A Lithium Base Paper Booster Battery Material Safety Data Sheet (MSDS/SDS) is a critical compliance document for international shipments, adhering to GHS (Globally Harmonized System) standards. Below is a detailed breakdown of required MSDS components and their technical specifications:
1. Product & Supplier Identification
- Product Name: Base Paper-Reinforced Lithium-Ion Battery (LiFePO₄/NMC Chemistry)
- Manufacturer: [Company Name], ISO 9001/14001 Certified
- Emergency Contact: 24/7 International CHEMTREC Hotline: +1-XXX-XXX-XXXX
2. Compositional Analysis
| Component | CAS No. | Weight % | Regulatory Limits |
|---|---|---|---|
| Cathode (LiNiMnCoO₂) | 1XX-XX-X | 35-40% | EU REACH SVHC <0.1% |
| Anode (Graphite) | 7XX-XX-X | 25-30% | OSHA PEL 15mg/m³ |
| Electrolyte (1M LiPF₆ in EC:DEC) | 2XX-XX-X | 15-20% | IATA DGR Class 9 |
3. Hazard Classification
- UN3480: Lithium-ion batteries contained in equipment
- GHS Hazard Statements:
- H225: Highly flammable liquid and vapor
- H318: Causes serious eye damage
- H411: Toxic to aquatic life with long-lasting effects
4. Emergency Protocols of Battery MSDS
- Thermal Runaway: Quench with Class D fire extinguishers (Lith-X®) – never use water
- Leak Response: Apply absorbent polymer (PolySorb™) at 3:1 ratio to leaked electrolyte mass
- Medical Intervention: For HF exposure (from LiPF₆), administer calcium gluconate gel immediately
5. Stability & Reactivity Data
- Thermal Decomposition: >150°C initiates exothermic reactions (Q = 500 kJ/kg)
- Hydrolytic Stability: LiPF₆ + H₂O → 2HF + POxFy; requires <30% RH storage
- Incompatible Materials: Avoid contact with Al/Cu (>0.5V potential differential)
6. Transportation Compliance of Battery MSDS
- UN Testing: Successfully passed UN38.3 (T1-T8 tests)
- Packaging:
- Outer: UN-certified 4GV fiberboard (min. burst strength 200kPa)
- Inner: Static-dissipative vacuum-sealed barrier bags
7. Environmental & Disposal Requirements
- Recycling Protocol: Follow IEC 62133-2:2017, max. 2% residual charge for recycling
- Landfill Restrictions: Prohibited under EU Battery Directive 2006/66/EC
- Neutralization: Treat LiPF₆ with 10% NaHCO₃ solution until pH 6.5-7.5
8. Operational Safety Parameters
| Parameter | Specification |
|---|---|
| Max. Stack Pressure | ≤15kN/m² |
| Cutting Voltage | DC 3.7 ±0.05V |
| Ambient Temp Range | -20°C to +60°C (Derating >40°C) |
| Short-Circuit Current | <3×C-rate (per UL 1642) |
9. Toxicological Profile
- LC50 (Inhalation): >5mg/L (Rat, 4h exposure)
- Mutagenicity: Negative in Ames Test (OECD 471)
- Aquatic Toxicity: EC50 Daphnia magna 48h = 100mg/L
10. Global Regulatory Compliance
| Region | Standard | Documentation Requirement |
|---|---|---|
| EU | CLP Regulation | Annex II SDS Format |
| USA | OSHA HazCom 2012 | 16-Section SDS |
| China | GB/T 16483-2020 | Simplified Chinese SDS |
| Japan | ISHA JIS Z 7253 | GHS-Labelled JIS Safety Sheet |
Validation & Certification of Battery MSDS
- Third-party tested per:
- IEC 62133 (Safety)
- UN ST/SG/AC.10/Rev.21 (Transport)
- RoHS 3 (2015/863/EU)
This MSDS template meets IMDG Code Amendment 41-22 and IATA DGR 64th Edition requirements. Maintain version control (Rev.2.3, 2024Q2) and update biannually or after material changes. For customized SDS generation, utilize EHS software platforms like ERA EHSCare or 3E Protect.
Technical Reviewers:
- Certified Industrial Hygienist (CIH #XXXX)
- DGSA Certified Hazardous Materials Specialist


