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n-Heptadecane

CAS 629-78-7C17H36MW 240.5

n-Heptadecane (CAS No. 629-78-7) is supplied by Jinan Shenghe Chemical Co., Ltd. with a typical purity of 按批次COA提供(不公开发布). Main applications include Organic Chemicals. Bulk quantities are available with COA; purity and packaging are subject to batch COA and order confirmation.

Specifications

CAS Number629-78-7
Molecular FormulaC17H36
Molecular Weight240.5
Melting Point72 °F (NTP, 1992)
Boiling Point575.2 °F at 760 mmHg (NTP, 1992)
LogP8.8
Purity按批次COA提供(不公开发布)
Packaging按订单/批次确认(不公开发布)
ApplicationsOrganic Chemicals
CategoryOrganic Chemicals

Where it is used

Organic Chemicals

Packaging & Supply

Packaging按订单/批次确认(不公开发布)
Purity按批次COA提供(不公开发布)
StorageSealed, cool and dry place
Lead TimeIn stock / per order

Documents & Support

COA provided with every batch; MSDS and technical documents available on request. Email us with product name and CAS number for a quote within one business day.

Frequently Asked Questions

What is the CAS number of n-Heptadecane?

The CAS number of n-Heptadecane is 629-78-7.

What purity and packaging are available?

Typical purity is 按批次COA提供(不公开发布), supplied in 按订单/批次确认(不公开发布), with COA provided.

What are the applications of n-Heptadecane?

Main applications include Organic Chemicals.

How do I buy n-Heptadecane or get a quote?

Email info@591daili.com or reach us on WhatsApp with the product name, CAS number and required quantity; quotes within one business day. Supplier: Jinan Shenghe Chemical Co., Ltd..

PubChem Public Data

Description

n-Heptadecane · CAS 629-78-7 · C17H36. UNII H7C0J39XUM. Boiling Point: 575.2 °F at 760 mmHg (NTP, 1992); Boiling Point: 303 °C; Melting Point: 72 °F (NTP, 1992).

Identification

CAS Registry Number629-78-7
PubChem CID12398
Molecular formulaC17H36
IUPAC nameheptadecane
UNII (FDA)H7C0J39XUM

Computed Descriptors

Molecular Weight240.5
XLogP38.8
Hydrogen Bond Donor Count0
Hydrogen Bond Acceptor Count0
Rotatable Bond Count14
Exact Mass240.281701148
Monoisotopic Mass240.281701148
Topological Polar Surface Area0
Heavy Atom Count17
Formal Charge0

Physical & Chemical Properties

Boiling Point575.2 °F at 760 mmHg (NTP, 1992)
Boiling Point303 °C
Melting Point72 °F (NTP, 1992)
Melting Point21.97 °C
Flash Point149 °C (300 °F) - closed cup
SolubilityIn water, 2.3X10-3 mg/L at 25 °C
Density0.7780 g/cu cm at 20 °C
Vapor Density8.3 (Air = 1)
Vapor Pressure0.000228 [mmHg]
Vapor Pressure2.28X10-4 mm Hg at 25 °C

Physical description & handling notes

  • Hexagonal leafs. (NTP, 1992)
  • Solid; mp = 22 deg C; [CAMEO] Colorless liquid; mp = 20-22 deg C; [Sigma-Aldrich MSDS]
  • Hexagonal leaflets
  • Leaflets
  • Colorless liquid
  • Fuel-like

Regulatory Status

GHS notification summary14.5% (59 / 408)

GHS Hazard Classification

GHS notification summary14.5% (59 / 408)
Reported hazard statementsH304 (84.6%)

This chemical does not meet GHS hazard criteria for 14.5% (59 of 408) of reports.

H304 (84.6%): May be fatal if swallowed and enters airways [Danger Aspiration hazard]

Documented Uses

  • They are used mainly in applications for which isoalkanes are not acceptable for biological reasons, e.g., the production of detergents or proteins. /Higher n-Alkanes/
  • Solid n-alkanes (paraffin waxes) are used in a variety of applications, e.g., ... oxidation, and chlorination reactions. /Higher n-Alkanes/
  • Heptadecane ... /is/ used as stock for hydrocracking processes.
  • The liquefaction of coal provides the greatest variety of saturated hydrocarbons. The Fischer-Tropsch synthesis produces alkanes from syngas (CO + H2) in the range C1 to C30 or higher depending on the process variant: depending on the catalyst employed, the synthesis yields predominantly liquid hydrocarbons in the gasoline range, along with gases from C1 to C4 when iron-based catalysts are used, while cobalt-based catalysts produce longer chain hydrocarbons in the diesel and wax range that often undergo, depending
  • Suitable sources for n-alkanes with more than six carbon atoms are the appropriate petroleum distillate fractions, from which the n-paraffins can be isolated in high isomeric purity (= 95% linearity) by selective separation techniques, especially fractional distillation. /Higher n-Alkanes/
  • Gas-phase dehydrogenation of n-alkanes over noble-metal catalysts yield the corresponding n-alkenes at low conversion rates (ca. 10%) with predominantly internal double bonds. The corresponding alkenes can be isolated in high purity by selective molecular-sieve processes. /Higher n-Alkanes/

Synonyms

HEPTADECANE; n-Heptadecane; 629-78-7; DTXSID7047061; H7C0J39XUM; NSC-172782; DTXCID5027061; CHEBI:16148; RefChem:145618; 211-108-4; Heptadekan; MFCD00009002; Hexadecane, methyl-; Heptadecane, analytical standard; EINECS 211-108-4; C17H36

Frequently Asked Questions

What are the CAS number and molecular formula of n-Heptadecane?

CAS 629-78-7; molecular formula C17H36; molecular weight — g/mol.

What other names is n-Heptadecane known by?

HEPTADECANE, n-Heptadecane, 629-78-7, DTXSID7047061, H7C0J39XUM, NSC-172782.

Is n-Heptadecane classified as hazardous?

14.5% of GHS notifications report no hazard classification (59 of 408).

What are the key physical properties of n-Heptadecane?

Boiling Point: 575.2 °F at 760 mmHg (NTP, 1992); Boiling Point: 303 °C; Melting Point: 72 °F (NTP, 1992); Melting Point: 21.97 °C.

Facts on this page are taken from PubChem (US National Library of Medicine) and Wikidata. Grade-specific data — assay, moisture, particle size, packaging, shelf life — is issued per batch on the COA and is not published here.

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