1. Definition of Initial Sieving
Initial sieving refers to the first coarse screening right after raw graphite ore/flotation concentrate incoming and primary crushing, before jet milling, spheroidization and chemical purification.
Core objectives:
- Remove large gangue rock, wood fiber, plastic debris, metal chunks and oversized uncrushed graphite lumps;
- Protect downstream jet mills, spheroidizers and filter presses from blockage or abrasion;
- Stabilize feed particle size for uniform subsequent grinding and purification;
- Roughly eliminate large magnetic foreign bodies to reduce iron contamination load.
Two raw material systems: natural flake graphite flotation concentrate and artificial graphite petroleum coke raw material, with separate initial sieving standards.
2. Initial Sieving Standard for Natural Flake Graphite (Flotation Concentrate Feed)
2.1 Equipment & Screen Mesh Spec
- Machine: High-frequency linear vibrating screen (wet screen for filter cake; dry vibrating screen for dried flotation powder)
- Primary screen mesh: 8–16 mesh (1.0 mm ~ 2.36 mm)
- Wet filter cake (moisture 10%–15%): 8 mesh (2.36 mm)
- Dry flake graphite powder: 12–16 mesh (1.0–1.7 mm)
- Auxiliary secondary fine pre-screen: 60 mesh (250 μm) to remove hard gangue fine gravel mixed in flotation concentrate
- Screen material: 316L stainless steel woven mesh, anti-corrosion, no metal shedding
2.2 Core Control Indexes
- Oversize residue standard (screen-on material):
- 8/12 mesh oversize rate ≤3.0% by mass;
- Oversize components: only rock gangue, no intact graphite flakes; return oversized graphite lumps to coarse crusher for re-crushing.
- Screening efficiency ≥90%: ≥90% of target feed particles pass through the mesh within single screening cycle
- Foreign body removal standard:
- No metal fragments, plastic strips, plant fiber, silica rock in under-screen graphite;
- Visible foreign impurities per 100 kg feed ≤3 pieces.
- Feed particle size after initial sieving: All material <1.0 mm, uniform feed for fine crushing/jet mill.
2.3 Wet vs Dry Initial Sieving Differentiation
Wet initial sieving (post flotation filter cake)
- Material state: Moisture 12%–35%
- Screen: 8 mesh heavy-duty wet vibrating screen with spray deionized water flushing
- Standard: No visible hard rock >2 mm on screen oversize; filter cake agglomerates broken fully to pass mesh.
Dry initial sieving (pre-dried flake graphite)
- Material state: Moisture ≤3.0%
- Screen: 12–16 mesh dry vibrating screen with ultrasonic anti-blocking device
- Standard: No static agglomeration blocking mesh; fine graphite loss rate ≤1.5%.
3. Initial Sieving Standard for Artificial Graphite Raw Material (Petroleum Coke/Green Coke)
3.1 Equipment & Mesh
Raw coke lumps 50–200 mm after jaw coarse crushing → initial sieving:
- Screen mesh: 10 mesh (2.0 mm) primary sieve; 40 mesh (380 μm) secondary pre-sieve
- Equipment: Heavy-duty dry vibrating screen, wear-resistant polyurethane screen frame to avoid iron pollution
3.2 Control Standards
- Oversize >2.0 mm residue ≤2.0%; all oversized coke chunks re-crushed; eliminate refractory stone mixed in coke.
- Under-screen material fully <2 mm, remove fine coke dust below 380 μm temporarily to control BET of final artificial graphite.
- No iron, steel slag, refractory brick fragments in undersize coke powder.
4. Mandatory Supporting Technical Standards for Initial Sieving
4.1 Magnetic impurity interlock matching
Permanent magnetic separator installed before initial sieving: remove iron wear debris from crushers; magnetic substance content of under-screen graphite ≤500 ppb.
4.2 Screen quality & anti-contamination rules
- Mesh aperture tolerance ±0.05 mm, no mesh hole deformation; replace mesh once breakage occurs.
- All screen contact parts: stainless steel / PU lining, no carbon steel to prevent secondary iron pollution (critical for battery-grade graphite).
- Ultrasonic vibration system equipped for dry sieving to resolve graphite static agglomeration and mesh blinding.
4.3 Sampling & Testing Frequency
- Offline sampling every 30 minutes to test screen oversize ratio and foreign impurities;
- Daily sieve residue full inspection to count gangue and metal debris quantity.
5. Distinction: Initial Coarse Sieving vs Post-Spheroidization Fine Sieving
Many production lines confuse initial sieving with intermediate fine screening; clear boundary below:
| Item | Initial Sieving (Raw Material Pre-Treatment) | Fine Sieving (After Spheroidization) |
|---|---|---|
| Mesh range | 8–16 mesh (1–2.36 mm) coarse separation | 200–500 mesh (25–75 μm) precision grading |
| Core function | Remove large gangue, protect crushing equipment | Control PSD, remove ultrafine/over-size graphite particles |
| Residue limit | ≤3% oversize lumps | 325 mesh screen residue ≤0.02% (near zero) |
| Moisture adapt | Wet filter cake / dry coarse powder | Dry graphite powder, moisture <0.5% |
| Efficiency requirement | ≥90% | ≥95%–98% |
6. Common Unqualified Phenomena & Adjustment Standards
- Oversize residue >3%: Lower feeding speed, increase screen vibration amplitude, re-crush oversized lumps separately.
- Mesh blockage (dry sieving): Turn on ultrasonic anti-blocking, reduce feed thickness, control raw material moisture ≤3%.
- Metal foreign bodies in undersize: Check crusher liner wear, strengthen front-end magnetic separation, replace worn metal equipment parts with ceramic lining.
- Excessive fine powder loss: Adjust screen inclination angle, reduce vibration frequency.
7. Summary of Unified Initial Sieving Industrial Standard
- Natural graphite flotation concentrate initial screen: 8–16 mesh, oversize residue ≤3%, screening efficiency ≥90%, no visible metal/rock foreign bodies.
- Artificial petroleum coke initial screen: 10 mesh primary sieve, oversize ≤2%, remove refractory impurities.
- All sieving equipment adopts 316L stainless steel mesh + non-magnetic lining to avoid iron contamination; magnetic separation matched upstream.
- Initial sieving only removes large foreign matter and oversized lumps; precise particle size grading is completed by air classification and fine screening after jet milling/spheroidization.