Claims
- 1. A polymerization process comprising contacting at least one mono-1-olefin under polymerization conditions with a catalyst and a cocatalyst, wherein said catalyst is produced by contacting alumina with a fluoriding agent to produce a fluorided alumina and subjecting said alumina to a silicating treatment to form a surface silicated and fluorided alumina, said surface silicated and fluorided alumina containing, in addition a chromium component, the resulting composition being activated by heating in an oxygen-containing ambient at a temperature within the range of about 300.degree. to about 900.degree. C. so as to convert at least a portion of the chromium of said chromium component to the hexavalent state.
- 2. A method according to claim 1 wherein said silicating treatment comprises contacting said alumina with a polymeric siloxane after said contacting with said fluoriding agent and calcining in air at about 500.degree. to about 800.degree. C. to convert the siloxane to silica on the surface of the alumina.
- 3. A polymerization process comprising contacting at least one mono-1-olefin with a catalyst produced by subjecting alumina to a treatment with a fluoriding agent, thereafter activating at a temperature of about 150.degree. to about 1000.degree. C. and thereafter introducing an organochromium component onto said alumina to produce said catalysts;
- wherein said alumina is also subjected to a silicating treatment prior to said activating; and
- wherein said organochromium component is selected from:
- chromium compounds of the formula (I) or (II)
- Cr(R).sub.n (I)
- Cr.sub.x (R).sub.2x (II)
- wherein n is 3 or 4; x is 3 or more; R is --CH.sub.2 MR'R"R'"; wherein M is C, Si, Ge, Sn or Pb; and wherein in a given compound the R groups are identical and R', R", and R'" are the same or different hydrocarbyl groups selected from aliphatic and aromatic radicals containing up to about 10 carbon atoms per radical; bis(cyclopentadienyl)chromium and substituted derivatives thereof; and pi bonded zerovalent organochromium compounds.
- 4. A method according to claim 3 wherein said alumina is admixed with an alcoholic solution of NH.sub.4 HF.sub.2 and polymeric siloxane.
- 5. A method according to claim 4 wherein said fluoriding agent is present in an amount sufficient to give 0.3 to 3 weight percent fluorine on said alumina based on the weight of said alumina.
- 6. A polymerization process comprising contacting at least one mono-1-olefin with a catalyst produced by subjecting alumina to a treatment with a fluoriding agent, thereafter activating at a temperature of about 150.degree. to about 1000.degree. C. and thereafter introducing at least two organochromium components onto said alumina to produce said catalyst;
- wherein said alumina is also subjected to a silicating treatment prior to said activating; and
- wherein said organochromium components are selected from octakis-(.mu.-trimethylsilylmethyl)tetra)-chromium(II), tetrakis-(trimethylsilylmethyl)chromium(IV), bis(cyclopentadienyl)chromium and dicumene chromium.
- 7. A polymerization process comprising contacting ethylene with a chromium catalyst on a support produced by impregnating alumina with a liquid containing a source of phosphate ions and at least one aluminum salt and thereafter contacting with a neutralizing agent to form a gel of aluminum phosphate within the pores of said alumina and activating in air at about 300.degree. to about 900.degree. C., to give an ethylene polymer having environmental stress crack resistance of greater than 1,000 hours;
- wherein said support is prepared by mixing alumina with a solution contacting Al(NO.sub.3).sub.3.9H.sub.2 O, NH.sub.4 H.sub.2 PO.sub.4 and Cr(NO.sub.3).sub.3.9H.sub.2 O in an amount equal to or less than the pore volume of the alumina, adding aluminum hydroxide to cause a gel to form within the pores of the alumina; and
- wherein said alumina has been modified by the addition of ammonium bifluoride and silica.
CROSS REFERENCE TO RELATED APPLICATIONS
This is a divisional of copending application Ser. No. 615,001, filed May 29, 1984, now U.S. Pat. No. 4,806,513.
US Referenced Citations (11)
Foreign Referenced Citations (2)
Number |
Date |
Country |
5334705 |
Mar 1978 |
JPX |
1314784 |
Apr 1973 |
GBX |
Non-Patent Literature Citations (1)
Entry |
Chem. Abs., 550, 87:84531f (1977). |
Divisions (1)
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Number |
Date |
Country |
Parent |
615001 |
May 1984 |
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