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CAS 112-39-0

CAS 112-39-0 matches 0 EU annex records across Annex II–VI of Regulation 1223/2009.

Chemical identity and properties

PubChem 2D chemical structure for CAS 112-39-0
CAS 112-39-0PubChem CID 8181

Methyl Palmitate

Methyl palmitate is a fatty acid methyl ester. It has a role as a metabolite. ChEBI

IUPAC name
methyl hexadecanoate
Molecular formula
C17H34O2
Molecular weight
270.5 g/mol
Exact mass
270.255880323 Da
XLogP3
7.9
Topological polar surface area
26.3 Ų
Hydrogen-bond donors
0
Hydrogen-bond acceptors
2
Covalent units
1
Defined stereocentres
0

Also known as

Palmitic acid methyl esterHexadecanoic acid, methyl esterMetholene 2216Palmitic acid, methyl esterMethyl n-hexadecanoateUniphat A60n-Hexadecanoic acid methyl esterDPY8VCM98I
16 more reported names
DUB PM COSNSC-4197AEC METHYL PALMITATERefChem:6025203-966-3Hexadecanoic acid methyl esterUNII-DPY8VCM98INSC 4197Methyl palmitic acidC16 FAMEhexadecanoic acid-methyl esterCHEBI:69187CS-D1457HY-N1482CAS-112-39-0P0006
External database identifiers

Evidence from additional scientific databases

NIH PubChem PUG-View
Exact identifier match8181

Attributed physical-property, hazard, environmental and use annotations.

  • Note: This chemical does not meet GHS hazard criteria for 5.9% (99 of 1667) of reports. Source: European Chemicals Agency (ECHA)
  • Signal: Warning Source: European Chemicals Agency (ECHA)
  • GHS Hazard Statements: H315 (82.7%): Causes skin irritation [Warning Skin corrosion/irritation]; H317 (13.6%): May cause an allergic skin reaction [Warning Sensitization, Skin] Source: European Chemicals Agency (ECHA)
  • Precautionary Statement Codes: P261, P264, P272, P280, P302+P352, P321, P332+P317, P333+P317, P362+P364, and P501 (click each P-code to see the statement) Source: European Chemicals Agency (ECHA)
  • ECHA C&L Notifications Summary: Aggregated GHS information provided per 1667 reports by companies from 5 notifications to the ECHA C&L Inventory. Each notification may be associated with multiple companies.; Reported as not meeting GHS hazard criteria per 99 of 1667 reports by companies.; There are 4 notifications provided by 1568 of 1667 reports by companies with hazard statement code(s).; Information may vary between notifications depending on impurities, additives, and other factors. The percentage value in parenthesis indicates the notified classification ratio from companies that provide hazard codes. Only hazard codes with percentage values above 10% are shown. For more detailed information, please visit ECHA C&L website. Source: European Chemicals Agency (ECHA)
  • Environmental Bioconcentration: An estimated BCF of 2 was calculated for methyl palmitate (SRC) using a log Kow of 7.38(1) and a regression-derived equation developed for hydrophobic chemicals(2). According to a classification scheme(3), the estimated BCF suggests the potential for bioconcentration in aquatic organisms is low. Source: Hazardous Substances Data Bank (HSDB)
  • Environmental Fate: TERRESTRIAL FATE: Based on a classification scheme(1), an estimated Koc value of 18,000(SRC), determined from a structure estimation method(2), indicates that methyl palmitate is expected to be immobile in soil(SRC). Volatilization of methyl palmitate from moist soil surfaces is expected to be an important fate process(SRC) given an estimated Henry's Law constant of 0.009 atm-cu m/mole(SRC), using a fragment constant estimation method(3). However, adsorption to soil is expected to attenuate volatilization(SRC). Methyl palmitate is not expected to volatilize from dry soil surfaces(SRC) based upon a vapor pressure of 0.00006 mm Hg(4). Methyl palmitate is expected to rapidly biodegrade in aerobic soils based on the results of screening studies(5). Source: Hazardous Substances Data Bank (HSDB)
  • Environmental Fate: AQUATIC FATE: Based on a classification scheme(1), an estimated Koc value of 18,000(SRC), determined from an estimation method(2), indicates that methyl palmitate is expected to adsorb to suspended solids and sediment in water(SRC). Volatilization from water surfaces is expected(3) based upon an estimated Henry's Law constant of 0.009 atm-cu m/mole(SRC), developed using a fragment constant estimation method(4). Volatilization half-lives for a model river and model lake are 5 and 160 hours, respectively(SRC), using an estimation method(3). However, volatilization from water surfaces is expected to be attenuated by adsorption to suspended solids and sediment in the water column(SRC). The volatilization half-life from a model pond is estimated to be about 60 hours ignoring adsorption; when considering maximum adsorption the volatilization half-life increases to 150 days(5). According to a classification scheme(6), an estimated BCF of 620(SRC) from a log Kow of 7.38(10) regression-derived equation(7) suggests the potential for bioconcentration in aquatic organisms is high. Methyl palmitate is expected to rapidly biodegrade in aerobic waters(8). An estimated base-catalyzed second-order Source: Hazardous Substances Data Bank (HSDB)
  • Environmental Fate: ATMOSPHERIC FATE: According to a model of gas/particle partitioning of semivolatile organic compounds in the atmosphere(1), methyl palmitate, which has a vapor pressure of 0.00006 mm Hg at 25 °C(2), will exist in both the vapor and particulate phases in the ambient atmosphere. Vapor-phase methyl palmitate is degraded in the atmosphere by reaction with photochemically-produced hydroxyl radicals(SRC); the half-life for this reaction in air is estimated to be 20 hours(SRC) from its estimated rate constant of 1.9X10-11 cu cm/molecule-sec at 25 °C(3). Particulate-phase methyl palmitate may be removed from the air by wet and dry deposition(SRC). Source: Hazardous Substances Data Bank (HSDB)

Mapped by: Existing checksum-valid CAS to unique PubChem CID match. Retrieved: 2026-08-31. Open source record

Scientific classifications and hazard annotations provide context and do not replace the market-specific regulatory decision shown above.

Additional source coverage and match status
SourceResultChecked
NIH PubChem PUG-ViewExact match2026-08-31

A recorded no-match is useful evidence that the source was checked; it is not a claim that the substance does not exist elsewhere.

Retrieved from NIH PubChem on 2026-08-31 by checksum-valid CAS matching. Chemical properties do not replace the regulatory decision on this page.

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How CAS 112-39-0 is used on this site

CAS 112-39-0 is the Chemical Abstracts Service identifier used to pin this page to a specific substance. In the current dataset, 0 EU annex records share this identifier, which helps you cross-check whether the same substance appears under one regulatory context or several.

Use this page when a supplier specification, SDS or raw-material dossier gives you CAS 112-39-0 and you need to see every linked Annex II–VI record in one place. The entry cards above are the quickest route to concentration limits, warnings, annex placement and product-type conditions.