Skip to content
Battery Recycling Equipment Manufacturing Engineering · Manufacturing · Global Service
Production line category

Lithium Battery Crushing & Recycling

5Production lines
02 / Production Line Range

Different process routes for different recycling objectives

Each card locates a line by feedstock, core route and recovered outputs — not by unverified capacity or purity claims.

Filter by process family. Filters apply to the production lines shown on this page.

CONFIGURABLE

Lithium Battery Anode Sheet Crushing & Recycling Line

Best for: Prepared graphite-coated copper foil and anode electrode production scrap requiring copper and graphite separation.

FeedstockGraphite-coated copper foil, anode edge trim, rejected sheets, prepared negative-electrode scrap Recovery ObjectiveCopper-rich fraction; graphite-rich anode powder Typical ProcessPulverizing → air classification → screening → gravity separation → copper & graphite collection ConfigurationConfigured by feed size, coating condition, copper-foil thickness, capacity and target recovered fractions after material review.
  1. Controlled feeding
  2. Crushing / pulverizing
  3. Air classification
  4. Linear screening
  5. Gravity separation
  6. Copper collection
  7. Graphite powder collection
  8. Intermediate recirculation
  9. Dust collection
CONFIGURABLE

Lithium Battery Cathode Sheet Crushing & Recycling Line

Best for: Prepared NMC / LFP cathode sheet production scrap requiring coating liberation from aluminum foil.

FeedstockNMC / LFP cathode sheets, coated aluminum foil scrap, edge trim, rejected sheets Recovery ObjectiveCathode active-material-rich powder; aluminum-rich fraction Typical ProcessFeeding → staged crushing/delamination → screening → air/gravity classification → powder & aluminum collection ConfigurationConfigured by cathode chemistry, coating condition, capacity and target recovered fractions after material review.
  1. Controlled feeding
  2. Primary size reduction
  3. Crushing & delamination
  4. Fine liberation
  5. Screening
  6. Air / gravity separation
  7. Powder collection
  8. Aluminum recovery
  9. Dust collection
CONFIGURABLE

EV Battery Recycling Line

Best for: An integrated industrial line configured around end-of-life ev packs, modules and cells, target output quality and required throughput.

FeedstockEnd-of-life EV packs, modules and cells Recovery ObjectiveMechanical recycling or qualified second-life routing Typical ProcessPack assessment → discharge → dismantling → module/cell routing → mechanical recycling or qualified second-life testing ConfigurationThe final route is defined after feedstock review and, where appropriate, material testing.
  1. Pack assessment
  2. discharge
  3. dismantling
  4. module/cell routing
  5. mechanical recycling or qualified second-life testing
CONFIGURABLE

Black Mass Production Line

Best for: An integrated industrial line configured around prepared lithium battery cells, electrode scrap and intermediate fractions, target output quality and required throughput.

FeedstockPrepared lithium battery cells, electrode scrap and intermediate fractions Recovery ObjectiveBlack mass Typical ProcessControlled feeding → enclosed size reduction → fine screening → metal separation → black mass collection ConfigurationThe final route is defined after feedstock review and, where appropriate, material testing.
  1. Controlled feeding
  2. enclosed size reduction
  3. fine screening
  4. metal separation
  5. black mass collection
CONFIGURABLE

Lithium Battery Recycling Line

Best for: An integrated industrial line configured around waste lithium-ion cells and prepared battery material, target output quality and required throughput.

FeedstockWaste lithium-ion cells and prepared battery material Recovery ObjectiveBlack mass Typical ProcessDischarge → shredding → crushing → air classification → magnetic separation → screening → density separation → black mass collection ConfigurationThe final route is defined after feedstock review and, where appropriate, material testing.
  1. Discharge
  2. shredding
  3. crushing
  4. air classification
  5. magnetic separation
  6. screening
  7. density separation
  8. black mass collection
03 / Line Selection Guide

Start with the feedstock and recovery objective

The three-step guide narrows a line type for evaluation. It does not replace process engineering.

Selection result / indicative

Start with feedstock, output and project stage.

Choose the three inputs to see whether this category is relevant to evaluate first.

07 / Engineering & Project Criteria

A production line is selected around the whole project

These criteria are project-level. They are not equivalent to choosing a single machine from a catalogue.

Feedstock Condition
Chemistry, format, state of charge, contamination and whether the material is a pack, cell, mixed scrap or production sheet determine the legal and technical start of the line.
Target Capacity
Throughput is engineered after the process route is agreed. Capacity is customized; this page does not publish a confirmed range.
Recovery Objective
Reusable cells, prepared feed, black mass, metal fractions or powder / foil each imply a different process end-point and equipment set.
Plant Space
Layout, building height, maintenance access and material-flow direction constrain whether a route is compact, modular or staged across rooms.
Utilities
Power, compressed air, water, negative-pressure ducting and control architecture are sized to the full line, not to one crusher.
Safety & Environmental Requirements
Discharge, fire, explosion, dust, off-gas and local regulation decide pretreatment depth and environmental-control modules.
Also reviewed at project stage Automation level Local regulations Future expansion Material variability
09 / Production Line Enquiry

Request a preliminary process configuration

Share your feedstock, target capacity, required outputs and plant conditions. This information is used to evaluate a suitable process route and equipment configuration.

Prepare if available:
Feedstock photos, material condition, desired fractions, available plant area, utilities and current project stage.