Laser diffraction (dry/wet dispersion) is the standard test for graphite D10/D50/D90, critical for spherical anode graphite, flake graphite, expandable graphite. Graphite has unique challenges: high oil absorption, static agglomeration, light absorption (low refractive signal), easy flake stacking. Below is standardized operating workflow, dispersion solutions, parameter settings & troubleshooting.
1. Pre-Test Preparation
1.1 Sample pretreatment
- Drying: Graphite contains adsorbed water, residual pitch solvent from carbon coating.
- Dry at 120 °C under nitrogen for 2 h, cool to room temp; moisture < 100 ppm.
- High-moisture samples cause agglomeration & false large particle readings.
- De-agglomeration: Loose lumps by gentle mortar grinding (no steel balls, avoid iron contamination); screen through 100 mesh sieve to remove hard aggregates.
- Sample quantity:
- Wet method: 0.1–0.3 g graphite per test
- Dry method: 0.5–1.0 g graphite
1.2 Key optical parameter setup (graphite fixed constants)
Graphite strongly absorbs laser light; wrong RI leads to distorted PSD curves.
- Refractive index (RI): Real = 2.40, Imaginary (absorption coefficient) = 0.80–1.0
- Particle model: Irregular / non-spherical (flake graphite); spherical model only for shaped spherical anode graphite
- Calculation algorithm: Mie scattering (mandatory, Fraunhofer is inaccurate for sub-20 μm graphite)
2. Two Test Methods: Wet Dispersion (Preferred for Most Graphite) vs Dry Dispersion
Part A: Wet Laser Diffraction (Industry Standard for Battery Spherical Graphite)
Step 1: Select dispersant solvent
Graphite is hydrophobic; pure water causes severe floating/agglomeration. Choose one system:
- Ethanol (anhydrous) – most common
- Advantages: fast wetting, low surface tension, easy cleaning, no swelling of coated carbon layer
- Isopropanol (IPA) – for ultra-fine D50 <5 μm graphite
- Water + surfactant (0.1% sodium hexametaphosphate / SDS) – low-cost, avoid for pitch-coated graphite (may dissolve surface carbon)
Step 2: Instrument liquid cell pre-check
- Fill circulation tank with clean dispersant, run circulation, purge bubbles completely.
- Background measurement: Zero baseline until light attenuation <0.5% (bubbles = fake fine particle peaks).
- Check cell window: No graphite residue from previous batches; wipe with lint-free cloth.
Step 3: Sample dispersion procedure
- Pre-disperse graphite in a small beaker with 10 mL dispersant.
- Ultrasonic treatment (critical to break graphite flake stacks & static agglomerates):
- Power: 300–400 W, ultrasonic time: 3–5 min
- Do NOT over-sonicate (>8 min): will crush graphite into extra ultrafines, falsify D10/D50
- Drop suspension into circulating liquid cell slowly, monitor obscuration rate:
- Target obscuration: 8%–15%
- <5%: insufficient signal; >20% multiple light scattering, distorted distribution
- Keep circulation pump speed medium (600–1000 rpm) to prevent particle sedimentation.
Step 4: Test run & data collection
- Stabilize 30 s after adding sample to eliminate transient bubbles.
- Collect 3 consecutive replicate measurements (10–30 s each).
- Accept test only if D50 RSD ≤ 3% between repeats; re-sonicate if deviation is large.
- Record D10, D50, D90, span value [(D90-D10)/D50].
Step 5: Post-test cleaning
- Flush circulation system 3× with pure ethanol to remove residual graphite (graphite adheres strongly to plastic/tubing).
- Empty tank and dry to prevent cross-contamination for next batch.
Part B: Dry Laser Diffraction (For Expandable Graphite, Large Flake Graphite; No Solvent Residue)
Wet solvent may alter expandable graphite interlayer structure; use dry route:
- Instrument purge: Purge sample feeder with dry compressed air (dew point ≤ -40 °C) to eliminate moisture static.
- Dispersion pressure setting (core parameter):
- Flake graphite (high aspect ratio): 1.0–1.5 bar (low pressure to avoid breaking flakes)
- Spherical anode graphite: 2.0–2.5 bar (higher pressure to split soft agglomerates)
- Feed rate: Slow uniform feeding to maintain obscuration 6%–12%.
- Anti-static setup: Add ion air blower at sample injection port; graphite static causes particle adhesion to pipeline walls.
- Limitation: Dry method shows wider span than wet test; use wet method as arbitration standard for quality control.
3. Critical Control Points Specific to Graphite
- Avoid flake stacking artifacts
Un-dispersed stacked flakes are detected as single large particles → falsely high D50. Ultrasonic + low-surface-tension solvent solves this. - Static elimination
Fine graphite generates heavy static; agglomerates shift PSD toward larger sizes.- Wet: ethanol instead of water
- Dry: ionized dry air, anti-static coating on feed lines
- Prevent particle crushing
Over-sonication (wet) / over-high dispersion pressure (dry) produces artificial ultrafines, D10 drops sharply, span widens. - Light absorption correction
Do not set imaginary absorption coefficient to 0; graphite absorbs most transmitted laser light, wrong RI leads to undercount fine particles. - Sedimentation prevention
Graphite density ~2.2 g/cm³, fast sinking. Maintain continuous circulation during wet testing.
4. Common Failures & Troubleshooting
| Abnormal Test Result | Root Cause | Solution |
|---|---|---|
| D50 much larger than actual, abnormal coarse peak | Agglomerates / stacked flakes | Extend ultrasonic time, switch to ethanol dispersant |
| Too low D10, excess fine tail | Over-sonication / high dry pressure | Reduce sonication time, lower dispersion air pressure |
| Poor repeatability, large RSD | Moisture / static / bubbles | Dry sample, use ion blower, re-zero background |
| Low laser signal, weak scattering | Insufficient sample concentration | Add more suspension to reach 8–15% obscuration |
| Double peaks in PSD curve | Mixed agglomerates + primary particles | Increase ultrasonic dispersion duration |
5. Standard Reporting Items for Graphite PSD
- Test method (wet ethanol / dry dispersion)
- Optical parameters (RI real & imaginary value)
- Dispersion conditions: ultrasonic power/time or dry air pressure
- D10, D50, D90 (μm)
- Span = (D90 − D10) / D50
- Obscuration, replicate RSD
- Sample type: flake graphite / spherical coated anode graphite / expandable graphite
6. Standard Compliance Reference
- International: ISO 13320 Laser Diffraction Particle Size Analysis
- Domestic: GB/T 19077, GB/T 30835 (lithium ion anode graphite particle size test)
- Battery factory QC arbitration rule: Wet ethanol laser diffraction as official test method.