmaterial molecules with S, Cl, Hg, Cd
Generated by gasification with air. Therefor low heating value.
pyrolysis-/thermolysis gas
(nominal without any details)
H2, H2O, CO, CO2, different carbon-hydrogens
Due to inputmaterial molecules with S, Cl, Hg, Cd (only over 750°C)
contains tars (by biomasses) and bitumina!
pyrolysis gas
(exactly ...)
N2, H2, H2O, CO, CO2, different carbon-hydrogens
Due to inputmaterial molecules with S, Cl, Hg, Cd (only over 750°C)
high N2-content in reason of using of air for partly combustion (heat production)
thermolysis gas
(exactly ...)
H2,H2O, CO, CO2, different carbon-hydrogens
Due to inputmaterial molecules with S, Cl, Hg, Cd (only over 750°C)
no N2, in reason of indirect heated process
permanent gas
(cooled down to 40°C)
H2, CO, CO2, CH4, C2Hx, C3Hx, C4Hx
Due to inputmaterial also H2S, HCl
heating gas non burnable hot gas
hazardous emissions due to used fuel
typical temperatures 500 to 1,200°C
produced for (indirect) process heating
off gas non burnable hot gas
hazardous emissions due to used fuel
typical temperatures 200 to 700°C
typical after process heating

Dipl.-Ing.(FH) Dirk Gerlach   •   Passion for Innovation


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