Nova Patents
CA2247259C

Catalyst testing process and apparatus

Abstract

A multicell holder (10) e.g. a honeycombor plate, or a collection of individualsupport particles, is treated with solutions/suspensions of catalyst ingredients to producea plurality of cells, spots, or pellets (12)each having a different composition. The pluralityof cells, spots, or pellets are dried, calcinedor treated to stabilize the ingredientsand contacted with a potentially reactive feedstream or batch of reactants. The reaction occurringin each cell (12) is measured or analyzedto determine the relative efficacy of thecatalysts in each combination. The measurementor analysis is done through a number ofdifferent methods including infrared thermography(14), spectroscopy of products or residualreactants or sampling for further analysis. Robotic techniques can be employed in producingthe cells, spots or pellets (12).

CA2247259C, drawing sheet 1
Sheet 1 of 5

Term

Term ended

Expired 25 February 2017, 9.6 years ago.

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

51 claims: 14 independent, 37 dependent

  1. 1
    What is claimed is :CA 02247259 2002-06-24 1. A method of simultaneously testing a plurality of candidate catalyst formulations, the method comprising: supporting a plurality of catalyst formulations on one or more supports, simultaneously contacting the formulations with a reactant or reactant mixture under reaction conditions in a common reactor;and determining the relative efficacy of the plurality of candidate catalyst formulations by simultaneously (i) observing heat liberated or absorbed during the course of the reactions catalyzed by the plurality of candidate catalysts, or (ii) analyzing the reaction products or unreacted reactants of the reactions catalyzed by the plurality of candidate catalysts by chromatography or spectroscopy.
  2. 15
    16. The method of claim. 13 wherein the observed infrared emissions are corrected by a method that includes observing infrared radiation emitted from the support material as a control reference, and normalizing the infrared emissions observed from each of the plurality of candidatecatalyst-containing sites to the control reference.
  3. 16
    17. The method of any one of claims 10 to 16 wherein the radiation emitted during the course of the reaction is detected by imaging with an infrared-sensitive camera.
  4. 26
    27. The method of any one of claims 1,21, 22, 23, 24, 25, or 26, wherein the reaction products or unreacted reactants are detected with a technique selected from the group consisting of infrared spectroscopy, nuclear magnetic resonance (NMR) spectroscopy, Raman spectroscopy, laser spectroscopy and optical spectroscopy.
  5. 31
    32. The method of any one of claims 1 to 31 wherein the plurality of catalyst candidates or precursors are selected from at least one of chemical conversion catalysts, hydrocarbon conversion catalysts, inorganic catalysts, metals or metal oxides, transition metals or transition metal oxides, zeolites, metallocenes, and supported catalysts.
  6. 32
    33. The method of any one of claims 1 to 32 wherein the reaction conditions include a temperature greater than I00°C, and additionally, or alternatively, a pressure of greater than 1 bar.
  7. 33
    34. The method of any one of claims 1 to 33 wherein the one or more reactants are in the gas phase. CA 02247259 2002-06-24
  8. 34
    35. The method of any one of claims 1 to 34 wherein the one or more reactants are in the liquid phase.
  9. 35
    36. An apparatus for evaluating a plurality of differing candidate catalyst formulations for catalysis, the apparatus comprising:a parallel reactor comprising a plurality of reaction sites, each of the plurality of reaction sites being adapted for containing a different candidate catalyst, the reactor being adapted such that the plurality of candidate catalysts can be simultaneously contacted with one or more reactants under reaction conditions, and a detector for determining the relative efficacy of the plurality of candidate catalyst formulations, characterized in that the detector is a parallel detector adapated for simultaneous analysis of the reactions, reaction products or unreacted reactants, and in that: (i) the detector comprises means adpated to observe the heat liberated or absorbed during the course of the reactions catalyzed by the plurality of candidate catalysts, the means being selected from (a) an infrared camera for observing radiation emitted from or absorbed by the reactions through one or more infra-red transparent windows, or (b) temperature sensors arranged for determining the temperature of the reactions, or (ii) the parallel detector comprises spectrometers or chromatographs for simultaneously analyzing the reaction products or unreacted reactants of the reactions catalyzed by the plurality of candidate catalysts using spectroscopy or chromatography, respectively.
  10. 43
    44. The apparatus of any one of claims 36 to 43 wherein the parallel reactor is a parallel batch reactor.
  11. 44
    45. The apparatus of any one of claims 36 to 44 wherein the parallel reactor is a parallel flow reactor.
  12. 45
    46. The apparatus of any one of claims 36 to 45 wherein the reactor is a parallel flow reactor further comprising a fluid distribution system for providing uniform flow of the reactantcontaining stream through each of the plurality of reaction channels.
  13. 50
    51. The apparatus of any one of claims 36 to 50 wherein the reactor is adapted for providing reaction conditions that include a temperature greater than 100°C, and additionally, or alternatively, a pressure of greater than 1 bar.
  14. 51
    52. The apparatus of any one of claims 36 to 51 wherein the parallel detector comprises an infrared-sensitive camera, Raman spectrometer, FTIR spectrometer, gas chromatograph or liquid chromatograph. CA 02247259 2002-06-24