IP Library Granted Patent US 10,731,080
Granted Patent B1
US 10,731,080 · App. 16/388,706 · Granted Aug 4, 2020

Systems and methods for recycling waste plastics, including waste polystyrene

Inventors: Barry Cavinaw (Wilsonville, OR); Sean Crawford (Tigard, OR); Sebastien Lamaze (Tigard, OR); David Allen (Portland, OR); Eric Christenson (Tualatin, OR); Mark Rumford (Tigard, OR)
Assignee: Agilyx Corporation
C10B7/06C07C4/22C08J11/00C10B53/07C10G1/02C10G1/10C10G2300/1003
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,731,080
App. No.
16/388,706
Granted
Aug 4, 2020
Kind
B1
Abstract

Systems and methods for recycling waste plastics are provided, including a system for recovering styrene monomer from waste polystyrene. The system includes a mixing, heating and compacting apparatus to receive a supply of waste polystyrene and to output a densified polystyrene containing melt; a pyrolysis reactor configured to receive the densified polystyrene containing melt and a supply of recycled oligomers, pyrolyze the densified polystyrene containing melt and the recycled oligomers, and output a hydrocarbon gas stream and a solids residue stream; a quenching apparatus configured to receive the hydrocarbon gas stream output from the pyrolysis reactor and condense out oligomers for routing upstream to the pyrolysis reactor to be combined as the supply of recycled oligomers with the densified polystyrene containing melt, and to discharge an altered hydrocarbon gas stream for further processing; and a condenser configured to receive the altered hydrocarbon gas stream from the quenching apparatus and condense out styrene to form a styrene monomer oil product.

Claims (14)

1. A system for recovering styrene monomer from waste polystyrene, the system comprising:

a mixing, heating and compacting apparatus to receive a supply of waste polystyrene and to output a densified polystyrene containing melt;

a pyrolysis reactor configured to receive the densified polystyrene containing melt and a supply of recycled oligomers, pyrolyze the densified polystyrene containing melt and recycled oligomers, and output a hydrocarbon gas stream and a solids residue stream;

a quenching apparatus configured to receive the hydrocarbon gas stream output from the pyrolysis reactor and condense out oligomers for routing upstream to the pyrolysis reactor to be combined as the supply of recycled oligomers with the densified polystyrene containing melt, and to discharge an altered hydrocarbon gas stream;

a primary condenser configured to receive the altered hydrocarbon gas stream from the quenching apparatus and condense out styrene to form a styrene monomer oil product and a discharged gas stream; and

a supplemental condenser configured to receive the discharged gas stream from the primary condenser, condense out a hydrocarbon fraction from the discharged gas stream, and direct a stream of hydrocarbons from the hydrocarbon fraction upstream to the quenching apparatus to assist in condensing out the oligomers from the hydrocarbon gas stream output from the pyrolysis reactor.

2. The system of claim 1 wherein the mixing, heating and compacting apparatus comprises a mixer that is configured to output a continuous stream of densified plastic melt for introduction into the pyrolysis reactor.

3. The system of claim 1 wherein the pyrolysis reactor comprises a dual screw feed mechanism configured to simultaneously transport and heat the densified polystyrene containing melt and recycled oligomers.

4. A system for recovering a monomer from waste polymer, the system comprising:

a mixing, heating and compacting apparatus to receive a supply of waste polymer and to output a densified polymer containing melt;

a pyrolysis reactor configured to receive the densified polymer containing melt and a supply of recycled oligomers, pyrolyze the densified polymer containing melt and recycled oligomers, and output a hydrocarbon gas stream and a solids residue stream;

a quenching apparatus configured to receive the hydrocarbon gas stream output from the pyrolysis reactor and condense out oligomers for routing upstream to the pyrolysis reactor to be combined as the supply of recycled oligomers with the densified polymer containing melt, and to discharge an altered hydrocarbon gas stream;

a primary condenser configured to receive the altered hydrocarbon gas stream from the quenching apparatus and condense out a monomer to form a monomer oil product and a discharged gas stream; and

a supplemental condenser configured to receive the discharged gas stream from the primary condenser, condense out a hydrocarbon fraction from the discharged gas stream, and direct a stream of hydrocarbons from the hydrocarbon fraction upstream to the quenching apparatus to assist in condensing out the oligomers from the hydrocarbon gas stream output from the pyrolysis reactor.

Assignments (2)
SECURITY INTEREST Recorded Dec 27, 2024
From: AGILYX CORPORATION
To: NORDIC TRUSTEE AS
Reel/Frame 069692/0083 →
TERMINATION OF SECURITY INTEREST Recorded Dec 27, 2024
From: NORDIC TRUSTEE AS
To: AGILYX CORPORATION
Reel/Frame 069792/0126 →
Continuity (2)
Continuation 15436541 · Feb 17, 2017
Provisional Application 62297723 · Feb 19, 2016