With the continuous growth in the number of new energy vehicles, the recycling and reuse of lithium batteries are becoming an indispensable part of the new energy industry chain. Āre'a, more and more companies are beginning to focus on the recycling of lithium batteries from end-of-life electric vehicles. We will introduce Yushunxin Te mau rave'a no te faaho'i-faahou-raa mai i te mau matini roro uira EV, and we hope this provides reference points for corporate investment or collaboration.
What methods are available for recycling lithium from end-of-life electric vehicles?
There are two primary methods for the green recycling of end-of-life EV batteries: mechanical recycling and pyrolytic recycling. If you wish to enter the industry with a lower investment, you may initially adopt mechanical recycling. If you seek higher recovery rates, you may opt for a combined solution of pyrolytic recovery and chemical smelting. In actual projects, many companies also integrate the two processes.
What is the approximate cost of establishing an electric vehicle battery recycling plant?
The Te mau faatitiaifaroraa i te opuaraa no te faaho'i-faahou-raa mai i te EV investment primarily includes equipment procurement, facility construction, environmental protection systems, installation and commissioning, as well as labor costs. The specific cost will vary depending on production capacity, faito automation, e'a, and local policies. And the following two options can serve as a reference. The specific fees will depend on an assessment of your actual circumstances.
500kg/h Green Recycling Solution for End-of-Life EV Batteries

A 500 kg/h lithium-battery line is a planning capacity class. Discharge and dismantling responsibility, Fa'aterehia, hōho'a tāuru, safety controls, separation modules, output specification, utilities and price must be confirmed in the approved project scope.
1000kg/h Green Recycling Solution for End-of-Life EV Batteries

A 1,000 kg/h lithium-battery line is a higher-throughput planning class. Final automation, safety architecture, e'a, te huru o te mau hu'ahu'a, mau rave'a, operating schedule and commercial terms require representative material review and written confirmation.
How to Select an Appropriate Green Recycling Solution for End-of-Life EV Batteries?
When selecting an appropriate EV lithium battery recycling production line, in addition to matching your processing capacity, battery types, and investment budget, you should place greater emphasis on the supplier’s technical capabilities.We possess years of experience in developing lithium battery recycling equipment and offer clients comprehensive services from solution design and equipment manufacturing to installation, commissioning, and personnel training.
End-of-life EV project planning
Connect regulatory, Te mau rave'a, safety and material-processing responsibilities in one project boundary.
Incoming material
Fenua, collection model, battery population, Fa'aterehia, pack condition and treatment responsibility.
Expected outputs
Traceable prepared and classified fractions for approved downstream receivers.
Project interfaces
Permitting, transport, quarantine, emergency response, mau rave'a, emissions and receiver contracts.
Use only the row matching the selected process boundary.
| Catalogue reference | Capacity | Mana | Physical envelope | Included boundary |
|---|---|---|---|---|
| YSX public familyPublic equipment family | 500–1,000 kg/h | 102–238 kW | 20–35 m line; 7.5–19.5 t | Standard equipment-family envelope; no per-model allocation |
| YSX-LR500LR complete line | 500 kg/hora | 320 kW | 40 × 15 × 7.5 m | Conditioning, separation and gas-treatment line |
| YSX-LR1000LR complete line | 1,000 kg/hora | 410 kW | 45 × 17 × 7.5 m | Conditioning, separation and gas-treatment line |
| Project reference - 500Earlier integrated layout | 500 kg/hora | 300 kW | 60 × 7 × 7 m | Earlier layout without a published model label |
| Project reference - 1000Earlier integrated layout | 1,000 kg/hora | 349 kW | 80 × 7 × 7 m | Earlier layout without a published model label |
Configuration rule: catalogue capacity is a planning reference. Stable throughput, installed/operating power, footprint, recovery, purity, emissions and utility demand require the approved equipment list, representative material and written acceptance conditions.
Information required before configuration and quotation
- Representative material photos, specifications and available sample.
- Required capacity plus hours per shift, shifts per day and operating days.
- Nga hua whakaurua, sampling method and downstream receiver requirements.
- Site country, available power, fuel, vai, compressed air and building limits.
- Local environmental, fire, storage and occupational-safety requirements.
- Requested delivery boundary: Faufaaʻi, fa'aharaha'a, installation, commissioning and training.


