Acetic acid glacial 99.5-100.5%, AR Select® ACS for trace analysis, Macron Fine Chemicals™

Supplier: Avantor Performance Materials
Danger

Synonyms: Vinegar acid, Methanecarboxylic acid, Ethanoic acid

Management of Change (MOC) category = N

MACR8817-14EA 0 INR
MACR8817-14 MACR8817-46
Acetic acid glacial 99.5-100.5%, AR Select® ACS for trace analysis, Macron Fine Chemicals™
Acetic acid
Formula: H₃CCOOH
MW: 60,05 g/mol
Boiling Pt: 118 °C (1013 hPa)
Melting Pt: 17 °C
Density: 1,05 g/cm³ (20 °C)
Flash Pt: 38,5 °C
Storage Temperature: Ambient
MDL Number: MFCD00036152
CAS Number: 64-19-7
EINECS: 200-580-7
UN: 2789
ADR: 8,II
REACH: 01-2119475328-30

Order Now

Specification Test Results

Meets ACS Reagent Chemical Requirements
For Laboratory,Research,or Manufacturing Use
IMPORTANT: Material will freeze if stored below 17 °C (63°F).
ACS - Assay (CH₃COOH) 99.5 - 100.5 %
ACS - Assay (by GC, corrected for water) ≥ 99.7 %
ACS - Acetic Anhydride ((CH₃CO)₂O) ≤ 0.01 %
ACS - Arsenic and Antimony (as As) ≤ 0.005 ppm
ACS - Chloride (Cl) ≤ 0.0001 %
ACS - Color (APHA) ≤ 10
Dilution Test Passes Test
ACS - Heavy Metals (by ICP-OES) ≤ 5 ppm
ACS - Residue after Evaporation ≤ 0.001 %
ACS - Substances Reducing Dichromate Passes Test
ACS - Substances Reducing Permanganate Passes Test
ACS - Sulfate (SO₄) ≤ 0.0001 %
ACS - Titrable Base (meq/g) ≤ 0.0004
Determine by Flame Photometry & ICP - Aluminum (Al) ≤ 100 ppb
Determine by Flame Photometry & ICP - Barium (Ba) ≤ 100 ppb
Determine by Flame Photometry & ICP - Beryllium (Be) ≤ 10 ppb
Determine by Flame Photometry & ICP - Bismuth (Bi) ≤ 10 ppb
Determine by Flame Photometry & ICP - Boron (B) ≤ 50.0 ppb
Determine by Flame Photometry & ICP - Cadmium (Cd) ≤ 100.0 ppb
Determine by Flame Photometry & ICP - Calcium (Ca) ≤ 500.0 ppb
Determine by Flame Photometry & ICP - Chromium (Cr) ≤ 100 ppb
Determine by Flame Photometry & ICP - Cobalt (Co) ≤ 50 ppb
Determine by Flame Photometry & ICP - Copper (Cu) ≤ 50.0 ppb
Determine by Flame Photometry & ICP - Gallium (Ga) ≤ 500 ppb
Determine by Flame Photometry & ICP - Germanium (Ge) ≤ 500 ppb
Determine by Flame Photometry & ICP - Gold (Au) ≤ 500 ppb
Determine by Flame Photometry & ICP - Iron (Fe) ≤ 100 ppb
Determine by Flame Photometry & ICP - Lead (Pb) ≤ 500.0 ppb
Determine by Flame Photometry & ICP - Lithium (Li) ≤ 50.0 ppb
Determine by Flame Photometry & ICP - Magnesium (Mg) ≤ 100 ppb
Determine by Flame Photometry & ICP - Manganese (Mn) ≤ 50 ppb
Determine by Flame Photometry & ICP - Mercury (Hg) ≤ 500.0 ppb
Determine by Flame Photometry & ICP - Molybdenum (Mo) ≤ 10 ppb
Determine by Flame Photometry & ICP - Nickel (Ni) ≤ 50.0 ppb
Determine by Flame Photometry & ICP - Potassium (K) ≤ 100.0 ppb
Determine by Flame Photometry & ICP - Silicon (Si) ≤ 100.0 ppb
Determine by Flame Photometry & ICP - Silver (Ag) ≤ 50.0 ppb
Determine by Flame Photometry & ICP - Sodium (Na) ≤ 500.0 ppb
Determine by Flame Photometry & ICP - Strontium (Sr) ≤ 100 ppb
Determine by Flame Photometry & ICP - Thallium (Tl) ≤ 50 ppb
Determine by Flame Photometry & ICP - Tin (Sn) ≤ 100.0 ppb
Determine by Flame Photometry & ICP - Vanadium (V) ≤ 10 ppb
Determine by Flame Photometry & ICP - Zinc (Zn) ≤ 100 ppb
Determine by Flame Photometry & ICP - Zirconium (Zr) ≤ 10 ppb
Determine by Flame Photometry & ICP
Appearance (clear, colorless liquid)

Learn more

About VWR

Avantor is a vertically integrated, global supplier of discovery-to-delivery solutions for...

Learn more About VWR