As the global energy transition accelerates, photovoltaic power generation continues to increase in the energy structure. Double-glass photovoltaic modules are gradually becoming mainstream products due to their excellent moisture resistance and high power generation efficiency. How to efficiently and environmentally recycle and reuse retired double-glass photovoltaic modules has become a core issue of industry concern. YUSHUNXIN presents a double-glass photovoltaic panels recycling solution that not only enables resource reuse and reduces environmental impact but also promotes the sustainable development of the photovoltaic industry.
What is the structure of a double-glass photovoltaic panel?
Single-glass photovoltaic panel primarily consists of glass, EVA film, plaques de silici, marcs d'alumini, i fulls posteriors. En canvi, double-glass panels eliminate the backsheet and employ front and rear glass encapsulation, resulting in a more robust structure and superior sealing. No obstant això, their recycling process is correspondingly more complex than that of traditional single-glass panels. The structural components of double-glass photovoltaic modules are glass, EVA, silicon wafer cells, EVA, and glass. The dimensions of double-glass PV panels range from 2278mm x 1134mm x 30mm to 35mm.
What are the recyclable resources in Double-glass Photovoltaic Panels Recycling Solution?
The recyclable resources in double-glass modules primarily consist of four major categories: vidre, silici, metalls, and organic polymers. Among these, glass and silicon account for the largest recycling volumes, while metals and materials offer the highest economic value for reuse.
Glass
The glass accounts for over 70% of the module’s weight. You can recycle it into renewable photovoltaic glass or standard flat glass.
Silicon Wafers
Accounting for approximately 5% a 8%. After purification, you can further process them into solar-grade or metallurgical-grade silicon materials.
Metal Resources
This includes silver paste, copper wires, marcs d'alumini, and similar components. Silver paste holds high recycling value and is a key source of economic benefit.
Polymer Materials
It is mainly EVA/POE adhesive film and sealant. It can transform into fuel oil or chemical raw materials through pyrolysis or chemical decomposition.
Junction Boxes and Cables
They contain plastics, copper, tin, and other materials, and you can recover them through mechanical sorting and remelting.
What is the recycling process for double-glass photovoltaic panels recycling solutions?
For the characteristics of double-glass photovoltaic modules, the specific process flow for the solució del projecte de piròlisi de panells solars is as follows.
What are the primary machines for double-glass photovoltaic panels recycling solution?
The double-glass photovoltaic panel recycling production line we designed has a capacity of 500-1000 kg/h. We can also customize the production line according to customer requirements. Below are the main equipment in the double-glass solar recycling process. You can also click to learn more about the cost de la màquina de reciclatge de panells solars.
Glass Color Sorter
After undergoing crushing, piròlisi, and preliminary sorting, the resulting glass fragments may still contain minute impurities such as solar cell fragments, silicon powder, and EVA residues. The glass color sorter efficiently separates glass from copper strips, and obtains colorless glass granules to a quality level that must be confirmed by sampling and the receiver specification.
About Us
YUSHUNXIN not only provides Gestió del reciclatge de plaques solars but is also committed to building a comprehensive green resource regeneration and recycling system. Connected project pathways also cover lithium battery recycling, aluminum scrap decoating, plastic and tire pyrolysis, sludge treatment, and biomass carbonization. Final equipment selection depends on the documented feedstock, site conditions, utilitats, target outputs, and delivery boundary. If you would like to learn more about the single-glass photovoltaic panel disposal project, please feel free to contact us.
Tunnel or batch thermal
Use for double-glass or mixed construction where mechanical glass removal alone does not define the complete separation route.
Material entrant
Glass-glass laminate structure, encapsulant, cell technology, breakage, humitat, dirt and mixed-module share.
Sortides esperades
Glass-, metal-, cell/silicon- and polymer-bearing streams for sampling and downstream acceptance.
Interfícies del projecte
Thermal safety, secondary treatment, refredament, gas cleaning, material separation, residue management and local permitting.
Utilitzeu només la fila que coincideixi amb el límit del procés seleccionat.
| Referència del catàleg | Capacitat | Poder | Embolcall físic | Límit inclòs |
|---|---|---|---|---|
| YSX-TK500Túnel tèrmic | 500 kg/h | 116.65 kW | 65 × 13 × 7.5 m | Línia tèrmica de túnel contínua |
| YSX-TK1000Túnel tèrmic | 1,000 kg/h | 126.65 kW | 72 × 13 × 7.5 m | Línia tèrmica de túnel contínua |
| YSX-TK2000Túnel tèrmic | 2,000 kg/h | 136.65 kW | 80 × 13 × 7.5 m | Línia tèrmica de túnel contínua |
| YSX-PF5Tèrmica per lots | 5 t/dia | 140.45 kW | 46 × 33 × 7.5 m | Línia tèrmica per lots de mòduls mixts |
| YSX-PF16Tèrmica per lots | 16 t/dia | 142.45 kW | 40 × 26 × 7.5 m | Línia tèrmica per lots de mòduls mixts |
| YSX-8000Abans tèrmica integrada | 8 t/dia | Configuració controlada | 50 × 30 × 8 m | Referència del projecte tèrmic anterior; reactor Φ2200 × 6000 × 20 mm |
| YSX-16000Abans tèrmica integrada | 16 t/dia | Configuració controlada | 60 × 30 × 8 m | Referència del projecte tèrmic anterior; reactor Φ2800 × 6600 × 18 mm |
Regla de configuració: La capacitat del catàleg és una referència de planificació. Rendiment estable, potència instal·lada/operativa, petjada, recuperació, puresa, les emissions i la demanda de serveis públics requereixen la llista d'equips aprovats, material representatiu i condicions d'acceptació per escrit.
Informació necessària abans de la configuració i la cotització
- Fotos de material representatiu, especificacions i mostra disponible.
- Capacitat requerida més hores per torn, torns per dia i dies de funcionament.
- Sortides objectiu, mètode de mostreig i requisits del receptor aigües avall.
- País del lloc, potència disponible, combustible, aigua, aire comprimit i límits de l'edifici.
- Ambiental local, foc, requisits d'emmagatzematge i seguretat laboral.
- Límit de lliurament sol·licitat: equipament, maquetació, instal·lació, posada en marxa i formació.












