EP0242006B1

A process for recovering sulfur from sulfur-containing gases

Abstract

This record has no abstract on file.

EP0242006B1, drawing sheet 1
Sheet 1 of 3

Term

Term ended

Expired 15 April 2007, 19.4 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

10 claims: 2 independent, 8 dependent

  1. 1
    A process for the recovery of sulphur from a hydrogen sulfide containing gas, which comprises oxidizing hydrogen sulfide with oxygen, and then reacting the product gas of this oxidation further by using at least two catalytic stages, in accordance with the equation:2H₂S + SO₂ ⇆ 2H₂O + 3/n Sn, wherein the H₂S concentration in the gas leaving the last catalytic stage is controlled to have a value ranging between 0.8 and 3% by volume and the H₂S : SO₂ ratio in that gas being larger than 2, by reducing the quantity of combustion or oxidation air passed to the oxidation stage and/or causing a portion of the hydrogen sulfide containing feedstock gas to bypass the oxidation stage and to be added to the gas flowing to a catalytic stage, the said H₂S coming from the last catalytic stage being selectively oxidized to sulphur in a dry oxidation bed, with a catalyst having an oxidation efficiency to sulphur of 80-95% whereby the gaseous sulfur thus formed is condensed after the said dry oxidation reactor and whereby - with an oxidation efficiency to sulphur of 80-85% of the oxidation catalyst, an H₂S concentration of 0.8-1.7% by volume is selected in the gas coming from the last catalytic stage. - with an oxidation efficiency to sulphur of 85-90% of the oxidation catalyst, an H₂S concentration of 1.0-2% by volume is selected in the gas coming from the last catalytic stage, and - with an oxidation efficiency to sulphur of 90-95% of the oxidation catalyst, an H₂S concentration of 1.4-2.4% by volume is selected in the gas coming from the last catalytic stage.
  2. 4
    A process as claimed in claims 1-3, characterized by using a catalyst comprising a carrier of which under the reaction conditions applied, the surface exposed to the gaseous phase does not exhibit alkaline properties, with a catalytically active material applied thereto or formed thereon, the specific area of the catalyst being less than 20 m²/g catalyst, and less than 10% of the total pore volume having a pore radius of between 5 and 500 Å.