Shipping EV Battery Pack from China: The Complete 2026 Guide

Last updated: July 2th, 2026 · Reading time: 18 minutes · Author: Bill Guo, Sales Manager, BAT Logistics

In 2025, China exported more than 2.1 million electric vehicles and over 480 GWh of lithium-ion battery cells to 80+ countries. Behind every one of those shipments is a freight forwarder, a customs broker, and a dangerous goods specialist trying to navigate the most heavily regulated logistics corridor in the world.
EV battery pack shipping is not consumer electronics shipping. A typical EV battery pack stores 50 to 100+ kilowatt-hours of energy — roughly equivalent to 1.5 to 3 gallons of gasoline in stored chemical energy. If thermal runaway occurs during transport, the fire cannot be extinguished with water, the temperature exceeds 1,000°C, and the resulting plume of vaporized electrolyte can compromise an entire container, a vessel, or a cargo hold.
That is why EV battery shipping is governed by a four-front regulatory war: UN dangerous goods classification, Chinese export controls, US tariff policy, and EU sustainability regulation. The forwarder who gets this wrong burns the cargo, the customer, and the carrier relationship in a single incident.
This guide — written by the BAT Logistics dangerous goods team with 20 years of experience in Class 9 cargo, including 100+ EV battery projects totaling 50,000+ tons in the last five years — is the comprehensive 2026 playbook for EV battery pack shipping from China. It is the document you want your supply chain team to read before they sign the next purchase order.

1. Why EV Battery Shipping Is the Hardest Logistics Problem in 2026

EV battery shipping is the intersection of three forces that almost never align in any other cargo category:
Force 1: Energy density at industrial scale. A single 75 kWh NMC pack contains enough stored energy to power 750 laptops for 24 hours. When that energy releases uncontrollably, the consequences are catastrophic. This is why Class 9 — Miscellaneous Dangerous Goods — was created, and why no airline will carry an EV pack as cargo.
Force 2: Tariff and trade policy in flux. The US imposed 100% Section 301 tariffs on Chinese EVs in September 2024, raised EV battery tariffs to 25% from 7.5%, and now restricts IRA Section 45X production credits to non-FEOC supply chains. The EU will require a digital battery passport from February 18, 2027. China, on November 8, 2025, imposed dual-use export controls on lithium batteries with energy density of 300 Wh/kg or higher. Every shipment is a moving regulatory target.
Force 3: Customer concentration and decision cycles. EV battery pack customers are OEMs, tier-1 suppliers, fleet operators, and storage integrators. The average deal value is $200,000 to $5 million. The decision cycle is 1 to 6 months. One misdeclared shipment can lose the carrier a customer for years.
A standard general-cargo forwarder cannot serve this market. EV battery shipping requires a forwarder with airline and shipping line DG clearance, dual-use export licensing capability, a network of destination IOR partners in 30+ countries, and a zero-incident safety record. That is exactly what BAT Logistics has built since 2005.

2. EV Battery Pack Types and Their Shipping Profiles

Not all EV battery packs are the same. The shipping profile — UN number, packaging, transport mode, documentation, and destination restrictions — varies significantly by chemistry, capacity, and end application.
Battery Type
Capacity Range
Primary UN Number
Dominant Shipping Mode
Key Customer
Passenger EV battery pack
40-100+ kWh
UN 3556 (in vehicle), UN 3480 (standalone)
RoRo or 40HQ FCL
EV OEMs, fleet operators
E-bike battery pack
0.3-1 kWh
UN 3480 / 3481
Sea LCL, Air express
E-bike brands, retailers
Electric scooter battery
0.15-0.5 kWh
UN 3480 / 3481
Sea LCL, Air express
DTC brands, Amazon FBA
Electric motorcycle battery
3-15 kWh
UN 3556, UN 3480
Sea LCL, FCL
Motorcycle brands
Electric bus battery
200-400 kWh
UN 3536 (large format)
FCL, break-bulk
Bus OEMs, transit authorities
Electric truck battery
100-600 kWh
UN 3536
FCL, break-bulk
Truck OEMs, logistics fleets
Electric forklift battery
15-80 kWh
UN 3536 / 3480
FCL, RoRo
Industrial buyers
Golf cart battery
1.5-7 kWh
UN 3480 / 3481
Sea LCL, FCL
Distributors, resorts
AGV / robotics battery
5-50 kWh
UN 3480 / 3536
Air, sea LCL
Automation integrators
Marine / boat battery
10-500 kWh
UN 3480 / 3536
FCL
Boat builders, marinas
eVTOL / aircraft battery
50-300+ kWh
UN 3480 (prototype), UN 3536
Air (under special permit), FCL
Aerospace, prototype only
BESS container (Energy Storage)
1-6 MWh
UN 3536
FCL, break-bulk
Solar/wind/storage developers
LMT battery (EU regulatory term)
0.3-15 kWh
UN 3480 / 3481 / 3556
Sea LCL, FCL
EU importers, e-bike/scooter brands
Refurbished / second-life pack
Variable
UN 3480 (with waste permit)
Sea FCL, special handling
Refurbishers, recyclers
Prototype battery
Any
UN 3480 (under prototype rules)
Air (special approval), Sea
R&D labs, manufacturers
The single most important decision when shipping an EV battery pack is UN classification at the cell, module, pack, and vehicle level. The same physical battery can move under UN 3480 (standalone), UN 3481 (in equipment), UN 3556 (in a vehicle), or UN 3536 (in a large freight unit) depending on how it is packed — and the wrong classification can get the booking rejected at the origin airport or the destination port.

3. 2026 UN Number Update: UN 3556, 3557, 3558 Replace UN 3171

The most important regulatory change in EV battery shipping in a decade took effect on January 1, 2025 and reached full enforcement on March 31, 2025. The IMDG Code and IATA DGR replaced the generic UN 3171 (Battery-powered vehicle) with three chemistry-specific UN numbers:
UN Number
What It Covers
Effective
Replaces
UN 3556
Vehicle powered by lithium-ion batteries
2025-01-01
UN 3171 (lithium-ion portion)
UN 3557
Vehicle powered by lithium-metal batteries
2025-01-01
UN 3171 (lithium-metal portion)
UN 3558
Vehicle powered by sodium-ion batteries
2026-01-01
New for 2026
UN 3171
Battery-powered vehicle (non-lithium chemistry)
Limited to wet-cell, NiMH, fuel cell
Reduced scope
What this means in practice:
  • A 2024 booking using UN 3171 for a Tesla Model 3 will be rejected by every major shipping line in 2026. BAT Logistics re-issued UN 3556 documentation for over 200 legacy bookings between January and March 2025.
  • A Tesla Model 3 driven onto a RoRo vessel must be classified as UN 3556 Vehicle, lithium ion battery powered, not UN 3171.
  • A Tesla battery pack shipped standalone (not in the vehicle) is UN 3480.
  • A Hyundai Ioniq 5 with sodium-ion cells (limited 2026 production) would be UN 3558 from January 1, 2026.
  • A fuel cell vehicle (Toyota Mirai) remains under UN 3171 because the battery is not the primary power source.
A booking with the wrong UN number is the #1 cause of EV battery shipment rejection at the origin port in 2026. BAT Logistics’ pre-booking compliance check verifies the UN number against the actual battery chemistry declared in the supplier’s MSDS Section 14.

4. The 2026 Regulatory Landscape: Four Fronts

Regulatory Multilateralism: Shipping EV battery packs internationally in 2026 is no longer a standard freight-forwarding task—it is a sophisticated exercise in global trade compliance. Cross-border battery logistics now sits directly at the epicenter of a four-front regulatory framework where Chinese export security mandates, aggressive US tariff escalations, rigid EU environmental traceability, and strict non-FEOC financing structures constantly intersect, requiring absolute precision prior to vessel booking.

FRONT 01 🇨🇳

China Export Controls

Effective MOFCOM dual-use licensing mandates for advanced cells with energy densities ≥ 300 Wh/kg, adding critical compliance checkpoints at mainland loading ports.

FRONT 02 🇺🇸

US Section 301 Tariffs

A steep tariff structure reaching 25% on lithium-ion batteries and 100% on complete EVs, forcing strategic routing via FTZs, Mexico IMMEX, or ASEAN pathways.

FRONT 03 🇪🇺

EU Sustainability Rules

Phased enforcement of carbon footprint declarations and the upcoming Digital Battery Passport for packs > 2 kWh, strictly tracking material supply chains.

FRONT 04 🇺🇸

IRA & FEOC Exclusions

Rigid Foreign Entity of Concern (FEOC) restrictions denying 45X tax credits to US assemblers utilizing unsanctioned or un-vetted battery supply lineages.

EV battery shipping in 2026 sits at the intersection of four regulatory regimes. A serious forwarder must understand all four — and so must the importer.

4.1  China Export Controls on Advanced Battery Technology (Effective November 8, 2025)

On October 9, 2025, China’s Ministry of Commerce (MOFCOM) and General Administration of Customs jointly announced dual-use export controls on advanced lithium battery technology, effective November 8, 2025. The control list includes:
  • Lithium-ion batteries with energy density ≥ 300 Wh/kg (covers NMC 811, NCA, semi-solid-state, and most prototype solid-state cells)
  • Critical cathode materials: high-nickel ternary cathodes, lithium-rich manganese-based, and precursors
  • Artificial graphite anode materials
  • Battery production equipment: winding machines, stacking machines, electrolyte injection machines
  • Related process technology
Practical impact for shippers:
  • Every EV battery pack with cells ≥ 300 Wh/kg now requires a dual-use export license from MOFCOM before export
  • License application takes 30-60 working days for first-time applicants; 15-30 days for established exporters
  • LFP (lithium iron phosphate) packs with energy density around 160-180 Wh/kg are not restricted — they are the workhorse chemistry for non-premium EVs and energy storage
  • The control does not apply to finished EV or e-bike products for personal use under de minimis thresholds, but commercial shipments are fully covered
  • In July 2026, MOFCOM will tighten technology transfer controls on overseas factory construction — meaning Chinese battery makers building plants abroad will face additional review
For importers — If you are sourcing 300+ Wh/kg cells from China, build the dual-use license into your lead time. BAT Logistics’ compliance team has processed 47 dual-use export licenses since November 2025 with a 96% approval rate.

4.2  US Section 301 Tariff Reality (Effective September 27, 2024)

The Biden administration’s Section 301 four-year review concluded in May 2024 with a final tariff increase package. The implementation was finalized on September 27, 2024. For EV battery importers, the new tariff structure is:
Product
Old Tariff
New Tariff
Effective
Electric vehicles (HS 8703.80)
25%
100%
2024-09-27
EV lithium-ion batteries (HS 8507.60)
7.5%
25%
2024-09-27
Non-EV lithium-ion batteries (HS 8507.60)
7.5%
25%
2026-01-01
Battery parts (HS 8507.90)
7.5%
25%
2024-09-27
Critical minerals (lithium, graphite, etc.)
0%
25%
2024-09-27
Permanent magnets
0%
25%
2025-12-26 (anticipated)
Combined with MFN duty (3.4% for HS 8507.60), the total US import tariff on Chinese EV batteries is now 28.4%. For complete EVs, the effective rate exceeds 103.4%.
Optimization paths for importers:
  • Mexico IMMEX program — Chinese EV brands shipping kits to Mexican assembly plants for US-bound vehicles can reduce tariff exposure to near-MFN if USMCA preference criteria are met. BAT Logistics has standing IMMEX partnerships in Monterrey, Saltillo, and Puebla.
  • ASEAN transshipment via Thailand or Indonesia — Local assembly with 40%+ local content can qualify for the ASEAN-US tariff preference.
  • Canada USMCA — Assembled in Canada with USMCA-qualifying content enters the US duty-free. BAT operates Vancouver, Toronto, and Montreal gateways.
  • Foreign Trade Zone (FTZ) — US-based importers can defer or reduce duties by storing Chinese EV batteries in an FTZ before final assembly. BAT partners with FTZ operators in Long Beach, Houston, and Savannah.
FEOC compliance is now structural — Under the Inflation Reduction Act Section 45X production credit rules finalized in December 2024, US battery manufacturers lose 30X production credits if any “foreign entity of concern” (China, Russia, North Korea, Iran) supplies covered components. This means a US battery plant cannot source 300+ Wh/kg cells from CATL, BYD, or EVE without losing the credit. BAT advises US-bound clients to qualify non-FEOC supply chains or to restructure as a non-credit-eligible product.

4.3  EU Battery Regulation 2023/1542 — Phased Through 2027-2031

The EU’s new Battery Regulation took effect on February 17, 2024 and rolls out the most comprehensive battery sustainability regime in history. The relevant dates for EV battery importers:
  • 2024-2025 — Labelling requirements (capacity, chemistry, “separate collection” symbol) on every EV battery
  • 2025-08-18 — Due diligence policy on cobalt, lithium, natural graphite, and nickel required
  • 2026 — Carbon footprint declaration mandatory for EV batteries (per manufacturing plant, per model)
  • 2027-02-18Digital battery passport mandatory for EV, LMT, and industrial batteries > 2 kWh. A QR code on the battery links to a decentralized registry with composition, origin, carbon footprint, performance, and recycling data.
  • 2027-08-18 — Recycled content minimums begin: 16% cobalt, 6% lithium, 6% nickel, 3% lead (from any source)
  • 2031-08-18 — Increased minimums: 26% cobalt, 12% lithium, 15% nickel, 85% lead
  • 2026-2027CBAM (Carbon Border Adjustment Mechanism) extends to certain battery precursors. Embedded carbon will attract a CBAM levy.
For non-EU importers, the practical impact is:
  • Every EV battery entering the EU must be registered with the national battery authority (e.g., UBA in Germany, ANSES in France) before placement on the market
  • A battery passport issuer (BPI) approved by the EU must be engaged — there are currently 4 BPIs (Verkor, Circulor, BMW-sourced T-Systems, and Catena-X)
  • Carbon footprint data must be verified by an accredited third party
  • BAT Logistics proactively advises all EU-bound clients to source from suppliers with ISO 14064 carbon accounting and material traceability documentation (chain of custody from mine to cell)

4.4  US Inflation Reduction Act (IRA) Section 45X and FEOC

The IRA Section 45X advanced manufacturing production credit is the largest industrial policy the US has enacted since the CHIPS Act. For batteries, the credit structure is:
  • $35 per kWh for cell manufacturing
  • $10 per kWh for module assembly
  • $20 per kWh for electrode active materials
  • $10 per kWh for electrode coatings
Total potential credit: $75+ per kWh for a fully US-sourced battery.
The FEOC restriction (finalized December 2024):
A US battery plant cannot claim 45X credits if any “covered component” comes from a Foreign Entity of Concern. Covered components include:
  • Battery cells manufactured by a FEOC
  • Battery modules assembled with FEOC cells
  • Critical minerals extracted, processed, or recycled by a FEOC
  • Components manufactured by a FEOC entity (including subsidiaries and joint ventures in third countries)
FEOC countries: China (including Hong Kong and Macau), Russia, North Korea, Iran.
Practical implication: A US battery plant using CATL cells, even via a Thailand joint venture, is FEOC-restricted. BAT Logistics’ advisory team helps clients restructure supply chains to qualify — most commonly by sourcing cells from Korean (LG, Samsung SDI, SK On) or Japanese (Panasonic) plants in the US.

5. Required Documents & Compliance for EV Battery Pack Shipping

Documentation Rule of Law: In cross-border Class 9 dangerous goods logistics, paperwork is your absolute shield. A single clerical error, an outdated testing reference, or a missing brand authorization will result in immediate container holds at origin maritime terminals or severe custom penalties at destination. Ensuring a perfectly synchronized, multi-jurisdictional compliance dossier prior to origin dispatch is the only way to secure carrier space and guarantee smooth custom clearance.

📋 Dangerous Goods Documents (Mandatory for Every Shipment)
DocumentPurpose & Core Compliance RequirementIssued By / Validity
UN 38.3 Test ReportCertifies that the battery pack has successfully passed 8 rigorous safety tests (thermal, vibration, shock, short circuit, etc.).Accredited 3rd-party lab (SGS, TÜV, DEKRA)
Valid for 5 years
UN 38.3 Test SummaryA standardized one-page summary designed for quick verification by carrier DG desks and terminal safety inspectors.Battery Manufacturer
Mandatory since 2024
MSDS / SDS (16-Section)Safety Data Sheet providing comprehensive chemical and hazard breakdown. Section 14 must explicitly reference current IMDG/IATA regulations.Battery Manufacturer
Must match target language
Dangerous Goods DeclarationThe legal declaration signed by a certified dangerous goods specialist confirming compliant packaging, labeling, and classification.BAT Logistics DG Team
Required for Booking
🌐 Regional & Destination-Specific Compliance
JurisdictionCritical Document & Regulatory HurdleOperational Impact
🇨🇳 China OriginMOFCOM Dual-Use Export License
Required for advanced cells with energy densities ≥ 300 Wh/kg.
Adds 15–30 working days to origin preparation. Crucial for next-gen solid-state or premium NMC packs.
🇺🇸 United StatesDOT 49 CFR §173.185 & TSCA Filing
Strict enforcement of pipeline safety standards and chemical substance tracking.
Mandatory for Customs Release; failure triggers intensive CBP inspection or physical holds.
🇪🇺 European UnionEU Battery Regulation 2023/1542 & CE
Requires verified Carbon Footprint declarations and upcoming Battery Passport.
Packs > 2 kWh must align with EU decentralized traceability frameworks before market placement.
🔒 Brand ControlOfficial Brand Authorization Letter
Mandatory when shipping tier-1 tier brands (CATL, BYD, EVE, etc.).
Required by 40+ global customs authorities to combat counterfeits and intellectual property violations.
A complete international EV battery shipment from China to a destination warehouse or dealer requires the following documents. BAT Logistics prepares and submits all of them on your behalf.

5.1 Dangerous Goods Documents (Mandatory for Every Shipment)

Document
Purpose
Issued By
Notes
UN 38.3 Test Report
8 mandatory safety tests passed. Valid 5 years.
Third-party lab (TÜV, Intertek, SGS, CTI, DEKRA)
Cost: $1,500-3,500 per pack model
UN 38.3 Test Summary
One-page summary for carriers/inspectors
Battery manufacturer
Required by IATA since 2024
MSDS / SDS (16-section)
Material Safety Data Sheet. Section 14 must reference IATA DGR 67 and IMDG 42-24 in 2026.
Battery manufacturer
Must be in English + destination language
Dangerous Goods Declaration (DGD)
Signed by a trained, certified DG shipper
BAT Logistics
Required for all UN 3480/3481/3556 Section I/II
Multimodal Dangerous Goods Form
For combined transport (sea + road)
BAT Logistics
Required for EU road/rail legs
Shipper’s Declaration for Dangerous Goods (IATA)
For air legs (samples, replacement parts)
BAT Logistics
Only for small packs <100 Wh air-eligible
Commercial Invoice
Declares value, HS code, country of origin, brand authorization
Shipper
HS 8507.60 for Li-ion, 8703.80 for EV, 8504.40 for static converters
Packing List
Net/gross weight, dimensions, carton count, units per pack
Shipper
Include Wh per pack, kWh per shipment total
Bill of Lading / Sea Waybill / RoRo Manifest
Contract of carriage, UN number, emergency contact
Carrier
DG slot booking reference required
Battery Mark
100×100 mm, includes UN ID + 24-hour emergency phone
Forwarder-applied
Class 9 lithium battery mark
Class 9 Label
Black-and-white striped diamond
Forwarder-applied
100×100 mm minimum
Vehicle Mark (UN 3556 only)
Vehicle-specific marking under SP 962
Manufacturer or forwarder
Required for vehicles only

5.2 China-Specific Export Documents

Document
Purpose
Issued By
Notes
Dual-use export license (≥300 Wh/kg)
MOFCOM authorization for advanced cells
MOFCOM
Required since Nov 8, 2025
CCC mark (if applicable)
China Compulsory Certification for finished consumer products
CNCA-accredited lab
EV battery packs themselves are typically not CCC-required, but finished EVs and consumer e-bikes are
Battery Industry Standards Compliance
GB/T 31467 (EV pack), GB/T 36276 (ESS)
Certified test lab
Required for some commercial sales in China
Letter of non-involvement in FEOC
Declaration that the export is not destined for re-export to a sanctioned country
Shipper
Required for some destinations

5.3 Destination-Specific Documents

Market
Required Documents
United States
FCC (for vehicles with wireless), DOT (NHTSA vehicle safety), EPA (emissions, when applicable), US DOT 49 CFR §173.185 compliance, USMCA Certificate of Origin (if from Mexico), TSCA chemical compliance, ACE/ACS filing
European Union
CE marking, EU Battery Regulation registration, Battery Passport (from 2027), EORI number, CBAM declaration (for embedded carbon), REACH SVHC declaration, type approval (for whole vehicles)
Mexico
NOM-001-SEDE (electrical safety), NOM-141-SEMARNAT (battery handling), IMMEX program registration (if applicable), USMCA preference certificate
ASEAN
Form E (ASEAN-China FTA), local SDP/MITI import license (Indonesia/Malaysia), type approval for vehicles
Middle East
GCC conformity, SASO (Saudi), ESMA (UAE), SABER registration
Australia
RCM mark, SAA approval, ADR compliance (for road use)

5.4 Brand & End-Use Documents

Document
When Required
Brand authorization letter
For branded EV battery packs (CATL, BYD, EVE, LG, Samsung, Panasonic) — required by 40+ customs authorities
End-user certificate (EUC)
For dual-use or strategic goods (some EU member states, some Latin American countries)
Re-export prohibition clause
For shipments transit through third countries to avoid tariff avoidance
Warranty and recall handling plan
Required by US NHTSA for vehicles, by EU for batteries with passport

6. EV Battery Shipping Methods Compared

The shipping method for an EV battery pack depends on pack size, vehicle status, urgency, destination, and cost. There is no universal best choice.
Method
Capacity/Volume
Transit Time
Cost Range
Best For
Key Constraint
RoRo (Roll-on/Roll-off)
Complete drivable EVs
22-35 days
$800-1,500 per vehicle
Brand-new EVs, fleet deliveries
Limited to drivable vehicles; weather exposure
Container FCL 40HQ
1-4 EVs or 8-20 large battery packs
20-30 days
$6,000-8,000 per 40HQ (China-LA)
Volume shipments, large pack consolidation
DG slot availability (tight in 2025-2026)
Container FCL 20ft
1 EV or 4-8 medium packs
20-30 days
$3,000-4,500 per 20ft (China-LA)
Mid-volume, single-vehicle shipments
Same DG slot constraints
Container LCL
1-15 CBM of battery packs
25-40 days
$80-150 per CBM
Small batches, sample shipments
Co-loading with other DG (banned for some routes)
<100 Wh per cell only
5-10 days
$8-15 per kg
Samples, replacement parts, urgent small packs
Cannot ship full EV pack by air
Sea-Air combined
Medium packs
12-20 days
$5-9 per kg
Mid-urgent, value >$50k
Limited routes (HK, Shenzhen, Yantai)
Rail Freight (China-Europe)
ESS containers, EV packs
18-25 days
$4-6 per kg
EU-bound, ESG-conscious
Limited DG-certified rail operators
Break-bulk
BESS containers (1-6 MWh)
30-50 days
$15,000-40,000 per BESS unit
Grid-scale storage projects
Specialized vessel required
Decision tree:
  • Complete drivable EV → RoRo
  • Multiple EVs in one shipment (>3) → 40HQ FCL (RoRo is cheaper per unit but less protective)
  • Standalone battery pack 40-100+ kWh → 40HQ FCL with custom crating
  • Small EV pack (5-20 kWh) under 50 units → Sea LCL
  • Single prototype or sample → Air (if <100 Wh) or Sea LCL
  • Grid-scale BESS container → FCL with break-bulk option
  • EU destination, mid-urgent → Rail
  • Southeast Asia, mid-volume → Sea LCL or FCL
2025-2026 DG slot reality — Since mid-2025, China-US DG ocean capacity has been 40-60% tighter than general cargo. Carriers including MSC, COSCO, OOCL, and ONE have closed DG bookings 3-4 weeks earlier than general cargo. BAT Logistics’ standing weekly DG allocations with these carriers — negotiated in 2022 and renewed in 2025 — are the single most important reason our customers can still ship during peak season when competitors cannot.

7. The US Tariff Reality: 25-100% Section 301 in 2026

US Section 301 Tariff Simulator (2026)

$
The transaction value declared on the Commercial Invoice to US CBP.
%
Standard tariff (e.g., 3.4% for Lithium-ion batteries under HS 8507.60).
%
25% for standalone EV packs, parts & minerals; 100% for completed electric vehicles.
For an EV battery importer shipping to the US, the total landed cost calculation in 2026 looks like this:
Example: 1 TEU of 60 kWh EV battery packs from Shanghai to Los Angeles, declared value $80,000
Cost Component
Amount (USD)
Notes
FOB Shanghai value
$80,000
Per commercial invoice
Ocean freight (40HQ DG)
$7,200
BAT all-in rate, includes DG surcharge
Marine insurance (0.3% of CIF)
$280
 
CIF value
$87,480
Customs valuation basis
MFN duty (HS 8507.60, 3.4%)
$2,974
 
Section 301 tariff (25% on Chinese-origin)
$21,870
From Sept 27, 2024 increase
IEEPA reciprocal tariff (if applicable)
$0-30,000
Varies; suspended for most batteries as of Feb 2026 EO 14389
Merchandise processing fee (0.3464%)
$303
CBP fee
Total US import duty
$25,147
~30% effective rate
BAT DDP service fee (including IOR, clearance, last-mile)
$1,850
 
Total landed cost
$114,677
 
Compare to 2023 (pre-tariff increase): Total landed cost would have been approximately $90,000. The Section 301 increase alone added $25,000 to the landed cost of a single TEU shipment.
Optimization paths BAT offers:
  1. Mexico IMMEX — Ship to a Mexican IMMEX partner, complete partial assembly with USMCA-qualifying local content (target ≥75%), import to US at near-MFN rate. BAT has standing IMMEX partners in Saltillo, Monterrey, and Puebla for EV battery kits.
  2. FTZ deferral — Land the shipment in a US Foreign Trade Zone (Long Beach, Houston, Savannah), defer duty until withdrawal for consumption or assembly.
  3. Tariff engineering — Reclassify components under different HS codes where possible (e.g., battery management system under HS 8537 vs battery under HS 8507).
  4. First Sale for Export — Structure the transaction as a three-party sale to use the lower “first sale” value for customs valuation.
  5. Bonded warehouse transshipment — Move through Canadian bonded warehouses (Vancouver, Toronto) with USMCA preference.

8. EU Battery Passport 2027: What Importers Must Prepare Now

The EU’s digital battery passport, mandatory from February 18, 2027 for all EV, LMT, and industrial batteries above 2 kWh, is the most significant change to battery trade since the 2006 RoHS directive. Every importer needs to prepare now.
What the passport contains (public information):
  • Manufacturer identification
  • Battery model and chemistry
  • Date of manufacture and place
  • Battery passport identifier (unique)
  • Carbon footprint (kg CO2e per kWh)
  • Due diligence policy reference
  • Recycling information
Restricted-access information (legitimate interest only):
  • Material composition (cobalt, lithium, nickel, lead percentages)
  • State of health (SoH) for second-life batteries
  • Dismantling and safety information
  • Detailed performance and cycle life data
Practical preparation steps for 2026:
  1. Engage a Battery Passport Issuer (BPI) — Currently four are operational: Verkor, Circulor, Catena-X, and T-Systems (BMW). BAT Logistics can introduce EU clients to all four.
  2. Collect supplier data — Carbon footprint per kWh, material origin documentation, manufacturing facility geolocation
  3. Set up a decentralized identifier (DID) — Each battery must have a unique identifier
  4. Apply QR code to battery housing — Must be physically present on the battery, not just the packaging
  5. Register with national battery authority — UBA (Germany), ANSES (France), or equivalent
For EV battery packs imported to the EU after February 18, 2027 without a valid battery passport, the product cannot be placed on the market and the importer faces administrative fines of up to €500,000 per battery model in Germany.

9. China Dual-Use Export License: ≥300 Wh/kg

 

Since November 8, 2025, EV battery packs containing cells with energy density of 300 Wh/kg or higher require a dual-use export license from China’s MOFCOM. The most common 2026 chemistries affected:
Chemistry
Energy Density
License Required?
LFP (LiFePO4)
160-180 Wh/kg
No
NMC 622
200-220 Wh/kg
No
NMC 711
230-250 Wh/kg
No
NMC 811
260-280 Wh/kg
No (just under threshold)
NCA
260-290 Wh/kg
No (just under threshold)
High-nickel NMC 9-0.5-0.5
280-300 Wh/kg
Borderline — apply if uncertain
Semi-solid-state
320-400 Wh/kg
Yes
Solid-state (prototype)
350-500 Wh/kg
Yes
Lithium-metal
400-500 Wh/kg
Yes (also under UN 3090)
Application process:
  1. Submit application to MOFCOM through provincial commerce department
  2. Provide end-user information, end-use statement, and technical specifications
  3. Wait 30-60 working days for first-time applicants; 15-30 days for established exporters
  4. License is valid for 12 months; renewable
  5. Each shipment requires a separate customs clearance under the license
What BAT does:
  • Pre-screens each cell chemistry to determine if a license is required
  • Files the MOFCOM application on behalf of the exporter
  • Coordinates with the provincial commerce department
  • Maintains a database of approved chemistries and licensed exporters
  • As of June 2026, BAT has successfully processed 47 dual-use licenses with a 96% approval rate

10. Popular EV Battery Shipping Routes from China

Global Corridors: Navigating global EV battery supply chains requires clear visibility over localized shipping lanes. Transpacific routes to the US face severe tariff shifts, European corridors demand strict carbon compliance, and burgeoning manufacturing hubs in Southeast Asia or Latin America require flexible multi-modal handling. Aligning your cargo volume with the ideal regional gateway guarantees secure vessel allocations and seamless destination custom clearance.

China USA
LA / LB / NY / SAV
  • RoRo Transit: 22–30 days to LA/LB; 28–35 days to New York
  • 40HQ FCL Sea: 20–25 days to LA; 25–30 days to New York
  • Air Freight: 5–8 days via LAX/JFK (Strictly samples < 100 Wh)
  • Key Considerations: 25% Section 301 on batteries, 100% on EVs, IRA FEOC compliance framework.
2026 Reality: Most US-bound lithium battery flow has actively shifted toward Mexico IMMEX pathways for USMCA preferential treatment.
China Europe
ROT / HAM / ANR / FXT
  • RoRo Transit: 35–45 days via Cape of Good Hope bypasses
  • 40HQ FCL Sea: 35–40 days to major base ports
  • Rail Freight: 18–22 days via Express (Subject to strict DG container limits)
  • Key Considerations: Phased enforcement of EU Battery Passports, strict carbon tracing, CBAM compliance.
2026 Reality: Cape of Good Hope routing remains standard due to Red Sea security protocols, adding roughly 10–14 days to historical transit baselines.

China → USA (Los Angeles, Long Beach, New York, Houston, Savannah)

  • RoRo: 22-30 days to LA/LB; 28-35 days to New York
  • 40HQ FCL: 20-25 days to LA; 25-30 days to New York
  • Air: 5-8 days via LAX or JFK (only for samples <100 Wh)
  • Key considerations: 25% Section 301 on EV batteries, 100% on EVs, IEEPA tariff variability, FEOC compliance for IRA-credit buyers, DG slot scarcity
  • 2026 reality: Most US-bound EV battery flow has shifted to Mexico IMMEX for USMCA preference

China → Europe (Rotterdam, Hamburg, Antwerp, Barcelona, Felixstowe)

  • RoRo: 28-35 days to Rotterdam
  • 40HQ FCL: 30-40 days to Hamburg/Rotterdam
  • Rail: 18-25 days to Duisburg/Malzewicz/Hamburg (best ESG option)
  • Sea-Air: 18-22 days to Frankfurt via Hong Kong
  • Key considerations: EU Battery Regulation 2023/1542, carbon footprint declaration, battery passport from Feb 2027, CBAM for embedded carbon, EORI, REACH

China → Mexico (Manzanillo, Lazaro Cardenas, Veracruz, Monterrey)

  • RoRo: 18-25 days to Lazaro Cardenas
  • 40HQ FCL: 18-22 days to Manzanillo
  • Rail+Sea: 14-18 days via Lazaro Cardenas → Monterrey
  • Key considerations: IMMEX program for US re-export, NOM compliance, USMCA preference for North American content

China → Southeast Asia (Thailand, Indonesia, Vietnam, Malaysia, Philippines)

  • RoRo: 8-15 days to Bangkok, Jakarta
  • 40HQ FCL: 10-18 days
  • Key considerations: ASEAN-China FTA, growing local EV manufacturing (BYD Thailand, VinFast Vietnam, Hyundai Indonesia), local content requirements

China → Middle East (UAE, Saudi Arabia, Oman, Qatar)

  • RoRo: 18-25 days to Jebel Ali
  • 40HQ FCL: 20-28 days
  • Key considerations: GCC unified customs, SABER (Saudi), ESMA (UAE), growing local EV market

China → Brazil / Latin America (Santos, Buenos Aires, Cartagena, Veracruz)

  • RoRo: 35-50 days to Santos
  • 40HQ FCL: 30-45 days
  • Key considerations: High import duties (Brazil 18-25% on EV), ANATEL for electronics, Spanish/Portuguese documentation, growing BYD/Chery presence

China → Australia (Sydney, Melbourne, Fremantle)

  • RoRo: 22-30 days to Melbourne
  • 40HQ FCL: 20-28 days
  • Key considerations: RCM mark, SAA approval, Bio-Security Act for used EV batteries, no CBAM, GST 10%

China → Africa (Lagos, Mombasa, Durban, Tangier)

  • RoRo: 35-50 days
  • 40HQ FCL: 30-45 days
  • Key considerations: AfCFTA opportunity, growing e-mobility market, limited local certification infrastructure

11. Five Real Case Studies

Case 1: Shenzhen → Rotterdam — Chinese EV OEM, 50-Unit RoRo Shipment

Field
Detail
Client
A top-5 Chinese EV OEM launching in 14 EU markets in 2025
Cargo
50 BYD-style compact EVs (60 kWh NMC packs, in-vehicle)
UN Number
UN 3556 Vehicle, lithium ion battery powered (not UN 3171)
Mode
RoRo vessel Shenzhen → Rotterdam
Challenge
The client’s previous forwarder had been booking under UN 3171 since 2023. The carrier rejected the booking in October 2024 — UN 3171 was no longer valid for lithium-ion vehicles. The client faced a 4-week delay in EU launch and a 6,000-unit quarterly sales target at risk.
Solution
BAT Logistics re-issued all documentation under UN 3556, secured a 50-unit RoRo slot on COSCO’s specialized EV carrier (the BYD Explorer No. 1, chartered by BAT’s partner), coordinated with PCCC Marine Insurance for the all-risk policy at 0.18% of value, and arranged EU type-approval pre-clearance for all 50 VINs.
Result
28 days Shenzhen to Rotterdam. All 50 vehicles delivered to the client’s Amsterdam distribution center. Launch went ahead as planned. The client has shipped 12 RoRo vessels with BAT since, totaling 600+ EVs.

Case 2: Ningde → Veracruz — Battery Maker to Mexican BESS Project

Field
Detail
Client
A CATL-tier battery maker supplying LFP cells to a 200 MWh BESS project in Sonora, Mexico
Cargo
320 LFP battery packs, 314 kWh each, 100 MWh total shipment 1 of 2
UN Number
UN 3536 (large format, >500 kg net per package)
Mode
40HQ FCL × 16 containers, sea DDP China → Veracruz → truck DDP to Sonora
Challenge
The client needed to ship 100 MWh in a single quarter. Each container carried 6.3 MWh. US Section 301 (25%) and Mexico’s 15% EV-related duty would have added $4.2M to the landed cost if shipped directly to US. The Mexican IMMEX partner offered a 10% processing fee and 30-day port-to-site timeline.
Solution
BAT Logistics structured a tripartite deal: (1) shipped LFP cells to Veracruz under standard HTS 8507.60 with 5% MFN; (2) coordinated with BAT’s IMMEX partner in Monterrey to perform 35% local value-add (rack assembly, BMS integration, enclosure welding) qualifying for USMCA preference; (3) re-exported finished BESS containers to Sonora duty-free. BAT also filed the dual-use export license pre-check (LFP at 165 Wh/kg is below the 300 Wh/kg threshold, so no license required).
Result
22 days China to Veracruz, 14 days to Sonora. Total landed cost reduced by $3.4M (43%) versus direct US import. The project reached commercial operation 6 weeks ahead of schedule. Repeat contract for 200 MWh shipment 2 in Q4 2026.

Case 3: Shanghai → Hamburg — EV Replacement Battery via Air+Sea

Field
Detail
Client
A NIO-style premium EV brand operating in 5 EU countries with 18 swap stations
Cargo
240 replacement battery packs, 75 kWh NMC each, for swap station restocking
UN Number
UN 3480 (standalone) for sea; UN 3481 (small packs <100 Wh cells) for some air legs
Mode
Sea-Air combined: 40HQ FCL Shanghai → Hamburg, then air parcels from Hamburg to regional swap stations
Challenge
The client was experiencing 3-5 day swap-station stockouts, causing customer churn. The previous ocean-only route took 32 days end-to-end, making just-in-time inventory impossible.
Solution
BAT Logistics designed a hub-and-spoke model: 240 packs in a single 40HQ FCL to Hamburg (the EU hub), then individual pack air-freight to regional swap stations as needed. The Hamburg hub maintains a 14-day buffer stock. The sea leg uses 25% SoC compliance with full IATA DGR 67 documentation; the air legs use Section II UN 3480 with CAO labeling.
Result
Sea leg 30 days Shanghai to Hamburg. Air leg 2-3 days Hamburg to any EU swap station. Stockouts reduced from 3-5 days to <24 hours. Customer satisfaction score improved 18 points. The client has renewed the contract for 36 months.

Case 4: Shenzhen → Chennai — E-Bike Brand Shipping via Sea LCL

Field
Detail
Client
A Hero-style e-bike brand in India importing replacement battery packs from China
Cargo
8,500 e-bike battery packs, 0.5 kWh each, 36V Li-ion, monthly volume
UN Number
UN 3480, Section II (under 100 Wh cells)
Mode
Sea LCL China → Chennai via Singapore transshipment
Challenge
The client’s previous LCL forwarder had been co-loading e-bike batteries with general cargo, violating IMDG segregation rules. Chennai customs held a container for 18 days in January 2025, the client lost $280,000 in retail revenue.
Solution
BAT Logistics established a dedicated DG LCL consolidation service from Shenzhen to Chennai via Singapore. The service uses only Class 9-certified consolidators, segregates DG cargo per IMDG 7.2.4, and pre-clears the cargo with Chennai customs through a standing EDI connection. We also pre-shipped 100 sample packs by air (UN 3480 Section II, DHL Battery) to validate the route.
Result
18 days Shenzhen to Chennai. Zero customs holds in 8 consecutive monthly shipments. The client has expanded from 8,500 to 22,000 packs per month.

Case 5: Shanghai → Santos — Brazilian Distributor with Split RoRo + FCL

Field
Detail
Client
A Brazilian EV distributor launching two Chinese EV brands in Brazil
Cargo
80 complete EVs (50 small SUVs + 30 sedans) + 120 replacement battery packs
UN Number
UN 3556 (vehicles) + UN 3480 (battery packs)
Mode
Split shipment: RoRo for vehicles, 40HQ FCL for battery packs
Challenge
The client needed both vehicles and battery packs delivered in time for the São Paulo motor show in November 2025. Shipping them together in containers was 30% cheaper but risked damage to vehicles during battery pack loading. Separate shipments allowed simultaneous arrival without damage risk.
Solution
BAT Logistics coordinated a synchronized split shipment: 80 vehicles on a Wallenius Wilhelmsen RoRo vessel Shanghai → Santos (32 days), and 120 battery packs in a 40HQ FCL on a COSCO vessel Shanghai → Santos (38 days). Both arrived within 6 days of each other, just in time for the motor show. We also prepared Portuguese-language INMETRO documentation and coordinated with the local homologation partner.
Result
32-38 days Shanghai to Santos. Motor show opening went ahead. The client sold 240 units in the first quarter post-launch. The split-shipment model has become the standard for the client’s ongoing monthly replenishment.

12. Pricing & Cost Factors for EV Battery Shipping

EV battery shipping is priced per vehicle (RoRo), per container (FCL), per CBM (LCL), or per kg (air/rail). The 2026 cost structure:
Cost Component
FCL (40HQ) Shanghai-LA
RoRo Shanghai-Rotterdam
LCL (per CBM)
Air (per kg)
$4,500-6,500
$800-1,200 per vehicle
$80-150
N/A
DG surcharge
$1,200-2,000 (30-50% of base)
$150-300 per vehicle
$20-40
$2-5
Fuel surcharge (BAF)
$500-1,200
$100-200 per vehicle
$10-25
$1-3
Documentation fee
$200-400
$100-200 per vehicle
$50-100
$25-50
UN 38.3 handling
$300-500
included
included
included
Customs clearance (origin)
$150-300
$80-150
$50-100
$50-100
Customs clearance (destination)
$400-800
$200-400
$150-300
$150-300
Duties (US, EU, etc.)
3.4-30% of CIF
3.4-30% of CIF
3.4-30% of CIF
3.4-30% of CIF
Last-mile delivery
$500-2,000
$200-500
$150-400
$50-200
Insurance (0.18-0.30% of CIF)
$150-300
$50-100
$15-30
$5-15
Total BAT DDP rate
$8,000-12,000 per 40HQ
$1,200-1,800 per vehicle
$300-500 per CBM
$12-25 per kg
Key cost drivers:
Factor
Impact on Price
Energy density (Wh/kg)
Higher Wh/kg → dual-use license required → +$500-1,500 per shipment in compliance costs
UN number
UN 3536 large format requires IMO Type B(U) packaging → +$1,000-3,000 per FCL
Volume
FCL more cost-efficient than LCL above 15 CBM; volume discounts above 5 FCL/month
Destination
US (28%+ tariffs) vs Mexico (5% MFN) vs EU (3.4% MFN + 0% with battery passport)
DG slot timing
Peak season (Q3-Q4) DG slots 20-30% more expensive; BAT’s standing allocations protect customers
Customs complexity
EU battery passport (2027) and US FEOC compliance add $500-1,500 per shipment in advisory fees

13. How to Choose an EV Battery Freight Forwarder

EV battery shipping is not a commodity service. When evaluating a forwarder, ask these questions:
  1. Are you an IATA-certified DG shipper with a valid Lithium Battery Shipper Certificate? (BAT Logistics holds IATA, FIATA, CIFA, and C-TPAT credentials and certified DG shippers on every shift.)
  2. Do you have direct DG slot allocations with MSC, COSCO, OOCL, ONE, and Maersk? (Without this, your shipment is at the back of the queue during the 2025-2026 DG capacity crunch.)
  3. Can you handle UN 3536 large-format battery shipments, or only UN 3480 small packs? (Most forwarders cannot. BAT does both.)
  4. Do you have a RoRo charter capability for complete vehicles? (Requires specialized vessel relationships. BAT has standing RoRo allocations with COSCO, WW Ocean, and Hoegh Autoliners.)
  5. Can you file MOFCOM dual-use export licenses for ≥300 Wh/kg cells? (Most Chinese forwarders cannot. BAT has a 96% approval rate since November 2025.)
  6. Do you have standing IOR partnerships in the US, EU, Mexico, ASEAN, and Middle East? (Critical for DDP service and battery passport registration.)
  7. What is your safety record with lithium battery shipments over the last 5 years? (BAT Logistics: zero Class 9 incidents since 2005, including 100+ EV battery projects.)
  8. Can you provide carbon footprint documentation for CBAM compliance? (Required for EU-bound shipments from 2026.)
  9. Do you understand the IRA 45X FEOC restriction and can advise on non-FEOC supply chain structuring? (Critical for US-bound shipments seeking production credits.)
  10. What is your rate per FCL, per CBM, per vehicle, and per kg — and is it all-in? (All-in DDP pricing eliminates the surprise bills at the door.)

14. Why BAT Logistics

20 years of dangerous goods experience. Founded in 2005, BAT Logistics has spent two decades building the relationships, certifications, and operational discipline that EV battery shipping demands. We have moved 50,000+ tons of Class 9 cargo in the past five years and 100+ EV battery projects without a single safety incident.
China’s industry leader in EV battery DG shipping. We move more EV batteries by air, sea, and rail from China than most regional forwarders move in a decade. In 2025 alone, we delivered 800+ EV-related shipments and 5,000+ tons of Class 9 cargo across 200+ routes.
Strategic partnerships with major airlines and shipping lines. Direct space agreements with CA, CZ, MU, EK, QR, CX, OZ, NH, JL (air) and MSK, MSC, COSCO, OOCL, ONE, EMC, HMM, WW Ocean, Hoegh Autoliners (sea). When the DG market is tight — and in 2025-2026 it is permanently tight — our customers still ship.
Zero safety incidents since 2005. Every EV battery shipment is reviewed by a certified DG specialist. Every container is photographed at loading. Every SoC is measured and recorded. Every milestone is logged in our tracking system.
Dual-use export license expertise. 47 successful MOFCOM dual-use license applications since November 2025 with a 96% approval rate. We pre-screen every cell chemistry and advise on whether a license is required.
RoRo capability for complete EVs. Standing RoRo allocations with COSCO, Wallenius Wilhelmsen, and Hoegh Autoliners for complete EV shipments to Europe, Middle East, and Latin America.
USMCA / IMMEX / FTZ expertise. End-to-end supply chain restructuring to minimize Section 301 exposure for US-bound EV battery importers.
EU Battery Passport preparation. Partnerships with all four approved EU Battery Passport Issuers (Verkor, Circulor, Catena-X, T-Systems) and direct relationships with EU national battery authorities (UBA, ANSES, VROMI).
Certified by IATA, FIATA, CIFA, and C-TPAT. Operating from Shenzhen, Shanghai, and Beijing with multilingual operations teams (Mandarin, English, Spanish, Japanese, Korean, Arabic, German, French, Portuguese).
Proven on the most demanding EV battery cargo. From a 100 kWh+ grid-scale BESS shipped to a Chilean solar project, to a 50-vehicle RoRo launch in Rotterdam, to a 100 MWh IMMEX-restructured shipment to Mexico — we have done it.

15. Step-by-Step: How BAT Logistics Handles Your EV Battery Shipment

Step 1 — Free Quote & Pre-Compliance Check. Send us your battery type, capacity, destination, and intended use. We respond within 4 business hours with an all-in DDP quote and a compliance checklist.
Step 2 — UN Number & License Pre-Screen. We verify the correct UN number (3480/3481/3536/3556/3557/3558/3171) and check whether a MOFCOM dual-use export license is required (for cells ≥300 Wh/kg).
Step 3 — DG Slot Booking with Carrier. We book a confirmed DG slot with our standing carrier allocations (MSC, COSCO, OOCL, ONE, Maersk) — typically 3-4 weeks earlier than competitors during peak season.
Step 4 — Pickup from Factory + UN 38.3 Verify. DG-trained truck pickup. We verify the UN 38.3 test report is valid (5-year window) and matches the actual battery shipped.
Step 5 — SoC Charge + Packaging + Marking. Standalone packs charged to 25-28% SoC. UN-spec packaging applied. Battery mark, Class 9 label, CAO label (where required), vehicle mark (UN 3556 only).
Step 6 — Export Customs + DGD Sign-off. Export declaration filed. DGD signed by certified BAT DG shipper. Dangerous goods manifest submitted to carrier.
Step 7 — International Freight. Cargo moves by RoRo, FCL, LCL, air (samples only), sea-air, or rail. Real-time tracking link provided.
Step 8 — Import Customs + Duties + IOR. BAT acts as Importer of Record in 30+ countries. We file the import declaration, pay duties and VAT, clear customs, and (for EU) submit the battery passport registration.
Step 9 — Last-Mile + EU/US/JP Delivery. Delivery to your warehouse, dealer, BESS site, or Amazon FBA — with appointment booking, FBA prep, and proof of delivery.

16. Frequently Asked Questions

A complete EV with lithium-ion battery is UN 3556 (since 2025-01-01, replacing UN 3171). A standalone battery pack is UN 3480. A large-format pack >500 kg is UN 3536. A sodium-ion vehicle is UN 3558 (since 2026-01-01). A lithium-metal vehicle is UN 3557.
Generally no. Passenger and most cargo aircraft will not accept a complete EV due to the 50-100+ kWh battery. The only options are RoRo vessel, 20ft/40ft container (sole-use), or break-bulk.
In 2026: RoRo Shanghai-Rotterdam is $800-1,500 per vehicle. 40HQ FCL China-LA is $6,000-8,000 per container (carries 1-4 vehicles). LCL for small battery packs is $80-150 per CBM. Plus Section 301 / MFN duties at destination.
25% Section 301 for EV lithium-ion batteries (effective Sept 27, 2024), plus 3.4% MFN, totaling 28.4% effective. Complete EVs face 100% Section 301 (effective Sept 27, 2024). Critical minerals 25%. Battery parts 25%.
Yes, with full duty payment and DG documentation. To minimize tariff exposure, consider Mexico IMMEX + USMCA preference (BAT has standing partners), or FTZ deferral. Note that IRA Section 45X production credits are unavailable if any FEOC entity supplies the cells.
A digital record accessible via QR code on every EV, LMT, and industrial battery >2 kWh, mandatory from February 18, 2027. Contains manufacturer info, chemistry, carbon footprint, material composition, and recycling data. Required for placement on the EU market. BAT partners with all four EU-approved Battery Passport Issuers.
Since November 8, 2025, lithium batteries with energy density ≥300 Wh/kg require a dual-use export license from MOFCOM. LFP, NMC 622, NMC 711, NMC 811, and NCA are below the threshold; semi-solid-state and solid-state prototypes are above. License processing: 30-60 days for first-time applicants. BAT has processed 47 with a 96% approval rate.
This is a different category from EV batteries. Power banks (5,000-30,000 mAh, 18-111 Wh) are UN 3480 Section II and ship by air or sea under Section II rules. See BAT Logistics' separate Shipping Power Bank from China guide.
RoRo for drivable vehicles (cheapest per unit, faster port turnaround). 40HQ FCL is cheaper per CBM for large volumes but slower to load. LCL is expensive and rare for full EVs. Air is not an option for full EVs.
22-30 days to LA, 28-35 days to NY. 40HQ FCL: 20-25 days to LA, 25-30 days to NY. Air: not available for full EVs.
$35 per kWh for US-made cells, $10 per kWh for module assembly, $20 per kWh for electrode materials. Restricted if any covered component comes from a Foreign Entity of Concern (China, Russia, North Korea, Iran).
Yes, with additional documentation: waste transport permit (for damaged packs), second-life safety testing report, state-of-health certificate, and destination country import permit. BAT handles second-life shipments for BESS and refurbishment projects.
No. Spare lithium-ion batteries >100 Wh are banned from both carry-on and checked baggage on all commercial flights. Personal EV owners must use sea freight (RoRo or FCL) for international vehicle transport.
The EU's Carbon Border Adjustment Mechanism extends to certain battery precursors from 2026. Embedded carbon in imported batteries attracts a CBAM levy unless the manufacturer has a verified carbon footprint declaration. BAT advises EU-bound clients on CBAM documentation.
UN 3480 is for standalone lithium-ion batteries in standard packaging. UN 3536 is for lithium batteries in large-scale freight units (e.g., BESS containers, packs >500 kg net per package). UN 3536 has different packaging, marking, and documentation requirements.
Top reasons in 2026: (1) wrong UN number (UN 3171 used instead of UN 3556), (2) missing MOFCOM dual-use license for ≥300 Wh/kg cells, (3) missing USMCA preference certificate for Mexico-routed shipments, (4) missing EU battery passport for post-Feb 2027 imports, (5) SoC above 30% on air legs, (6) DG slot not pre-booked with carrier.
Yes, with UN 3558 (vehicle) or UN 3551 (standalone) from 2026-01-01. Sodium-ion cells are below 300 Wh/kg for most chemistries, so dual-use license typically not required. IMDG Code Amendment 42-24 makes sodium-ion a Class 9 dangerous good.
The battery must undergo substantial transformation in Mexico, Canada, or the US. For EV batteries, this typically means 35-75% regional value content (RVC) and tariff shift under HS 8507. BAT's IMMEX partners in Mexico specialize in rack assembly, BMS integration, and enclosure welding that qualify for the preference.
Three trends: (1) Solid-state batteries (2027-2030 commercial rollout) will require new UN numbers and IMO Type B(U) packaging. (2) Sodium-ion adoption will accelerate in entry-level EVs and e-bikes. (3) Battery passports will spread beyond the EU to other major markets (UK, India, possibly US). BAT Logistics is investing in cold-chain EV battery shipping capability and on-site battery passport verification.
Shipping an EV battery pack from China in 2026 is a four-front regulatory chess game. The forwarder who wins is the one who understands Chinese export controls, US Section 301 + FEOC, EU battery passport, and IATA/IMDG dangerous goods — all at the same time, on the same shipment.
For two decades, BAT Logistics has been the partner that EV OEMs, battery makers, fleet operators, and energy storage integrators trust with their most demanding cargo. We combine the largest DG-cleared capacity in China, the deepest regulatory expertise, and the simplest all-in pricing — all delivered with a zero-incident safety record that no competitor can match.
Get a DDP quote for your EV battery shipment in 4 business hours. Send us your battery type, capacity, destination, and intended use. We will respond with an all-in price, a compliance checklist, and a delivery plan.
BAT Logistics — 20 Years of Safe, Compliant, On-Time EV Battery Shipping. Since 2005. IATA · FIATA · CIFA · C-TPAT. RoRo · FCL · LCL · Rail · Sea-Air. Door-to-door to 200+ countries. MOFCOM dual-use license authorized. EU Battery Passport registered. USMCA / IMMEX / FTZ structured.