Reactor packing with preferential flow catalyst
The present invention relates to reactor tubes packed with a catalyst system employed to deliberately bias process gas flow toward the hot tube segment and away from the cold segment in order to reduce the circumferential tube temperature variation.
1. A method of producing synthesis gas within a tubular reformer, comprising:
introducing a process gas, where the process gas comprises steam and at least one hydrocarbon at an inlet of one or more tubes disposed in the reformer, contacting the process gas with a catalyst in the interior of the one or more tubes, wherein at least a portion of the catalyst has a structural element that circumferentially biases a process gas flow toward at least one portion of the tube wall circumference which has a greater incident heat flux and away from a at least one portion of the tube wall circumference which has lesser incident heat flux thereby reducing a circumferential variation in tube wall temperature, and
removing a reformed process gas at an outlet of the one or more tubes wherein the reformed process gas is a synthesis gas containing hydrogen, carbon monoxide, carbon dioxide, and water.
2. The method of claim 1 , wherein the structural element is utilized in at least a portion of the one or more tubes.
3. The method of claim 2 , wherein the type and/or elevation of the structural element is predetermined by analysis of the at least one reformer tube wall incident heat flux profile.
4. The method of claim 1 , wherein the structural element has a configuration that varies over a length of a tube.
5. The method of claim 1 , wherein one or more types of structured elements selected from the group of flow resistance elements, baffles, supported catalyst, fan folds, thickened baffles and perforated baskets are utilized in one or more tubes within a tubular reformer.