Hydrogenated Polydecene
C30
![]() ![]() 1-Decene, homopolymer, hydrogenated ![]() ![]() ![]() » Hydrogenated Polydecene is a mixture of saturated, synthetic hydrocarbons in the range C30H62 through C70H142 made from direct oligomerization of 1-decene (C10 alpha olefin). The oligomer mixture may be distilled to fractions of a suitable calculated viscosity and hydrogenated to reach saturation, or it may be hydrogenated to reach saturation and then distilled to the desired viscosity. The requirements for specific gravity, viscosity, and content of decene oligomer differ for the various types of Hydrogenated Polydecene, as set forth in the accompanying table. Hydrogenated Polydecene may contain a suitable stabilizer.
Packaging and storage—
Preserve in tight containers. No storage requirements are specified.
Labeling—
Label it to indicate, as part of the official title, the Hydrogenated Polydecene type (Type I, Type II, or Type III), and label it to indicate the name and concentration of any added stabilizer.
Identification—
The chromatogram of the Test solution obtained from the test for Content of decene oligomer exhibits major peaks for trimers, tetramers, pentamers, hexamers, and possibly heptamers. The decene oligomer content is within the range given in the accompanying table for the labeled type of Hydrogenated Polydecene.
Specific gravity
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Viscosity
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Readily carbonizable substances
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Limit of nickel—
Nickel stock solution—
Immediately before use, dilute an appropriate quantity of organometallic standard1 with kerosene to prepare a solution containing the equivalent of 1.0 µg of nickel per mL.
Standard solutions—
Transfer 0.5, 1.0, 2.0, and 4.0 mL of Nickel stock solution, respectively, to four identical 10-mL volumetric flasks, dilute the contents of each flask with kerosene to volume, and mix. These Standard solutions contain, respectively, about 0.05, 0.1, 0.2, and 0.40 µg of nickel per mL. [note—The calibration range, especially the upper limit, can be adjusted for certain instruments, provided that instrument validation and calibration linearity are achieved.]
Test solution—
Transfer about 3 g of Hydrogenated Polydecene, accurately weighed, to a 10-mL volumetric flask, dilute with kerosene to volume, and mix. [note—If necessary, dilute with an appropriate quantity of kerosene to obtain a reading within the calibrated absorbance range.]
Procedure—
Place the Standard solutions and the Test solution in an oven, setting the temperature at about 60
![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() 10C / W
in which W is the weight, in g, of Hydrogenated Polydecene taken to prepare the Test solution: not more than 1 µg of nickel per g is found.
Limit of short-chain hydrocarbons—
Test solution, System suitability solution, Chromatographic system, and Procedure—
Proceed as directed in the test for Content of decene oligomer. Calculate the percentage of each of the short-chain hydrocarbons present by the formula:
100(rU / rs)
in which rU is the response of any peak obtained from a peak eluting before the trimer but different from the solvent peak; and rs is the sum of the responses of all the peaks in the chromatogram, excluding the solvent peak: not more than 2.5% of total short-chain hydrocarbons is found.
Content of decene oligomer—
Test solution—
Dissolve about 0.1 mL of Hydrogenated Polydecene in about 10 mL of pentane.
System suitability solution—
Dissolve accurately weighed quantities of hexadecane, squalane, and tetradecane in pentane to obtain a solution having known concentrations of about 10 mg per mL, 10 mg per mL, and 1 mg per mL, respectively.
Chromatographic system (see Chromatography
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Procedure—
Inject a volume (about 2 µL) of the Test solution into the chromatograph, record the chromatogram, and measure the areas for the major peaks. [note—For information purposes only, the tetramer oligomer has a retention time of about 23 minutes. The trimer, pentamer, hexamer, and heptamer oligomers, if present, have relative retention times of about 0.8, 1.1, 1.3, and 1.4, respectively, relative to the tetramer.] Calculate the percentage of each oligomer present by the formula:
100(rO / rs)
in which rO is the response of each oligomer; and rs is the sum of the responses of all the peaks in the chromatogram, excluding the solvent peak: the decene oligomer content is within the limits specified in the accompanying table.
1
Suitable organometallic standards are available from, e.g., Continental Oil Co., Ponca City, OK (Conostan, 100 ppm), or Merck, D-6100 Darmstadt, Germany (metal in standard oil, 1000 ppm).
Auxiliary Information—
Please check for your question in the FAQs before contacting USP.
Chromatographic Column—
USP32–NF27 Page 1304
Pharmacopeial Forum: Volume No. 34(5) Page 1227
Chromatographic columns text is not derived from, and not part of, USP 32 or NF 27.
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