In recent years, with the rapid popularity of new energy vehicles, energy storage systems, and smart devices, the demand for lithium batteries has experienced explosive growth. Энэ хооронд, a large number of retired batteries are entering the recycling process. The decade from 2020 руу 2030 will be a key period for lithium battery recycling technology from the beginning to maturity.
What role will recycled materials play in the global supply chain by 2030?
By 2030, the cumulative volume of retired lithium batteries worldwide will exceed 12 million tons, several times the amount in 2020.
How Will Lithium Battery Recycling Technology Evolve from 2020 руу 2030?
Lithium battery recycling technology primarily follows three approaches: mechanical recycling, pyrolytic treatment, and hydrometallurgy.

Prior to 2020, mechanical recycling primarily relied on manual dismantling and basic crushing. Traditional manual disassembly is not only inefficient but also carries risks of short circuits and leakage.
Since entering 2020, ЮШУНСИН has launched electronic waste shredder. YUSHUNXIN introduced an intelligent disassembly system that completes automatic shell removal, electrolyte extraction, and graded crushing processes. Electronic waste shredder incorporates a low-temperature crushing system and inert gas protection system to prevent thermal runaway and the volatilization of organic gases.

Manufacturers began widely adopting pyrolysis technology around 2020 to remove electrolyte and organic binders, but it requires high energy and complex emissions treatment.
Гэсэн хэдий ч, our low-temperature pyrolysis furnace employs an inert gas circulation system that enables efficient decomposition of organic matter below 500°C, with a 30% reduction in energy consumption from traditional equipment. Илүү чухал, this lithium battery recycling technology is equipped with exhaust gas purification and recovery modules, which provides assurance for enterprises to reduce carbon emissions and environmental risks.

Hydrometallurgy represents the most efficient technological approach for metal recovery, and the key lies in precisely controlling the leaching, тусгаарлах, and purification processes.
YUSHUNXIN hydrometallurgical equipment employs a multi-stage reactor design. Үүнээс гадна, it combines acid addition with temperature control systems to automatically adjust leaching parameters according to different battery materials. Through selective extraction and electrowinning technologies, the recovery rates for lithium, никель, and cobalt can reach over 95%, 98%, болон 96%, respectively.
Can different types of batteries have the same recycling process?
There are numerous types of lithium batteries, such as ternary (NCM/NCA), lithium iron phosphate (LFP), lithium manganese oxide, and lithium titanate. Different battery systems have distinct requirements for recycling processes.
Technology and interface planning
Compare pretreatment, conditioning and separation architectures using current material evidence, not universal performance claims.
Ирж буй материал
Battery evolution, chemistry share, cell-to-pack architecture and receiver requirements.
Хүлээгдэж буй үр дүн
Route-specific fractions and evidence plan.
Төслийн интерфейсүүд
Safety case, process control, emissions, residue, utilities and downstream qualification.
Сонгосон процессын хил хязгаарт тохирох мөрийг л ашиглана.
| Каталогийн лавлагаа | Хүчин чадал | Хүч | Физик дугтуй | Оруулсан хил хязгаар |
|---|---|---|---|---|
| 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 кг/цаг | 320 кВт | 40 × 15 × 7.5 м | Conditioning, separation and gas-treatment line |
| YSX-LR1000LR complete line | 1,000 кг/цаг | 410 кВт | 45 × 17 × 7.5 м | Conditioning, separation and gas-treatment line |
| Project reference - 500Earlier integrated layout | 500 кг/цаг | 300 кВт | 60 × 7 × 7 м | Earlier layout without a published model label |
| Project reference - 1000Earlier integrated layout | 1,000 кг/цаг | 349 кВт | 80 × 7 × 7 м | Earlier layout without a published model label |
Тохиргооны дүрэм: каталогийн хүчин чадал нь төлөвлөлтийн лавлагаа юм. Тогтвортой дамжуулах чадвар, суурилуулсан/ашиглалтын хүч, ул мөр, сэргээх, цэвэр ариун байдал, ялгаруулалт болон хэрэглээний эрэлт хэрэгцээ нь батлагдсан тоног төхөөрөмжийн жагсаалтыг шаарддаг, төлөөлөх материал болон бичгээр хүлээн авах нөхцөл.
Тохиргоо болон үнийн санал авахаас өмнө шаардлагатай мэдээлэл
- Төлөөлөгчийн материалын зураг, техникийн үзүүлэлтүүд болон боломжтой дээж.
- Шаардлагатай хүчин чадал дээр нэмэх нь нэг ээлжинд цаг, өдрийн ээлж, ажлын өдрүүд.
- Зорилтот үр дүн, дээж авах арга ба доод урсгалын хүлээн авагчийн шаардлага.
- Сайтын улс, боломжтой хүч, түлш, ус, шахсан агаар ба барилгын хязгаар.
- Орон нутгийн байгаль орчин, гал, хадгалалт ба хөдөлмөрийн аюулгүй байдлын шаардлага.
- Хүргэлтийн хил хязгаар: тоног төхөөрөмж, зохион байгуулалт, суурилуулалт, ашиглалтанд оруулах, сургах.



