CHEMICAL RECYCLING OF PLASTIC-DERIVED STREAMS TO A CRACKER SEPARATION ZONE
Methods and systems are provided for the conversion of waste plastics into various useful downstream recycle-content products. More particularly, the present system and method involves integrating a pyrolysis facility with a cracker facility by introducing at least a stream of r-pyrolysis gas into the cracker facility. In the cracker facility, the r-pyrolysis gas may be separated to form one or more recycle content products, and can enhance the operation of the facility.
1 - 10 . (canceled)
11 . A method for making an olefin product, said method comprising:
(a) introducing a column feed stream comprising alkanes and olefins into a dealkanizer column, wherein said column feed stream comprises a recycle content pyrolysis gas (r-pyrolysis gas); and
(b) separating said column feed stream into an overhead stream enriched in a target alkane and a bottoms stream depleted in said target alkane, wherein at least one of said overhead stream and said bottom stream comprises at least 5 weight percent olefin, based on the total weight of said stream.
12 - 20 . (canceled)
21 . The method of claim 11 , wherein the dealkanizer column is a demethanizer column.
22 . The method of claim 11 , wherein the dealkanizer column is a deethanizer column.
23 . The method of claim 11 , wherein the dealkanizer column is a depropanizer column.
24 . The method of claim 11 , wherein the recycle content pyrolysis gas has a methane content of 5 to 50 weight percent.
25 . The method of claim 11 , wherein the pyrolysis gas has a C3 hydrocarbon content in the range of 1 to 50 weight percent.
26 . The method of claim 11 , wherein the pyrolysis gas has a C4 hydrocarbon content in the range of 1 to 50 weight percent.
27 . The method of claim 11 , wherein the pyrolysis gas has a combined C3 and C4 hydrocarbon content in the range of 5 to 90 weight percent.
28 . the method of claim 11 , wherein the pyrolysis gas is produced from mixed plastic waste.
29 . The method of claim 11 , wherein the r-pyrolysis gas comprises: at least 20 and/or not more than 75 weight percent of ethylene and/or propylene, at least 5 and/or not more than 50 weight percent of ethane and/or propane, at least 5 and/or not more than 60 weight percent of methane, an ethylene to ethane weight ratio or propylene to propane weight ratio of at least 1:1 and/or not more than 3:1, and at least one of the following properties (i) through (ix):
(i) C4 hydrocarbons in an amount of not more than 20 weight percent; (ii) hydrogen in an amount of not more than 10 weight percent; (iii) C3+ diolefins in an amount of not more than 10 weight percent; (iv) C4+ olefins in an amount of not more than 10 weight percent; (v) C4 paraffins in an amount of not more than 5 weight percent; (vi) halogens in an amount of not more than 1 ppm; (v) carbonyls in an amount of not more than 100 ppm; (vi) carbon dioxide in an amount of not more than 100 ppm; (vii) carbon monoxide in an amount of not more than 2500 ppm; (viii) arsine and/or phosphine in an amount of not more than 15 ppb; and (ix) sulfur-containing compounds in an amount of not more than 100 ppm, wherein each of the above quantities are in amounts by weight, based on the total weight of the composition