With the rapid development of the global photovoltaic industry, the number of retired modules continues to increase. Traditional chemical processing methods suffer from issues such as secondary pollution and low efficiency. In contrast, PV pyrolysis technology is becoming the top choice due to its advantages of non-corrosive operation, low emissions, and high-value recovery. The pyrolysis process involves controlling temperature, yanayi, and heating rate to decompose and volatilize the encapsulation film. Don haka, it is easy to remove glass, siliki wafers, and metal wires in order to achieve resource recovery.
Do different encapsulation films have the same pyrolysis temperature?
Photovoltaic modules have various encapsulation film types, such as EVA, POE, and PVB in common. They play a crucial role in photovoltaic encapsulation by providing adhesion, waterproofing, and UV protection, while also being the most challenging component to remove during the solar panel recycling. In PV pyrolysis technology, the pyrolysis temperature relates to the type and thickness of the adhesive film as well as the laminate structure.
How to choose between continuous and batch PV pyrolysis technology?
One of the most common questions that customers ask when learning about our solar panel pyrolysis project solution is: “Is your equipment continuous or batch? Which is better?” In fact, both processes have their respective applications, and the choice depends on the scale of treatment, operational frequency, and investment budget.

The batch pyrolysis process features a simple structure and flexible operation, which is especially suitable for treating small-to-medium scale or multi-type modules. It operates through a process sequence of loading, heating, pyrolysis, sanyaya, and discharging, with each batch completed independently.
Its process adaptability is strong, and it can flexibly adjust the temperature curve for different component materials. The farashin injin sake amfani da hasken rana is relatively low, and maintenance and cleaning are also quite convenient. Given that the intermittent pyrolysis process still has room for further optimization in terms of production capacity and energy consumption, you can choose to enhance overall efficiency and energy performance through complementary equipment.

The continuous pyrolysis process achieves uninterrupted operation through the continuous feeding and discharge of materials, which is suitable for large-scale and industrial production. Its primary advantage lies in 24 hour continuous production capability. High thermal energy utilization efficiency enables synergistic operation with waste heat recovery systems to reduce energy consumption, while advanced automation levels minimize labor requirements.
A lokaci guda, this process demands higher construction investment and material feeding uniformity, and the commissioning period is longer. Saboda haka, we will fully plan and optimize during the design and implementation phases.
How to Select the Optimal Photovoltaic Panel Pyrolysis Solution Based on Production Capacity and Investment?
YUSHUNXIN has been developing PV recycling technology for many years and possesses mature sarrafa sake amfani da hasken rana.
Controlled thermal delamination
Use when laminate release requires a controlled thermal duty integrated with gas treatment and solid separation.
Abu mai shigowa
Module construction, encapsulant, contamination, feed preparation and operating continuity.
Abubuwan da ake tsammani
Thermally released and classified material fractions; condensable/non-condensable streams remain project-specific.
Mu'amalar aikin
Reactor/tunnel duty, secondary combustion, gas cleaning, sanyaya, fire protection, monitoring and residues.
Yi amfani da jeri kawai wanda ya dace da iyakar tsari da aka zaɓa.
| Maganar kasida | Iyawa | Ƙarfi | Ambulan jiki | Ƙaddamar da iyaka |
|---|---|---|---|---|
| YSX-TK500Ramin zafi | 500 kg/h | 116.65 kW | 65 × 13 × 7.5 m | Ci gaba da layin thermal na rami |
| Saukewa: YSX-TK1000Ramin zafi | 1,000 kg/h | 126.65 kW | 72 × 13 × 7.5 m | Ci gaba da layin thermal na rami |
| Saukewa: YSX-TK2000Ramin zafi | 2,000 kg/h | 136.65 kW | 80 × 13 × 7.5 m | Ci gaba da layin thermal na rami |
| YSX-PF5Batch thermal | 5 t/rana | 140.45 kW | 46 × 33 × 7.5 m | Mixed-module batch thermal line |
| Saukewa: YSX-PF16Batch thermal | 16 t/rana | 142.45 kW | 40 × 26 × 7.5 m | Mixed-module batch thermal line |
| YSX-8000Tun da farko hadewar thermal | 8 t/rana | sarrafa saiti | 50 × 30 × 8 m | Tunanin aikin zafi na farko; reactor Φ2200 × 6000 × 20 mm |
| Saukewa: YSX-16000Tun da farko hadewar thermal | 16 t/rana | sarrafa saiti | 60 × 30 × 8 m | Tunanin aikin zafi na farko; reactor Φ2800 × 6600 × 18 mm |
Tsarin tsari: Ƙarfin kasida shine bayanin tsare-tsare. Tsayayyen kayan aiki, shigar/ikon aiki, sawun sawun, farfadowa, tsarki, hayaki da buƙatun kayan aiki suna buƙatar ingantaccen jerin kayan aiki, kayan wakilci da rubutaccen sharuɗɗan karɓa.
Bayanin da ake buƙata kafin daidaitawa da zance
- Hotunan kayan wakilci, ƙayyadaddun bayanai da samfurin samuwa.
- Ƙarfin da ake buƙata tare da sa'o'i a kowane motsi, canje-canje a kowace rana da kwanakin aiki.
- Abubuwan da aka yi niyya, Hanyar samfur da buƙatun mai karɓa na ƙasa.
- Ƙasar site, samuwa iko, man fetur, ruwa, matsewar iska da iyakokin gini.
- muhallin gida, wuta, ajiya da buƙatun aminci na sana'a.
- Iyakar isar da aka nema: kayan aiki, shimfidawa, shigarwa, kwamishina da horo.



