CA3089421C

Heavy oil upgrade process including recovery of spent catalyst

Abstract

A process to upgrade heavy oil and convert the heavy oil into lower boiling hydrocarbon products is provided. The process employs a catalyst slurry comprising catalyst particles with an average particle size ranging from 1 to 20 microns. In the upgrade process, spent slurry catalyst in heavy oil is generated as an effluent stream. In one aspect, the process further includes the recovery of spent catalyst by separating heavy oil from catalyst particles in the slurry. In one embodiment, slurry catalyst in heavy oil is combined with solvent to form a combined slurry- solvent stream. The combined slurry-solvent stream is filtered in a deoiling zone using membrane filtration. Hydrocarbons, i.e., solvent and residual heavy oil, can be subsequently separated from catalyst particles in a drying zone. Valuable metals can be recovered from catalyst particles for subsequent re-use in a catalyst synthesis unit, generating fresh slurry catalyst.

CA3089421C, drawing sheet 1
Sheet 1 of 18

Term

2.2 yearsleft in the term

Expires 19 December 2028.

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

16 claims: 6 independent, 10 dependent

  1. 1
    A process for separating heavy oil from catalyst particles, the process comprising:a) providing a feed stream comprising a mixture of 5 - 40 wt. % catalyst particles in heavy oil;b) adding a sufficient amount of non-aqueous solvent to the mixture of catalyst particles in heavy oil to reduce the heavy oil concentration at least 40%, thereby causing die mixture to separate into two phases: a) a top phase comprising a portion of the heavy oil and non-aqueous solvent;and b) a bottom phase comprising the catalyst particles, a portion of the non-aqueous solvent, a heavy oil concentration less than an initial heavy oil concentration in the feed stream;and c) recovering the bottom phase comprising catalyst particles in solvent and with a reduced heavy oil concentration.
  2. 11
    The process of any one of claims 5 to 10, wherein the first drying apparatus is selected from an indirect fired kiln, an indirect fired rotary kiln, an indirect fired dryer, an indirect fired rotary dryer, an electrically heated kiln, an electrically heated rotary kiln, a microwave heated kiln, a microwave heated rotary kiln, a vacuum dryer, a thin film dryer, a flexicoker, a fluid bed dryer, a shaft kiln dryer, a thin film dryer, a thin- film evaporator, a wiped film dryer, and a wiped-film evaporator.
  3. 12
    The process of any one of claims 5 to 11, wherein die first drying apparatus is a thin film dryer having a combined design with a first vertical section and a second horizontal section. -47Date reçue/Date received 2023-02-10
  4. 14
    The process of any one of claims 1 to 13, wherein the catalyst is recovered as dry powder containing less than 0.5 wt. % hydrocarbons.
  5. 15
    The process of any one of claims 1 to 14, wherein the catalyst particles have an average particle size ranging from 1 to 20 microns.
  6. 16
    The process of any one of claims 1 to 15, wherein the catalyst particles have an average particle size of less than 10 microns.