Decommissioned solar panels hold valuable materials locked inside a laminated structure that is hard to separate.
| Aluminum frame removal | By compression; removal rate > 99%; recycling purity > 98% |
| Glass removal | Hot-knife method; rate 98%; purity 98%; intact reusable glass |
| Size reduction | Shredder and crusher → granular particles |
| Screening | Vibrating screens → silicon powder (with silver), copper-plastic mixture |
| Sorting | Air classification, gravity / density separation |
| Compatibility | Crystalline silicon, thin-film, broken modules, production leftovers |
| Configuration | Modular, scalable, customizable (complete line or individual machines) |
| Process | Dismantling → shredding → grinding → advanced separation |
| Recovered material | Value |
| Aluminum frame | 100% recyclable; cuts raw material costs by up to 40% |
| Silicon powder (with silver) | Further purifiable; resale value increases by up to 30% |
| Copper | Valuable metal recovered through sorting |
| Glass | High quality, directly reusable, no extra processing |
| EVA | Recovered encapsulation material |
| Equipment | Role |
| Frame remover | Efficiently separates aluminum frames by compression |
| Glass remover | Extracts intact glass for direct reuse |
| Shredder | Cuts panels into smaller, manageable pieces |
| Grinder | Further reduces the particle size |
| Screening and sorting | Separates silicon, copper, plastic into pure fractions |
Decommissioned solar panels hold valuable materials locked inside a laminated structure that is hard to separate. A URSTAG solar panel recycling line integrates automated dismantling, shredding, grinding and advanced separation into a single system, engineered to recover high-purity glass, silicon, aluminum and EVA from waste panels, with high efficiency and minimal environmental impact.
A URSTAG solar panel recycling line is modular, scalable and fully customizable: you can choose the complete line or individual machines, depending on your capacity and budget. Explore the full range of recycling equipment and the solutions for solar panel recycling.
• Fully integrated process, a solar panel recycling line integrates automated dismantling, shredding, grinding and advanced separation into a single system.
• Frame removal over 99%, the dismantling machine separates the aluminum frame at a rate above 99%, with a recycling purity above 98%.
• Intact, directly reusable glass, glass removal by the hot-knife method recovers high-quality glass (98% rate, 98% purity), ready for direct reuse.
• High-purity recovery, glass, silicon, aluminum, EVA and copper recovered at high purity.
• Wide compatibility, it processes crystalline silicon, thin-film panels, broken modules and production leftovers.
• Advanced separation, air classification, gravity and density separation to segregate copper, silicon and plastic.
• Modular and scalable design, suitable for both industrial-scale operations and small recycling centers, with future upgrades.
• Minimal environmental impact, an efficient process designed for a low ecological footprint.
| Parameter | Value |
|---|---|
| Aluminum frame removal | By compression; removal rate > 99%; recycling purity > 98% |
| Glass removal | Hot-knife method; rate 98%; purity 98%; intact reusable glass |
| Size reduction | Shredder and crusher → granular particles |
| Screening | Vibrating screens → silicon powder (with silver), copper-plastic mixture |
| Sorting | Air classification, gravity / density separation |
| Compatibility | Crystalline silicon, thin-film, broken modules, production leftovers |
| Configuration | Modular, scalable, customizable (complete line or individual machines) |
| Process | Dismantling → shredding → grinding → advanced separation |
| Recovered material | Value |
|---|---|
| Aluminum frame | 100% recyclable; cuts raw material costs by up to 40% |
| Silicon powder (with silver) | Further purifiable; resale value increases by up to 30% |
| Copper | Valuable metal recovered through sorting |
| Glass | High quality, directly reusable, no extra processing |
| EVA | Recovered encapsulation material |
A solar panel recycling line is intended for electronic waste management operators, specialized recyclers and recycling centers processing end-of-life photovoltaic panels. The wide compatibility, crystalline silicon, thin-film, broken modules and production leftovers, makes it able to process the full variety of solar waste from a single solution, from disassembly to fine sorting.
Decommissioned photovoltaic panels fall under the European regulations on waste electrical and electronic equipment; a solar panel recycling line delivered in Europe is designed in line with the requirements of the WEEE Directive 2012/19/EU. For integration into a complete recycling flow, see also the complete industry solutions.
Maximized material recovery efficiency is the strength of a solar panel recycling line: the silicon powder can be further purified, increasing resale value by up to 30%; the aluminum frames are 100% recyclable, cutting raw material costs by up to 40%; and the high-quality glass can be reused directly, with no extra processing. This valuable recovery turns solar waste into a real and measurable economic resource.
The high-precision automated dismantling of a solar panel recycling line ensures clean recovery: the frame removal machine uses compression to push out and separate the aluminum frame, at a rate above 99% and a recycling purity above 98%. This clean frame separation, in the very first stage, isolates the aluminum as a pure material and prepares the panel for the subsequent processing stages.
Intact glass recovery is a distinctive advantage of a solar panel recycling line: the glass layer is removed by the hot-knife method, which exposes the core components of the cell and the backsheet, recovering high-quality glass at a 98% rate and 98% purity. The intact glass obtained this way can be reused directly, with no extra processing, maximizing the recovered value.
The advanced separation system of a solar panel recycling line ensures pure final products: after size reduction, the vibrating screens separate the fractions, silicon powder with silver, copper-plastic mixture, and the sorting system uses air classification, gravity and density separation to segregate copper, silicon and plastic. This staged sorting produces clean, well-defined final materials, each ready for recovery and resale on the secondary raw-material market.
| Equipment | Role |
|---|---|
| Frame remover | Efficiently separates aluminum frames by compression |
| Glass remover | Extracts intact glass for direct reuse |
| Shredder | Cuts panels into smaller, manageable pieces |
| Grinder | Further reduces the particle size |
| Screening and sorting | Separates silicon, copper, plastic into pure fractions |
1. The frame removal machine pushes out by compression and separates the aluminum frame (rate > 99%).
2. The glass layer is removed by the hot-knife method, exposing the cells and the backsheet (rate 98%).
3. The crusher shreds and pulverizes the cells into granular particles.
4. The screening equipment, with vibrating screens, separates the fractions: silicon powder with silver and copper-plastic mixture.
5. The sorting system segregates copper, silicon and plastic through air classification and density separation.
6. The final materials, frame, copper, silicon powder, glass and EVA, are collected separately.
The entire flow is automated, from dismantling to fine sorting. A solar panel recycling line thus produces high-purity final materials, glass, silicon, aluminum, copper and EVA, ready to be reintroduced into the economic cycle, with consistently high efficiency and minimal environmental impact.
Which types of panels does the line process?
A solar panel recycling line processes a wide range of solar waste: crystalline silicon, thin-film panels, broken modules and production leftovers. This wide compatibility offers a complete solution, from disassembly to fine sorting, for the full variety of end-of-life photovoltaic panels.
What is the frame and glass removal rate?
The frame removal machine achieves a removal rate above 99%, with a recycling purity above 98%. Glass removal, by the hot-knife method, achieves a 98% rate, with a 98% purity. These high rates ensure a clean recovery of aluminum and glass in a solar panel recycling line.
Can the recovered glass be reused directly?
Yes. The hot-knife method used by a solar panel recycling line recovers intact, high-quality glass, which can be reused directly, with no extra processing. This maximizes the value of the recovered glass, avoiding the costs and losses associated with reprocessing cullet.
Is the delivered equipment new?
Yes. We deliver new, unused equipment, manufactured to order according to the chosen configuration. Construction uses components from established suppliers, with CE marking where applicable, and every line undergoes a full inspection before shipment. You receive the technical documentation and operating manuals in your language.
Is the line modular and scalable?
Yes. A solar panel recycling line has a modular, scalable and fully customizable design: you can choose the complete line or individual machines, depending on your capacity and budget. The modular design suits both industrial-scale operations and small centers, and allows future upgrades and seamless integration.
What final materials are produced?
A solar panel recycling line produces five valuable final materials: aluminum frame (100% recyclable), copper, silicon powder (with silver, further purifiable), high-quality glass and EVA. All can be reintroduced into the economic cycle as valuable secondary raw materials.
What technical support is provided?
We provide long-term technical support and fast spare-parts delivery worldwide, plus expert installation and training. Our team designs the most suitable configuration for your recycling business, so that the solar panel recycling line achieves high efficiency and strong economic benefits.
• Maximized material recovery, purifiable silicon (+30% resale value), 100% recyclable aluminum frames (-40% raw material costs), directly reusable glass.
• Precision automated dismantling, frame removal by compression (> 99%) and glass removal by hot knife (98%).
• Advanced separation, air classification, gravity and density separation for pure copper, silicon and plastic.
• Wide compatibility, crystalline silicon, thin-film, broken modules and production leftovers.
• Modular and scalable design, for industrial-scale operations and small centers, with future upgrades and seamless integration.
• Technical support and parts, long-term support, expert installation and fast worldwide spare-parts delivery.
Configuration flexibility is an important practical advantage: because the system is modular and fully customizable, an operator can start with the essential machines and expand capacity as the volume of waste panels grows. This scalable approach lowers the initial investment and allows the line to adapt to the evolving photovoltaic-waste market, without the need to replace existing equipment as throughput requirements change.
The economics of recovered materials make the investment compelling: high-grade glass reused directly avoids reprocessing costs, silicon powder gains value once further purified, and aluminum and copper are sold as clean secondary commodities. Together with the predictable rise in end-of-life panels over the coming years, these revenue streams turn a recycling line into a sound long-term asset rather than a pure compliance cost.
With a URSTAG solar panel recycling line, which integrates automated dismantling, shredding, grinding and advanced separation, you recover high-purity glass, silicon, aluminum, copper and EVA from waste panels, with removal rates above 99% for the frame and 98% for the glass, turning solar waste into a valuable source of secondary raw materials.
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All delivered equipment meets European quality standards and the DNSH principle, is eligible for acquisitions through EU and PNRR funding, and includes interactive AI-powered manuals for operation, maintenance and operator training.
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Six technology directions we integrate turnkey: from plug & play IIoT sensors, to cobots, predictive maintenance, optical inspection, MES connectivity and custom industrial software.
See in real time how much each machine produces and how long it sits idle. We fit sensors on any equipment, new or old, and within a few hours you have the OEE dashboard on your phone. No complex wiring, no production downtime. The first concrete step toward digitalization, with ROI visible from the very first month.
Solve your labor shortage without tripling your costs. The cobot works safely alongside your people (palletizing, feeding the CNC, welding) while you recover the investment in 12-18 months. Prices 30-40% below European distributors, with installation and programming included from us.
Stop waiting for things to break. Our algorithms analyze sensor data and tell you exactly which part will fail and when, and we bring it to your production line before the breakdown. Zero unplanned downtime, zero contractual penalties, complete operational peace of mind.
Eliminate defects before they reach the customer. Our cameras inspect every part at speeds no operator can match, detecting sub-millimeter defects. They mount onto your existing line, with no modifications. Ideal if you produce for export and have strict quality clauses.
Connect your machines to your office, regardless of brand or age. Our gateway automatically translates the data from any machine into your ERP's format: no manual entry, no paper forms, no human error. The manager sees production live, the operator receives digital instructions.
Have a process that no off-the-shelf software can solve? We build custom industrial applications: from tailored SCADA panels and HMI interfaces, to production planning systems, lot traceability and automated reporting. The code is yours, it runs on your servers, with no monthly subscriptions or vendor lock-in.
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