Process and device for converting hydrogen sulfide into hydrogen gas and sulfur
A reactor for converting hydrogen sulfide into hydrogen gas and sulfur.
1. A reactor for the continuous conversion of hydrogen sulfide to hydrogen gas and sulfur in one or more optionally positively charged reactor chambers, each such reactor chamber having an outer wall with an inner surface defining an interior chamber, each such interior chamber including at least one heating element and at least one membrane, said reactor chamber having:
i. an inlet for introducing the hydrogen sulfide stream into the interior chamber;
ii. each heating element comprising one or more resistance wires or electromagnetic generators and disposed in the interior chamber to heat said hydrogen sulfide stream;
iii. each membrane being disposed in the reactor chamber, said membrane being permeable to hydrogen but impermeable to hydrogen sulfide, sulfur vapor and other gases that may be present in the hydrogen sulfide;
iv. each membrane having a membrane surface defining a flow passageway in communication with a first outlet and comprising a negatively charged conductor located within such flow passageway; and
v. an inner surface of the outer wall or one or more heat exchange condensers serving as a sulfur condenser inside the interior chamber, such inner surface directing condensed sulfur towards and into a second outlet.
2. The reactor of claim 1 , wherein approximately 99% of the hydrogen sulfide in the reactor is continuously converted to hydrogen gas and liquid sulfur.
3. The reactor of claim 1 , further comprising one or more sulfur condensers embodied as thermally conductive, and optionally electrically conductive, tubes.
4. The reactor of claim 1 , further comprising wherein the hydrogen permeable membrane is located within a heated area surrounding heating element, in which heated area the hydrogen sulfide is converted into hydrogen gas and liquid sulfur.
5. The reactor of claim 1 , further comprising a vacuum pump or other means to remove oxygen, methane, and other unwanted unreactive gases from the interior chamber.
6. The reactor of claim 1 , further comprising a covering with insulating and temperature controlling properties comprising interior heat exchange coils, such covering located at the outer wall.
7. The reactor of claim 1 , wherein the inner surface of the outer wall or one or more heat exchange condensers are positively charged.
8. The reactor of claim 1 , wherein each of the inner surface of the outer wall and the one or more heat exchange condensers are positively charged.