Claims
- 1. A channel reactor arrangement for contacting reactant with a particulate catalyst, indirectly heat exchanging the reactants with a heat transfer fluid and replacing catalyst particles on stream, said arrangement comprising:a) a reactor vessel; b) a plurality of reaction stacks located in said reactor vessel comprising a plurality of parallel plates extending vertically and horizontally and defining heat transfer channels and reactant channels in each reaction stack; c) openings for passing a reactant stream through said reactant channels and a plurality of manifolds, each manifold in communication with reactant channels in less than all of the reaction stacks for collecting the fluid flow from the reactant channels, an outlet defined by each manifold and a valve for regulating the flow from each outlet independently of a valve on an outlet defined by another of said plurality of manifolds; d) a catalyst distributor at the top of each reaction stack, a catalyst collector at the bottom of each reaction stack and each reaction stack including a dedicated valve for selectively controlling the addition and withdrawal of catalyst particles from each reaction stack; and e) means for passing a heat exchange fluid through the heat exchange channels of each reaction stack.
- 2. The arrangement of claim 1 wherein said heat exchange channels include inlets for passing heat exchange fluid into said heat exchange channels, said inlets being disposed proximate to the bottom of each reaction stack.
- 3. A reactor for contacting reactants with a particulate catalyst, indirectly heat exchanging the reactants with a heat transfer fluid and replacing catalyst particles on stream, said reactor comprising:a) a reactor vessel; b) a plurality of reaction stacks located in said reactor vessel, each reaction stack comprising a plurality of parallel plates extending vertically and horizontally and defining heat transfer channels and reactant channels in each reaction stack; c) a reactant inlet defined by said reactor vessel for passing a reactant stream into said reactant channels; d) at least two outlet manifolds with each outlet manifold in communication with a valve for independently regulating the flow of fluid from the reactant channels and each manifold in communication with less than the total number of reactant channels; e) a catalyst distributor at the top of each reaction stack, a catalyst collector at the bottom of each reaction stack and each reaction stack including a dedicated valve for selectively controlling the addition and withdrawal of catalyst particles from each reaction stack; and f) means for passing a heat exchange fluid through the heat exchange channels in each reaction stack.
- 4. The arrangement of claim 3 wherein each outlet manifold communicates with two reaction stacks.
- 5. The arrangement of claim 4 wherein the reaction stacks comprise a plurality of corrugated plates that define the heat exchange channels and the reactant channels.
- 6. The arrangement of claim 3 wherein at least two inlet manifolds communicate said reactant inlet with different reaction stacks to supply reactants thereto and each outlet manifold communicates with reaction stacks that receive fluid flow from different inlet manifolds.
- 7. The reactor of claim 3 wherein said heat exchange channels comprise an inlet disposed proximate to the bottom of each reaction stack.
- 8. A reactor for contacting reactants with a particulate catalyst, indirectly heat exchanging the reactants with a heat transfer fluid and replacing catalyst particles on stream, said reactor comprising:a) a plurality of reaction stacks, each reaction stack comprising a plurality of parallel plates extending vertically and horizontally and defining heat transfer channels and reactant channels in each reaction stack; b) a plurality of reactant inlet manifolds each communicating with more than one reaction stack for passing a reactant stream into said reactant channels; c) a plurality of outlet manifolds with each outlet manifold in communication with at least two reaction stacks; d) a valve for independently regulating the flow of fluid into each inlet manifold or out of each outlet manifold; e) a catalyst distributor at the top of each reaction stack, a catalyst collector at the bottom of each reaction stack and means for selectively controlling the addition and withdrawal of catalyst particles from each reaction stack without affecting catalyst particles in another reaction stack; and f) means for passing a heat exchange fluid through the heat exchange channels in each reaction stack.
- 9. The arrangement of claim 8 wherein each inlet and outlet manifold communicates with two reaction stacks.
- 10. The arrangement of claim 8 wherein the reaction stacks comprise a plurality of corrugated plates that define the heat exchange channels and the reactant channels.
- 11. The reactor of claim 8 wherein said heat exchange channels comprise inlets disposed proximate to the bottom of each reaction stack.
CROSS-REFERENCE TO RELATED APPLICATION
This application is a divisional application of Ser. No. 08/971,631 filed Nov. 17, 1997, now U.S. Pat. No. 5,948,240.
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