Polyolefins with low ash content and method of making same
A polymerization process includes contacting an olefin or a mixture of the olefin and one or more copolymerizable comonomers under polymerization conditions with a catalyst composition and forming a polymer with a total ash content of less than 15 ppm. The catalyst composition includes one or more polymerization catalysts; and a mixed external electron donor comprising a selectivity control agent comprising at least one silicon-containing compound containing at least one C1-C10 alkoxy group bonded to a silicon atom.
1. A polymerization process comprising:
contacting an olefin or a mixture of the olefin and one or more copolymerizable comonomers under polymerization conditions with a catalyst composition comprising:
one or more polymerization catalysts; and
a selectivity control agent comprising at least one silicon-containing compound containing at least one C1-C10 alkoxy group bonded to a silicon atom; and
forming a polymer with a total ash content of less than 5 ppm.
2. The process of claim 1 , wherein the catalyst composition comprises an aluminum-containing compound and a transition metal compound, wherein an aluminum to transition metal weight ratio is about 50 or less.
3. The process of claim 2 , wherein the aluminum to transition metal weight ratio is about 25 or less.
4. The process of claim 1 , wherein a catalyst productivity is between 200 and 500 ton/kg.
5. The process of claim 1 , wherein the polymer has at least one of the following: a titanium content of 30 to 300 ppb, a silicon content of 1 to 50 ppb, an aluminum content of 0.2 to 6 ppm, or a magnesium content of 0.1 to 1 ppm.
6. The process of claim 1 , wherein the olefin is propylene.
7. The process of claim 1 , wherein the polymer exhibits a melt flow from 0.5 g/10 min to 400 g/10 min, as measured in accordance with ASTM D-1238-01 at 230° C. with a 2.16 kg weight.
8. The process of claim 7 , wherein the melt flow is from 0.5 g/10 min to 6 g/10 min.
9. The process of claim 1 , wherein contacting the olefin or the mixture of the olefin and one or more copolymerizable comonomers under polymerization conditions occurs in a first polymerization reactor to form an active olefin-based polymer, and the process further comprises:
contacting, under polymerization conditions, the active olefin-based polymer with at least one olefin in a second polymerization reactor to form the polymer with a total ash content of less than 5 ppm.
10. The process of claim 1 , wherein the polymer is a wash-free propylene-based polymer.
11. The process of claim 1 , wherein the catalyst composition further comprises an amount of one or more agent compounds of C2-C13 mono- or polycarboxylic esters of aliphatic C2-C7 monocarboxylic acids and inertly substituted derivatives thereof.
12. A composition comprising a polyolefin and a total ash content of less than 5 ppm, and at least one of the following: a titanium content of 30 to 300 ppb, a silicon content of 1 to 50 ppb, an aluminum content of 0.2 to 6 ppm, or a magnesium content of 0.1 to 1 ppm.
13. An article comprising the composition of claim 12 .
14. A capacitor film comprising the composition of claim 12 .
15. A polypropylene homopolymer with a total ash content of less than 5 ppm and at least one of the following: a titanium content of 30 to 300 ppb, a silicon content of 1 to 50 ppb, an aluminum content of 0.2 to 6 ppm, or a magnesium content of 0.1 to 1 ppm.
16. A polymerization process comprising:
contacting an olefin or a mixture of the olefin and one or more copolymerizable comonomers under polymerization conditions with a catalyst composition comprising:
one or more polymerization catalysts having a catalyst productivity is between 200 and 500 ton/kg; and
a selectivity control agent comprising at least one silicon-containing compound containing at least one C1-C10 alkoxy group bonded to a silicon atom; and
forming a polymer with a total ash content of less than 15 ppm.