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Lubricant base oils with optimized branching

Inactive Publication Date: 2005-04-14
CHEVROU USA INC
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

In yet another aspect, the present invention relates to a finished lubricant. The finished lubricant comprises the lubricant base oils as described herein and one or more lubricant additives.
In a further aspect, the present inv

Problems solved by technology

However, normal paraffins, in particular, are waxy in character, and contribute to a high pour point in the oil.
Accordingly, the products resulting from hydroisomerization processes typically have less than optimal viscosity indexes due to the relatively high amount of branching.
Nonetheless, in prior art methods using this technique, considerable branching is still created.

Method used

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  • Lubricant base oils with optimized branching
  • Lubricant base oils with optimized branching

Examples

Experimental program
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Effect test

example 1

Example 1 produced a lubricant base oil made from n-C28 feed (purchased from Aldrich) using a Pt / SSZ-32 catalyst (0.3 wt % Pt) bound with 35 wt % Catapal alumina. The run was at 1000 psig, 0.8 LHSV, and 7 MSCF / bbl once-through H2. Reactor temperature was 575° F. The effluent from the reactor was subsequently passed over a Pt-Pd / SiO2-Al2O3 hydrofinishing catalyst at 450° F. and, other than temperature, the same conditions were used as in the isomerization reactor. The yield of 600° F.+product was 71.5 wt %. The conversion of the wax to 600° F.—boiling range material was 28.5 wt %. The conversion below 700° F. was 33.6 wt %. The bottoms fraction from the run (75.2 wt %) was cut at 743° F. to give 89.2 wt % bottoms (67.1 wt % on the whole feed). The properties of the hydroisomerized oil bottoms are summarized below in Table I:

TABLE IHydroisomerized Oil Bottoms PropertiesPour Point, ° C.+3NMR AnalysisC2 Branch0.26C3 Branch0.2C4 Branch0.26C5+ Branch0.97Internal Ethyl0.09Sum1.78NMR Bra...

example 2

An n-C36 feed (purchased from Aldrich) was isomerized over a Pt / SSZ-32 catalyst which contained 0.3% Pt and 35% Catapal alumina binder. Run conditions were 580° F., 1.0 LHSV, 1000 psig reactor pressure, and a once-through hydrogen rate of 7 MSCF / bbl. The reactor effluent passed directly to a second reactor, also at 1000 psig, which contained a Pt / Pd on silica-alumina hydrofinishing catalyst. Conditions in that reactor were a temperature of 450° F. and LHSV of 1.0. Conversion and yields were as summarized below in Table II:

TABLE IIConversion < 650° F., Wt %32.2Conversion < 700° F., Wt %34.4Yields, Wt %C1-C20.45C3-C45.16C5-180° F.6.22180-350° F.7.40350-650° F.13.23650° F.+68.09

The bottoms fraction from the run was isolated. The properties of the hydroisomerized oil bottoms are summarized below in Table IIII:

TABLE IIIHydroisomerized Stripper Bottoms PropertiesSim. Dist., LV %, ° F.IBP / 5677 / 74710 / 30801 / 9045091470 / 90920 / 92595 / FBP927 / 929Pour Point, ° C.+20

The stripper bot...

example 3

A hydrotreated Fischer-Tropsch wax was isomerized over a Pt / SSZ-32 catalyst, which contained 0.3% Pt and 35% Catapal alumina binder. Run conditions were 560° F., 1.0 LHSV, 300 psig reactor pressure, and a once-through hydrogen rate of 6 MSCF / bbl. The reactor effluent passed directly to a second reactor, also at 300 psig, which contained a Pt / Pd on silica-alumina hydrofinishing catalyst. Conditions in that reactor were a temperature of 450° F. and LHSV of 1.0. Properties of the hydrotreated Fischer-Tropsch wax are summarized below in Table IV. Conversion and yields, as well as the properties of the hydroisomerized stripper bottoms are summarized below in Table V.

TABLE IVInspections of Hydrotreated Fischer-Tropsch Wax (951-15-431)Gravity, API40.3Nitrogen, ppm1.6Total sulfur, ppm2Sim. Dist., Wt %, ° F.IBP / 5512 / 59110 / 30637 / 7085076470 / 90827 / 91195 / FBP 941 / 1047

TABLE VIsomerization of FT Wax over Pt / SSZ-32 at560° F., 1 LHSV, 300 psig, and 6 MSCF / bbl H2Conversion < 650° F., Wt %15.9C...

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Abstract

The present invention relates to lubricant base oils comprising paraffinic hydrocarbon components having optimized branching. These lubricant base oils comprising paraffinic hydrocarbon components with optimized branching have low amounts of branching overall with the branching concentrated toward the center of the lubricant base oil molecules. The present invention also relates to processes of producing these lubricant base oils from waxy feeds and commercial finished lubricants comprising these lubricant base oils.

Description

FIELD OF THE INVENTION This invention relates to lubricant base oils comprising paraffinic components that have optimized branching. The lubricant base oils comprising paraffinic components with optimized branching have low amounts of branching with the branching concentrated toward the center of the lubricant base oil molecules. The lubricant base oils comprising paraffinic components with optimized branching have low pour points and extremely high viscosity indexes. The invention further relates to processes of producing the lubricant base oils comprising paraffinic components with optimized branching from waxy feeds. The lubricant base oils are useful in commercial finished lubricants. BACKGROUND OF THE INVENTION High quality lubricants should be, and generally are, paraffinic in nature, since paraffins have a high viscosity index. However, normal paraffins, in particular, are waxy in character, and contribute to a high pour point in the oil. Accordingly, waxy paraffinic feeds ...

Claims

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Application Information

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IPC IPC(8): C10MC10M107/02C10M109/02C10M171/00C10M171/02
CPCC10M107/02C10M2205/173C10N2270/00C10N2220/028C10N2220/022C10N2020/02C10N2020/071C10N2070/00C10M171/00
Inventor MILLER, STEPHEN J.O'REAR, DENNIS J.ROSENBAUM, JOHN
Owner CHEVROU USA INC
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