acetic acid
quantum satis
0,99 €
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Legal substance. dhscientific.com is a demonstration of the MOL-GOD platform — we sell nothing and no orders are fulfilled. Banned substances are blocked here automatically from the regulatory canon (compare e.g. Heptachlor).
Data transcribed from regulatory registers and technical literature, with the source and edition stated. It does not replace the supplier's safety data sheet. Fields without a recorded source are marked as such.
Chemical Overview: Kwas octowyMolGod_OVERVIEW_1
| Molecular formula | C2H4O2[1] |
| Molecular weight | 60.05 g/mol[1] |
| Melting point | 16.64 °C[1][2] |
| Boiling point | 117.9 °C (760 mmHg)[1][2] |
| Density | 1.0492 g/cm³[1][2] |
| LogP (lipophilicity) | -0.17[1] |
| pKa | 4.756 |
| IUPAC name | acetic acid[1] |
| SMILES | CC(=O)O[1] |
| InChIKey | QTBSBXVTEAMEQO-UHFFFAOYSA-N[1] |
Synonyms: Acetic acid · Ethanoic acid
Data sources: PubChem (NLM/NIH), Reid, Prausnitz, Poling 4th ed. (1987)
Last updated: 2026-08-05
📚 Scientific references (Chicago Author-Date) (2 sources)
- PubChem. National Center for Biotechnology Information (NIH/NLM), chemical compound database. ↗ dotyczy: Molecular formula · Molecular weight · Melting point · Boiling point · Density · LogP (lipophilicity) · IUPAC name · SMILES · InChIKey
- DECHEMA, PTB, and BAM. CHEMSAFE - Database of Evaluated Safety Characteristics for the Avoidance of Explosions. Frankfurt am Main: DECHEMA e.V.; Braunschweig/Berlin: Physikalisch-Technische Bundesanstalt and Bundesanstalt fur Materialforschung und -prufung. ↗ dotyczy: Melting point · Boiling point · Density
SCIENTIFIC RESEARCH
📚 Scientific references (Chicago Author-Date) 5 refs · 2 baz
MOLEKUŁA Per-CAS bibliography (live from 13+ databases)
Sources: db:pubmed (4) · db:Europe PMC (1)
- db:pubmed Che Z, Huang J, Wen S et al.. (2025). "Lactobacillus rhamnosus B16 regulates lipid metabolism homeostasis by producing acetic acid.". Journal of translational medicine. https://doi.org/10.1186/s12967-025-07228-1 →
- db:pubmed Mao YQ, Song SY, Xu Q et al.. (2025). "Dietary fiber pectin supplement attenuates atherosclerosis through promoting Akkermansia-related acetic acid metabolism.". Phytomedicine : international journal of phytotherapy and phytopharmacology. https://doi.org/10.1016/j.phymed.2025.157373 →
- db:pubmed Lee J, Ko IG, Lee M et al.. (2025). "Adenosine A(2A) receptor agonist polydeoxyribonucleotide ameliorates acetic acid-induced ulcerative colitis via modulating PI3K/Akt/VEGF signaling pathway.". European journal of pharmacology. https://doi.org/10.1016/j.ejphar.2025.178072 →
- db:pubmed Khattab SMR, Katahira M, Watanabe T. (2025). "Engineering Saccharomyces cerevisiae for ethanol production from glycerol, xylose, acetic acid, and glucose.". Bioresource technology. https://doi.org/10.1016/j.biortech.2025.132921 →
- db:Europe PMC et al.. (2019). "RIFM fragrance ingredient safety assessment, acetic acid, CAS Registry Number 64-19-7.". https://doi.org/10.1016/j.fct.2019.110828 →
Physicochemical properties
Quick Reference
Detailed Properties
Uzupełnienie tabeli „Właściwości fizykochemiczne (baza danych)” poniżej — powtórzone wartości pokazujemy tylko raz.
| Property | Value | Unit | Conditions | Source |
|---|---|---|---|---|
| Refractive Index (nD) | 1.3716[1] | 20 °C, D-line | Reid, Prausnitz, Poling 4th ed. (1987) |
🔬 Advanced Properties
Chemical Identifiers
CC(=O)O Data sources: Reid, Prausnitz, Poling 4th ed. (1987) (ISBN 9780070517998)
Last updated: 2026-06-24
📚 Scientific references (Chicago Author-Date) (1 sources)
- PubChem. National Center for Biotechnology Information (NIH/NLM), chemical compound database. ↗ dotyczy: Refractive Index (nD)
📡 Spectroscopy — CAS 64-19-7MolGod_SPECHUB_MAIN
Physical & Chemical Properties (DB) 23 fields MolGod Score: Primary
| Property | Value | Unit | Conditions | Source |
|---|---|---|---|---|
| Melting point | 16.64 [1][2] | °C | 1 atm | Reid, Prausnitz, Poling 4th ed. (1987) |
| Boiling point | 117.9 [1][2] | °C | 760 mmHg | Reid, Prausnitz, Poling 4th ed. (1987) |
| Water solubility | miscible | — | opis jakościowy (bez wartości liczbowej) | Reid, Prausnitz, Poling 4th ed. (1987) |
| Density (ρ) | 1.0492 [1][2] | g/cm³ | 20°C | Reid, Prausnitz, Poling 4th ed. (1987) |
| Refractive index (n_D) | 1.3716 [2] | — | 20°C, sodium D | Reid, Prausnitz, Poling 4th ed. (1987) |
| Viscosity (η) | 1.056 | cP | 25°C | Reid, Prausnitz, Poling 4th ed. (1987) |
| Vapor pressure | 15.7 [1] | mmHg | 25°C | Reid, Prausnitz, Poling 4th ed. (1987) |
| Flash point | 39 [1][2] | °C | closed cup | No primary source |
| Autoignition temperature | 463 | °C | in air | No primary source |
| pKa₁ | 4.756 | — | No primary source | |
| logP (octanol/water) | -0.17 [3] | — | No primary source | |
| logD (pH 7) | -2.7 | — | pH 7 | Reid, Prausnitz, Poling 4th ed. (1987) |
| Dielectric constant (ε) | 6.2 | — | Reid, Prausnitz, Poling 4th ed. (1987) | |
| Surface tension | 27.1 | mN/m | Reid, Prausnitz, Poling 4th ed. (1987) | |
| Specific heat (cp) | 2.043 | J/(g·K) | Reid, Prausnitz, Poling 4th ed. (1987) | |
| Thermal conductivity (k) | 0.158 | W/(m·K) | Reid, Prausnitz, Poling 4th ed. (1987) | |
| Dipole moment (μ) | 1.7 | D | Reid, Prausnitz, Poling 4th ed. (1987) | |
| ΔH vaporization | 23.7 | kJ/mol | Reid, Prausnitz, Poling 4th ed. (1987) | |
| ΔH fusion | 11.73 | kJ/mol | at mp | Reid, Prausnitz, Poling 4th ed. (1987) |
| Critical temperature (Tc) | 318.8 | °C | critical point | Reid, Prausnitz, Poling 4th ed. (1987) |
| Critical pressure (Pc) | 57.9 | bar | critical point | Reid, Prausnitz, Poling 4th ed. (1987) |
| Acentric factor (ω) | 0.447 | — | Pitzer | Reid, Prausnitz, Poling 4th ed. (1987) |
| Ethanol solubility | miscible | — | opis jakościowy (bez wartości liczbowej) | Reid, Prausnitz, Poling 4th ed. (1987) |
📚 Scientific references (Chicago Author-Date) (3 sources)
- DECHEMA, PTB, and BAM. CHEMSAFE - Database of Evaluated Safety Characteristics for the Avoidance of Explosions. Frankfurt am Main: DECHEMA e.V.; Braunschweig/Berlin: Physikalisch-Technische Bundesanstalt and Bundesanstalt fur Materialforschung und -prufung. ↗ dotyczy: Melting point · Boiling point · Density (ρ) · Vapor pressure · Flash point
- PubChem. National Center for Biotechnology Information (NIH/NLM), chemical compound database. ↗ dotyczy: Melting point · Boiling point · Density (ρ) · Refractive index (n_D) · Flash point
- Sangster, J. "Octanol-Water Partition Coefficients of Simple Organic Compounds." Journal of Physical and Chemical Reference Data 18, no. 3 (1989): 1111-1229. ↗ dotyczy: logP (octanol/water)
Physicochemical values are derived from the independent, peer-reviewed sources listed above.
Purity Check Guide Quality control
Verify reagent purity using standardized analytical methods. Select a test method below and enter your measurement results for automated calculation.
🛡️ Safety — CAS 64-19-7MolGod_SAFEHUB_MAIN
GHS/CLP classification — Regulation (EC) No 1272/2008 + UN GHS Rev. 9 (2021).
🚨 Hazard statements (H)
- H226 — Flammable liquid and vapour
- H314 — Causes severe skin burns and eye damage
🛡 Precautionary statements (P)
- P210 — Keep away from heat, hot surfaces, sparks, open flames and other ignition sources. No smoking
- P233 — Keep container tightly closed
- P240 — Ground and bond container and receiving equipment
- P260 — Do not breathe dust/fume/gas/mist/vapours/spray
- P264 — Wash thoroughly after handling
- P280 — Wear protective gloves/protective clothing/eye protection/face protection
- P301+P330+P331 — IF SWALLOWED: Rinse mouth; Do NOT induce vomiting
- P303+P361+P353 — IF ON SKIN (or hair): Take off immediately all contaminated clothing; Rinse skin with water or shower
- P304+P340 — IF INHALED: Remove person to fresh air and keep comfortable for breathing
- P305+P351+P338 — IF IN EYES: Rinse cautiously with water for several minutes; Remove contact lenses, if present and easy to do. Continue rinsing
- P310 — Immediately call a POISON CENTER or doctor/physician
- P321 — Specific treatment
- P363 — Wash contaminated clothing before reuse
- P370+P378 — In case of fire: Use appropriate media to extinguish
- P403+P235 — Store in a well-ventilated place: Keep cool
- P405 — Store locked up
- P501 — Dispose of contents/container to an approved waste collection point
✓ Harmonised classification pursuant to Annex VI of the CLP Regulation (EC) 1272/2008 (official, binding classification). Index number: 607-002-00-6.
Reference (Chicago): European Chemicals Agency. "acetic acid ... %, Index No. 607-002-00-6." In Table 3 of Annex VI to Regulation (EC) No 1272/2008 (CLP Regulation), 23rd Adaptation to Technical Progress (harmonised list as of 2026-07-07). Helsinki: European Chemicals Agency, 2026. https://echa.europa.eu/information-on-chemicals/annex-vi-to-clp.
Translations: CLP Regulation (EC) 1272/2008, Annexes III and IV. Data: PubChem/NLM.
📚 Consolidated scientific references — Chicago Author-Date 10 sources
References collected from all Safety Hub tabs. CAS: 64-19-7 ·
PubChem ↗
- Parlament Europejski i Rada UE. 2008. "Rozporządzenie (WE) nr 1272/2008 w sprawie klasyfikacji, oznakowania i pakowania substancji (CLP)." Dz.Urz. UE L 353. [↗] GHS, Regulations
- United Nations Economic Commission for Europe (UNECE). 2021. "Globally Harmonized System of Classification and Labelling of Chemicals (GHS), Ninth Revised Edition." United Nations, Geneva. [↗] GHS
- Goldfrank, Lewis R., Robert S. Hoffman, Mary Ann Howland, et al.. 2019. "Goldfrank's Toxicologic Emergencies, 11th ed.." McGraw-Hill Education, New York. ISBN 978-1-25-985961-8. Pierwsza pomoc, Toksykologia
- National Institute for Occupational Safety and Health (NIOSH). 2023. "NIOSH Pocket Guide to Chemical Hazards (DHHS Publ. 2005-149)." U.S. Department of Health and Human Services / CDC, Cincinnati, OH. [↗] Pierwsza pomoc, PPE, Toksykologia
- European Committee for Standardization (CEN). 2016. "EN 374-1:2016 — Protective gloves against dangerous chemicals and micro-organisms." CEN, Brussels. [↗] PPE
- UNECE. 2023. "European Agreement Concerning the International Carriage of Dangerous Goods by Road (ADR 2025)." United Nations, Geneva. [↗] Utylizacja, Regulacje
- National Fire Protection Association (NFPA). 2022. "NFPA 400 — Hazardous Materials Code." NFPA, Quincy, MA. [↗] Magazynowanie
- Urben, P.G. (ed.). 2017. "Bretherick's Handbook of Reactive Chemical Hazards, 8th ed.." Butterworth-Heinemann / Elsevier, Oxford. [↗] Magazynowanie
- Ministerstwo Klimatu i Środowiska RP. 2023. "Baza danych o produktach i opakowaniach oraz o gospodarce odpadami (BDO)." Ministerstwo Klimatu i Środowiska, Warszawa. [↗] Utylizacja
- International Agency for Research on Cancer (IARC / WHO). 2024. "IARC Monographs on the Identification of Carcinogenic Hazards to Humans — List of Classifications." WHO, Lyon. [↗] Toksykologia
Tabs with their own references (Emergency, PPE, Storage, Waste) contain additional bibliographic entries within their respective sections.
Analytical statistics (t-test · RSD · Grubbs · Q-Dixon) ICH Q2
Paste a series of replicate measurements (CSV, or one number per line). The calculator computes the mean, standard deviation and 95% CI, and detects outliers (Grubbs + Dixon Q).
📐 Statistical formulas
x̄ = Σxᵢ / n— arithmetic means² = Σ(xᵢ - x̄)² / (n-1)— sample variances = √s²— standard deviationRSD% = (s / x̄) × 100%— relative standard deviationCI₉₅ = x̄ ± t(0.05, n-1) × s / √n— Student's tG = |xᵢ - x̄| / s— Grubbs' testQ = |xsuspect - xnearest| / |xmax - xmin|— Dixon Q-test
Source: ICH Q2(R2) Validation of Analytical Procedures · ICH PDF ↗
Buffer Recipe Calculator UNIQUE
Choose a buffer from the list of 20 popular systems → enter the target pH → get an exact recipe with the masses to weigh out.
Step 1: Choose a buffer system
📜 Recipe history (last 10)
Transport classification (ADR / IATA / IMDG) UN 2789
🛣️ ADR Road Transport
- Class:
- 8
- Subsidiary risks:
- 3
- Packing Group:
- II
- Shipping name:
- Acetic acid, glacial
- Tunnel Code:
- (D/E)
- Limited Quantity (L):
- 1
✈️ IATA Air Transport
- Class:
- 8
- Packing instructions:
- 851 / 855
- Max quantity (PAX):
- 1 L
- Max quantity (CAO):
- 30 L
🚢 IMDG Sea Transport
- Class:
- 8
- EmS Code:
- F-E, S-C
Sources: ADR 2025 ↗ · IATA DGR ↗ · IMDG Code ↗
🔧 HPLC troubleshooting — decision tree 6 common problems
Diagnostics for the 6 most common HPLC problems with a decision tree (5 steps per problem). Source: Snyder/Kirkland/Dolan 3rd ed. Chapter 17 + LCGC LC Troubleshooting columns 1989-2024.
Broad peaks medium
Symptom: All peaks on the chromatogram are wider than expected (FWHM > 2× normal)
🔍 Diagnostic tree:
-
1. Check whether all peaks are broadened or only some
→ YES: All → instrumental problem (column or system)
→ NO: Only some → chemistry problem (interaction with the column for specific analytes) -
2. Swap in a test column — does the problem disappear?
→ YES: COLUMN worn out — packing damaged, void in the first few mm. Replace it.
→ NO: Problem in the LC system -
3. Check the dead volume — injection loop, connections, detector
→ YES: Loop > 100 µL for a 4.6 mm column or loose connections → replace ferrules, shorten tubing
→ NO: Continue diagnostics -
4. Temperature test: raise the column from 25°C to 40°C
→ YES: Narrower peaks → mass-transfer kinetics too slow (increase T)
→ NO: Continue -
5. Check flow rate vs the optimal van Deemter value for this column
→ YES: Optimum for 4.6mm/5µm = 1.0 mL/min, for 2.1mm/3µm = 0.4 mL/min
→ NO: Continue
- Column worn out (>2000 injections without a guard)
- System dead volume > 100 µL (wrong loop, long tubing, loose ferrules)
- Temperature too low (mass-transfer kinetics)
- Flow rate outside the van Deemter optimum
- Sample solvent stronger than mobile phase A
- ✓ Replace the column (when >2000 injections)
- ✓ Check all connections — keep tubing as short as possible
- ✓ Increase column T to 40°C (if the substance is stable)
- ✓ Reduce flow to the van Deemter optimum
- ✓ Dissolve the sample in mobile phase A (not in pure organic)
Peak tailing (T > 1.5) high
Symptom: Peaks have an extended "tail" on the late-elution side (asymmetry T = b/a > 1.5 per USP)
🔍 Diagnostic tree:
-
1. Does the substance contain basic groups (amino, pyridine)?
→ YES: Yes → silanol interactions! Add 0.1% TFA or 5-10 mM TEA to mobile phase A.
→ NO: Continue -
2. Check the mobile-phase pH vs the substance pKa
→ YES: pH = pKa ± 1 → partial ionization, peak split. Move pH ≥ 2 units away from pKa.
→ NO: Continue -
3. Check the column age (>1500 injections?)
→ YES: Yes → exposed silanols (column bleed). Replace with a column with higher endcapping (XTerra, Symmetry).
→ NO: Continue -
4. Does the sample contain metals (Fe, Cu from glass vials)?
→ YES: Yes → use type II clear vials or PFA. Add 0.1mM EDTA to the sample.
→ NO: Continue
- Silanol interactions (basic analyte + silica gel free silanols)
- pH at the boundary of the analyte pKa (peak split)
- Old column (column bleed, high silanol activity)
- Metals in the sample (chelation → tailing)
- Column overload (>50 µg on a 4.6mm column)
- ✓ Add 0.1% TFA (UV) or 0.1% formic acid (LC-MS) to mobile phase A
- ✓ Choose a column with high-purity endcapping: Waters XBridge BEH, Phenomenex Kinetex
- ✓ Work at pH ≥ 2 units away from pKa
- ✓ Add 0.1mM EDTA to the sample (Fe/Cu chelation)
- ✓ Reduce the injection volume to ≤ 20 µL for a 4.6mm column
Baseline drift medium
Symptom: The baseline rises or falls systematically for >5 minutes
🔍 Diagnostic tree:
-
1. Are you running a gradient (B% increasing)?
→ YES: Yes → different absorption of phases A vs B at dλ. Solvent change in UV cutoff. Check the % organic UV absorbance.
→ NO: Continue (isocratic) -
2. Check the column temperature — is it stable to ±0.5°C?
→ YES: Yes (stable) → continue
→ NO: Unstable → turn on the column thermostat (>25°C controlled) -
3. Test: turn off the autosampler, run pump+column+detector alone
→ YES: Drift disappears → autosampler contamination (clean the needle, septum)
→ NO: Continue -
4. Check the lamp age (D2 for UV)
→ YES: Yes (>1500 hours) → replace the lamp
→ NO: Continue
- Gradient elution with different UV cutoff of the phases
- Unstable column T
- Autosampler contamination of the needle/septum
- Old UV lamp (>1500h)
- Detector flow cell fouled
- Column not equilibrated (<10 column volumes)
- ✓ Pre-equilibrate the column for 10-15 column volumes at 100% A
- ✓ Column thermostat on, T 30-40°C stable
- ✓ Clean the detector flow cell with 50:50 ACN:H2O
- ✓ Replace the D2 lamp if >1500h
- ✓ Use baseline subtraction (Chromeleon, Empower native function)
No peak / lost peak critical
Symptom: The expected analyte peak does not appear on the chromatogram
🔍 Diagnostic tree:
-
1. Did the injection actually take place?
→ YES: Check the autosampler log, pump pressure (should drop during injection)
→ NO: Autosampler problem → check the loop, needle, sample in the vial -
2. Is the sample in the vial (correct volume, not evaporated)?
→ YES: Continue
→ NO: No sample — re-pipette -
3. Sample stability — prepared >24h ago?
→ YES: Yes → degradation. Re-prepare a fresh sample.
→ NO: Continue -
4. Check the detection wavelength vs the substance λmax
→ YES: Detection at λ does NOT match λmax → no signal. Scan DAD 200-400nm.
→ NO: Continue -
5. Test: inject a pure standard (of known concentration, fresh)
→ YES: The standard gives a peak → problem with the sample (matrix, derivatization)
→ NO: No peak even with the standard → system problem (column, phase, gradient)
- Sample not drawn from the vial (autosampler bug)
- Sample degraded (>24h pH/temp/light)
- Detection at the wrong wavelength
- Wrong mobile phase (e.g. forgotten TFA)
- Column reversed / wrong stationary phase
- Substance elutes at the front (V0) → unretained, not visible
- ✓ Re-prepare a fresh sample per the exact protocol
- ✓ UV-Vis DAD scan 200-400nm + search for λmax
- ✓ Check the mobile-phase composition — was TFA added?
- ✓ Test the reverse column direction (carefully!)
- ✓ For retention <1 min — lower the % B, MeOH instead of ACN
- ✓ Check the expected retention time in the plugin method database
Pressure too high critical
Symptom: Pump pressure > 80% of the column max or system shutdown with a high-pressure error
🔍 Diagnostic tree:
-
1. Check that the column is connected correctly (arrow direction)
→ YES: OK
→ NO: Column reversed → flip it (never run it "backwards") -
2. Test: remove the column from the system, run pump+detector alone
→ YES: Pressure drops to <50 bar → problem in the column (clogged)
→ NO: Pressure stays high → in-line filter clogged, frit fouled -
3. Check the pre-column filter (in-line frit)
→ YES: Fouled and brown → replace it
→ NO: Continue -
4. Back-flush the column with 50:50 ACN:H2O without the column — does it disappear?
→ YES: Particles stuck in the first mm — a 30 min flush may recover it
→ NO: Replace the column
- In-line filter (frit) clogged with particles
- Buffer salting out (precipitation at high %B)
- Sample contains suspended matter (filter 0.22 µm before injection)
- Column clogged (column bed compaction)
- Gradient with a buffer phase + high organic → salt precipitation
- ✓ ALWAYS filter the sample through 0.22 µm PVDF before injection
- ✓ Replace the in-line filter every 100 injections (or when pressure rises >20%)
- ✓ Do NOT use >20mM phosphate buffer + >70% ACN (the salt precipitates)
- ✓ Flush the column for 30 min with 50:50 ACN:H2O in the reverse direction (when the manufacturer allows it)
- ✓ Pre-column 4×3mm to protect the main column
Ghost peaks high
Symptom: Unexplained peaks on the chromatogram absent from the calibration
🔍 Diagnostic tree:
-
1. Test: blank injection (pure sample solvent)
→ YES: A ghost appears → contamination of the system or eluents
→ NO: Appears only with the sample → matrix -
2. Does the ghost grow with the gradient (elutes at high %B)?
→ YES: Yes → overloaded column or strong-retained from a previous run
→ NO: Independent of the gradient → autosampler carryover -
3. Increase carryover wash (between injections)
→ YES: Helps → carryover was to blame. Use a stronger wash protocol.
→ NO: Continue -
4. Pure water injection — is there a peak?
→ YES: Yes → contamination of the water source (organics from the DI system)
→ NO: Continue
- Carryover in the autosampler needle/loop
- Eluent contamination (even HPLC-grade)
- Strong-retained components from previous runs
- Plastic in the vials (phthalates, PEG from the caps)
- Insufficiently purified DI water
- ✓ Strengthen the wash protocol: 100% B → 100% A → 50:50 (3 cycles)
- ✓ Strong wash: 100% DMSO or 100% MeOH before calibration
- ✓ Filter the eluents through 0.22 µm PTFE if in doubt
- ✓ Use amber glass + Teflon-lined caps for samples
- ✓ Periodic gradient ramp to 100% B for 10 min (clean-out)
📚 Scientific references (Chicago Author-Date) — click to expand
- Snyder, Lloyd R., Joseph J. Kirkland, and John W. Dolan. 2010. Introduction to Modern Liquid Chromatography. 3rd ed. John Wiley & Sons. Chapter 17 (Troubleshooting) pp. 559-616. ISBN 978-0-470-16754-0. https://doi.org/10.1002/9780470508183 [link ↗]
- Dolan, John W.. 2014. LC Troubleshooting (monthly column 1989-2024). LCGC North America. [link ↗] — John Dolan 35-letnia seria miesięcznych artykułów problemowych
- Kromidas, Stavros. 2017. HPLC Made to Measure: A Practical Handbook for Optimization. 2nd ed. Wiley-VCH. ISBN 978-3-527-31377-1. — Praktyczny przewodnik problem-solving dla labs analitycznych
- Dolan, John W.. 2013. When to Modify Method Conditions. 192-199. [link ↗] — Decision flow for changing flow rate / temperature / %B vs swapping columns.
- Dong, Michael W.. 2019. HPLC and UHPLC for Practicing Scientists. 2nd ed. Wiley. ISBN 978-1-119-31378-3. https://doi.org/10.1002/9781119313793 [link ↗] — Chapter 9 covers troubleshooting modern UHPLC systems (sub-2 µm particles).
- Meyer, Veronika R.. 2010. Practical High-Performance Liquid Chromatography. 5th ed. Wiley. ISBN 978-0-470-68218-0. — Solid step-by-step problem isolation chapter (eluents, columns, instruments).
- Snyder, L. R., J. J. Kirkland, and J. L. Glajch. 1997. Practical HPLC Method Development. 2nd ed. Wiley. ISBN 978-0-471-00703-6. — Method-development companion volume with troubleshooting cross-refs.
- Carr, Peter W.. 2009. The new physical chemistry of HPLC. 1764-1772. https://doi.org/10.1016/j.chroma.2008.11.094 [link ↗] — Theoretical basis for diagnosing efficiency losses (mass-transfer, eddy diffusion).
- Heyden, Yvan Vander, et al.. 2009. Robustness of pharmaceutical liquid chromatographic methods. 2120-2129. https://doi.org/10.1016/j.jchromb.2008.10.052 [link ↗] — How to diagnose method failures vs. system failures (Plackett-Burman).
- Engelhardt, Heinz. 2014. 100 Years of Chromatography. 2nd ed. Wiley-VCH. ISBN 978-3-527-33473-5. — Historical context for ghost-peak phenomenology (silica chemistry).
🧪 Solution preparation assistant (Smart Prep) MolGod_PREP_2
Enter what you want to prepare — I'll generate an SOP
📚 Scientific literature overview — CAS 64-19-7MolGod_LITHUB_MAIN
⭐ Key findings (scientific literature) 6 publications
64-19-7
— multi-criteria ranking (W12): 30% citations · 20% recency · 20% topic · 15% historical · 15% open access.
-
#1Kolbe, H. (1845) · Annalen der Chemie und PharmacieWhy it matters: Must-cite (canon) · 280 citations · historical paper (1845)
-
#2Yoneda, N.; Kusano, S.; Yasui, M.; Pujado, P.; Wilcher, S. (2014) · Applied Catalysis A: GeneralWhy it matters: Must-cite (canon) · 380 citations
-
#3Cheung, H.; Tanke, R.S.; Torrence, G.P. (2003) · Ullmann's Encyclopedia of Industrial ChemistryWhy it matters: Must-cite (canon) · 420 citations
-
#4Rao, P.S.; Gerald, B. (2016) · Comprehensive Reviews in Food Science and Food SafetyWhy it matters: Must-cite (canon) · 140 citations · review
-
#5Mato, S.; Suárez-Quiñones, T.; Centeno, M.A.; Odriozola, J.A. (2008) · Food ChemistryWhy it matters: Must-cite (canon) · 140 citations
-
#6Frenzel, T.; Miller, A.; Engel, K.H. (2010) · Journal of Agricultural and Food ChemistryWhy it matters: Must-cite (canon) · 140 citations
📚 REFERENCES (Aggregate bibliography, Chicago Author-Date) 127 items
All scientific sources cited in the accordions above for CAS 64-19-7. Format: Chicago Manual of Style 17th ed., Author-Date system.
🗄️ Scientific databases
- NIST. n.d. NIST Chemistry WebBook: CAS 64-19-7. Gaithersburg, MD: National Institute of Standards and Technology. https://webbook.nist.gov/cgi/cbook.cgi?ID=64-19-7.
- AIST. n.d. Spectral Database for Organic Compounds (SDBS): CAS 64-19-7. Tsukuba, Japan: National Institute of Advanced Industrial Science and Technology. https://sdbs.db.aist.go.jp/.
- Linstrom, Peter J., and William G. Mallard, eds. n.d. NIST Chemistry WebBook: NIST Standard Reference Database Number 69. Gaithersburg, MD: National Institute of Standards and Technology. https://doi.org/10.18434/T4D303.
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📐 Standards / Guidelines
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- European Committee for Standardization (CEN). 2016. "EN 374-1:2016 — Protective gloves against dangerous chemicals and micro-organisms — Part 1: Terminology and performance requirements for chemical risks." CEN, Brussels. https://standards.cencenelec.eu/dyn/www/f?p=205:110:::::FSP_PROJECT,FSP_ORG_ID:38536,6080&cs=1B0DAA8B85DF42E4A2C70E5D71F0BFA32.
- European Committee for Standardization (CEN). 2001. "EN 166:2001 — Personal eye-protection — Specifications." CEN, Brussels. https://standards.cencenelec.eu/dyn/www/f?p=CEN:110:0::::FSP_PROJECT:6541&cs=1F1A4E0A78C4DB6A28DBE2E8C29D89DCF.
- European Committee for Standardization (CEN). 2009. "EN 14605:2005+A1:2009 — Protective clothing against liquid chemicals — Performance requirements for clothing with liquid-tight (Type 3) or spray-tight (Type 4) connections." CEN, Brussels. https://standards.cencenelec.eu/dyn/www/f?p=CEN:110:0::::FSP_PROJECT:21581&cs=1A04A2D3C7CC58E9E6CB58D55F7EBFB7E.
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📖 Books
- Hansen, Charles M. 2007. Hansen Solubility Parameters: A User's Handbook, 2nd ed.. Boca Raton, FL: CRC Press. https://www.routledge.com/Hansen-Solubility-Parameters-A-Users-Handbook/Hansen/p/book/9780849372483.
- Barton, Allan F. M. 1991. CRC Handbook of Solubility Parameters and Other Cohesion Parameters: 2nd ed.. Boca Raton, FL: CRC Press. https://www.routledge.com/CRC-Handbook-of-Solubility-Parameters-and-Other-Cohesion-Parameters/Barton/p/book/9780849301766.
- Connors, Kenneth A., Gordon L. Amidon, and Valentino J. Stella. 1986. Chemical Stability of Pharmaceuticals: A Handbook for Pharmacists, 2nd ed.. New York: Wiley. https://doi.org/10.1002/0471734683.
- Rumble, John R., ed. 2019. CRC Handbook of Chemistry and Physics: 100th Edition. Boca Raton, FL: CRC Press. https://hbcp.chemnetbase.com/.
- Urben, Peter G. 2017. Bretherick's Handbook of Reactive Chemical Hazards, 8th Edition. Academic Press / Elsevier, Oxford. https://www.sciencedirect.com/book/9780081010594.
📄 Scientific articles (peer-reviewed)
- Stefanis, Emmanuel, and Costas Panayiotou. 2008. "Prediction of Hansen Solubility Parameters with a New Group-Contribution Method." International Journal of Thermophysics 29: 568-585. https://doi.org/10.1007/s10765-008-0415-z.
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