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Key Documents

76509

Supelco

Pentadecane

analytical standard

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About This Item

Formula condensata:
CH3(CH2)13CH3
Numero CAS:
Peso molecolare:
212.41
Beilstein:
1698194
Numero CE:
Numero MDL:
Codice UNSPSC:
41116107
ID PubChem:
NACRES:
NA.24

Grado

analytical standard

Livello qualitativo

Densità del vapore

7.4 (vs air)

Tensione di vapore

1 mmHg ( 91.6 °C)

Saggio

≥99.8% (GC)

Durata

limited shelf life, expiry date on the label

Limite di esplosione

6.5 %

tecniche

HPLC: suitable
gas chromatography (GC): suitable

Indice di rifrazione

n20/D 1.431 (lit.)
n20/D 1.431

P. eboll.

270 °C (lit.)

Punto di fusione

8-10 °C (lit.)

Temp. transizione

solidification point 8.5-10 °C

Densità

0.769 g/mL at 25 °C (lit.)

applicazioni

cleaning products
cosmetics
flavors and fragrances
food and beverages
personal care

Formato

neat

Stringa SMILE

CCCCCCCCCCCCCCC

InChI

1S/C15H32/c1-3-5-7-9-11-13-15-14-12-10-8-6-4-2/h3-15H2,1-2H3
YCOZIPAWZNQLMR-UHFFFAOYSA-N

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Descrizione generale

Pentadecane is a hydrocarbon, which is found to be highly viscous in nature. It is formed as a decomposition product of glycidyl palmitate of fatty acid, when subjected to heating in the temperature range of 180-200°C.
Pentadecane, belonging to the class of aliphatic hydrocarbons, is identified as a volatile flavor component in roasted pork of Mini-pig, Yerba mate, Milano salami, virgin high density polyethylene (HDPE), etc. It plays an important role as a chemical intermediate for producing a variety of products, solvents and as a component of gasoline and diesel fuel. Pentadecane is also determined as an aroma component in unifloral Greek citrus honey, Niva cheese, cooked black rice, etc.

Applicazioni

Pentadecane has been used as an analytical reference standard for the quantification of the analyte in gasoline samples using gas chromatography technique. It may be used as an analytical reference standard for the quantification of the analyte in:
  • Roasted pork of Mini-pig using gas chromatography and mass spectrometry (GC–MS).
  • Yerba mate using gas chromatography–mass spectrometry (GC–MS) and gas chromatography–olfactometry (GC–O).
  • Milano salami using gas chromatography with mass spectrometry (GC-MS), flame ionization detection (GC-FID) and olfactometry analysis (GC-O).

Pentadecane may be used as a phase change material, in combination with capric acid and lauric acid, and their thermal behaviour can be studied by using differential scanning colorimetry (DSC).
Refer to the product′s Certificate of Analysis for more information on a suitable instrument technique. Contact Technical Service for further support.

Prodotti consigliati

Find a digital Reference Material for this product available on our online platform ChemisTwin® for NMR. You can use this digital equivalent on ChemisTwin® for your sample identity confirmation and compound quantification (with digital external standard). An NMR spectrum of this substance can be viewed and an online comparison against your sample can be performed with a few mouseclicks. Learn more here and start your free trial.

Pittogrammi

Health hazard

Avvertenze

Danger

Indicazioni di pericolo

Classi di pericolo

Asp. Tox. 1

Rischi supp

Codice della classe di stoccaggio

10 - Combustible liquids

Classe di pericolosità dell'acqua (WGK)

WGK 1

Punto d’infiammabilità (°F)

219.2 °F - closed cup

Punto d’infiammabilità (°C)

104 °C - closed cup

Dispositivi di protezione individuale

Eyeshields, Gloves


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Certificati d'analisi (COA)

Lot/Batch Number

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Agarwal R et al.
The Ultimate BMAT Guide: 800 Questions (2017)
Decomposition products of glycidyl esters of fatty acids by heating
Kimura W and Endo Y
Bioscience, Biotechnology, and Biochemistry, 81(3), 581-586 (2017)
The capric?lauric acid and pentadecane combination as phase change material for cooling applications
Dimaano.RNM and Watanabe T
Applied Thermal Engineering, 22(4), 365-377 (2002)
Volatile compounds of commercial Milano salami
Meynier A, et al.
Meat Science, 51(2), 175-183 (1999)
Steven S Cox et al.
Environmental science & technology, 36(4), 709-714 (2002-03-07)
A model for predicting the rate at which a volatile organic compound (VOC) is emitted from a diffusion-controlled material is validated for three contaminants (n-pentadecane, n-tetradecane, and phenol) found in vinyl flooring (VF). Model parameters are the initial VOC concentration

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