US2022402188A1PendingUtilityA1

Polymer recyclate processes and products

Assignee: EQUISTAR CHEM LPPriority: Jun 22, 2021Filed: Jun 21, 2022Published: Dec 22, 2022
Est. expiryJun 22, 2041(~14.9 yrs left)· nominal 20-yr term from priority
B29K 2023/0641C08L 23/10C08L 23/06C08J 11/12C08J 2323/06B29K 2105/26B29K 2023/0658C08L 2023/42B29C 2948/92704C08F 2810/10C08L 2207/20B29K 2023/0625C08J 2323/08C08L 23/04B29C 48/022B29K 2023/065C08L 23/12B29C 48/802B29K 2023/12C08F 8/50B29K 2023/0633C08J 11/16C10G 9/007C08F 6/10Y02P20/143C08L 2207/066C08L 2207/062C08J 2423/12C08J 2423/06C08J 2323/12C08L 2205/025C08J 11/10C08J 5/18C08L 23/0815C08L 23/16B29C 48/08Y02W30/62B29B 11/10
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Claims

Abstract

Methods for processing LLDPE recyclates including, but not limited to, polyethylene and polypropylene and compositions therefrom are provided. LLDPE recyclate can be visbroken to improve processing characteristics and/or devolatilized to remove waste byproducts to produce processed LLDPE recyclates. Processed LLDPE recyclates are compounded with pre-consumer polyolefins to produce blend compositions having acceptable or even improved processing characteristics. Such pre-consumer polyolefins can also be visbroken to further tailor processing characteristics of such polymer blends. A combination of extruders and/or extruder zones can be used at the same or different locations for visbreaking and/or compounding of both LLDPE recyclate and/or pre-consumer polyolefins.

Claims

exact text as granted — not AI-modified
What is claimed is: 
     
         1 . A method for processing linear low density polyethylene (LLDPE) recyclate comprising:
 a. providing a LLDPE recyclate feedstock having:
 i) a first density in the range of from 0.910 g/cm 3  to 0.940 g/cm 3 ; 
 ii) a first melt index (I 2 ) less than or equal to 5.0 g/10 min; 
 iii) a first molecular weight distribution (M w /M 1 ) greater than 5.0; 
 iv) a first weight average molecular weight (“M w1 ”) greater than or equal to 85,000 daltons; and 
 v) a first melt elasticity (“ER”) greater than or equal to 0.5; 
   b. adding the LLDPE recyclate to a first extruder to produce a first LLDPE recyclate melt; and   c. subjecting the first LLDPE recyclate melt to visbreaking conditions to produce a second LLDPE recyclate melt having:
 i) a second density, wherein the ratio of the second density to the first density is greater than or equal to 1.0; 
 ii) a second melt index, wherein the ratio of the second melt index to the first melt index is greater than or equal to 5.0; 
 iii) a second molecular weight distribution, wherein the ratio of second molecular weight distribution to the first molecular weight distribution is less than or equal to 0.8; 
 iv) a second weight average molecular weight (“M w2 ”), wherein M w2 /M w1  is less than or equal to 0.90; and 
 v) a second melt elasticity, wherein the ratio of the second melt elasticity to the first melt elasticity is less than or equal to 0.50 and/or the second melt elasticity is less than 0.5. 
   
     
     
         2 . The method of  claim 1 , wherein the LLDPE recyclate feedstock comprises post-consumer recycled waste, post-industrial recycled waste, or a combination thereof. 
     
     
         3 . The method of  claim 1 , wherein the visbreaking conditions consist of thermal visbreaking. 
     
     
         4 . The method of  claim 3 , wherein thermal visbreaking is performed at a temperature greater than or equal to 300° C. 
     
     
         5 . The method of  claim 1 , further comprise further subjecting the first LLDPE recyclate melt to devolatilization conditions to produce the second LLDPE recyclate melt wherein:
 the LLDPE recyclate feedstock has a first volatile organic compound content;   the first LLDPE recyclate melt has a second volatile organic compound content; and   the ratio of the second volatile organic compound content to the first volatile organic compound content is less than or equal to 0.9.   
     
     
         6 . The method of  claim 5 , wherein devolatilization conditions comprise injection and withdrawal of a scavenging gas. 
     
     
         7 . The method of  claim 1 , wherein the method is characterized by one or more of the following:
 i) the LLDPE recyclate feedstock has a first high load melt index (I 21 ), the second LLDPE recyclate melt has a second high load melt index, and the ratio of the second high load melt index to the first high load melt index is greater than or equal to 2.0;   ii) the LLDPE recyclate feedstock has a first melt index ratio (I 21 /I 2 ), the second LLDPE recyclate melt has a second melt index ratio, and the ratio of the second melt index ratio to the first melt index ratio is less than or equal to 0.90;   iii) the LLDPE recyclate feedstock has a first long chain branching parameter (g′) in the range from 0.85 to 1.00, the second LLDPE recyclate melt has a second g′, and the ratio of the second g′ to the first g′ is less than or equal to 1.0;   iv) the LLDPE recyclate feedstock has a first long chain branching index (“LCBI”) less than or equal to 0, and the second LLDPE recyclate melt has a second LCBI”) greater than 0;   v) the LLDPE recyclate feedstock has an overall polydispersity measure (“PDR”), the second LLDPE recyclate melt has a second PDR, and the ratio of the second PDR to the first PDR is less than or equal to 0.90;   vi) the LLDPE recyclate feedstock has a first complex viscosity ratio, the second LLDPE recyclate melt has a second complex viscosity ratio, and the ratio of the second complex viscosity ratio to the first complex viscosity ratio is less than or equal to 0.70, and/or the second complex viscosity ratio is less than or equal to 3.0; and   vii) the LLDPE recyclate feedstock has a first intrinsic viscosity, the second LLDPE recyclate melt has a second intrinsic viscosity, and the ratio of the second intrinsic viscosity to the first intrinsic viscosity is less than or equal to 0.90.   
     
     
         8 . The method of  claim 1 , wherein a LLDPE recyclate product is formed by withdrawal of the second LLDPE recyclate melt from the first extruder for further processing or pelletizing of the second LLDPE recyclate melt. 
     
     
         9 . The method of  claim 8 , further comprising:
 adding the LLDPE recyclate product and a first polyolefin blend component to a second extruder; and   effecting compounding conditions in the second extruder to form a polyolefin product comprising the melt-blended mixture of the processed LLDPE recyclate product and the first polyolefin blend component.   
     
     
         10 . The method of  claim 9 , wherein the first polyolefin blend component comprises a virgin polyolefin, a polyolefin recyclate feedstock, a processed polyolefin recyclate, or a combination thereof. 
     
     
         11 . The composition of  claim 10 , wherein:
 a. the virgin polyolefin comprises a virgin LDPE, a virgin LLDPE, a virgin HDPE, a virgin MDPE, a virgin polypropylene, or a combination thereof,   b. the polyolefin recyclate feedstock comprises a LDPE recyclate feedstock, a LLDPE recyclate feedstock, a HDPE recyclate feedstock, a MDPE recyclate feedstock, a polypropylene recyclate feedstock, or a combination thereof, and   c. the processed polyolefin recyclate comprises a processed LDPE recyclate, a second processed LLDPE recyclate, a processed HDPE recyclate, a processed MDPE recyclate, a processed polypropylene recyclate, or a combination thereof.   
     
     
         12 . The method of  claim 11 , wherein the first polyolefin blend component comprises a virgin LLDPE, a LLDPE recyclate feedstock, a processed LLDPE recyclate, or a combination thereof. 
     
     
         13 . The method of  claim 9 , wherein the LLDPE recyclate product is added in an amount in the range of from 5 wt. % to 90 wt. % based on the combined weight of the LLDPE recyclate product and the first polyolefin blend component. 
     
     
         14 . The method of  claim 9 , wherein the compounding conditions include a temperature less than or equal to 300° C. 
     
     
         15 . The method of  claim 9 , further comprising:
 adding a second polyolefin blend component to a third extruder;   effecting melt conditions in the third extruder to produce a second polyolefin blend component melt; and   withdrawing the second polyolefin blend component melt as the first polyolefin blend component.   
     
     
         16 . The method of  claim 15 , wherein the second blend component comprises a virgin LLDPE, a LLDPE recyclate feedstock, a processed LLDPE recyclate, or a combination thereof. 
     
     
         17 . A composition comprising a polymer blend of:
 a. a first polymer, wherein the first polymer:
 i) is a first processed LLDPE recyclate; and 
 ii) is present in an amount in the range of from 5 wt. % to 90 wt. %; and 
   b. a second polymer, wherein the second polymer:
 i) is a virgin polyolefin, a polyolefin recyclate feedstock, a processed polyolefin recyclate, or a combination thereof; and 
 ii) is present in an amount in the range of from 10 wt. % to 95 wt. %; 
   wherein all weight percentages are based on the combined weight of the first and second polymers.   
     
     
         18 . The composition of  claim 17 , wherein:
 a. the virgin polyolefin comprises a virgin LDPE, a virgin LLDPE, a virgin HDPE, a virgin MDPE, a virgin polypropylene, or a combination thereof;   b. the polyolefin recyclate feedstock comprises a LDPE recyclate feedstock, a LLDPE recyclate feedstock, a HDPE recyclate feedstock, a MDPE recyclate feedstock, a polypropylene recyclate feedstock, or a combination thereof; and   c. the processed polyolefin recyclate comprises a processed LDPE recyclate, a second processed LLDPE recyclate, a processed HDPE recyclate, a processed MDPE recyclate, a processed polypropylene recyclate, or a combination thereof.   
     
     
         19 . The composition of  claim 17 , wherein processed means subjected to thermal visbreaking and optionally subjected to devolatilization. 
     
     
         20 . A blend comprising:
 a visbroken LLDPE, having a first I 2 ; and   a virgin LLDPE, a LLDPE recyclate feedstock, a processed LLDPE recyclate, or a combination thereof, having a second I 2 ;   wherein:   
       
         
           
             
               
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           n is the number of components in the blend; and 
           i is the i-th component of an n-component blend.

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