Résultats de recherche

filters logos

Filtrer les résultats

arrow down
Années
exclamation icon
Type de contenu
Exporter les résultats Sauvegarder les résultats
3 résultats de recherche
pen icon Colloque
The treatment of CANMET coprocessing residue in hydrogen-argon induction plasmas
quote

The CANMET process for the upgrading of heavy oil and coal produces a residue containing hydrocarbons, ash, and spent catalyst. The disposal of this material represents a major challenge since it contains both inorganic and organic hazardous materials. This work examines the treatment of the residue in hydrogen-argon plasmas to produce light hydrocarbons. Both batch and continuous treatments were carried out in an induction plasma microreactor. Acetylene was the major reaction product. Much of the sulphur in the original residue was fixed in the ash. Considerable quantities of carbon black were produced as a byproduct. No liquid hydrocarbons were isolated.

quote
pen icon Colloque
The treatment of CANMET coprocessing residue in hydrogen-argon induction plasmas
quote

The CANMET process for the upgrading of heavy oil and coal produces a residue containing hydrocarbons, ash, and spent catalyst. The disposal of this material represents a major challenge since it contains both inorganic and organic hazardous materials. This work examines the treatment of the residue in hydrogen-argon plasmas to produce light hydrocarbons. Both batch and continuous treatments were carried out in an induction plasma microreactor. Acetylene was the major reaction product. Much of the sulphur in the original residue was fixed in the ash. Considerable quantities of carbon black were produced as a byproduct. No liquid hydrocarbons were isolated.

quote
pen icon Colloque
The treatment of CANMET coprocessing residue in hydrogen-argon induction plasmas
quote

The CANMET process for the upgrading of heavy oil and coal produces a residue containing hydrocarbons, ash, and spent catalyst. The disposal of this material represents a major challenge since it contains both inorganic and organic hazardous materials. This work examines the treatment of the residue in hydrogen-argon plasmas to produce light hydrocarbons. Both batch and continuous treatments were carried out in an induction plasma microreactor. Acetylene was the major reaction product. Much of the sulphur in the original residue was fixed in the ash. Considerable quantities of carbon black were produced as a byproduct. No liquid hydrocarbons were isolated.

quote