As global photovoltaic capacity installation continues to rise, a large number of early-installed photovoltaic modules will reach the end of their service life in the coming decade. New policies boost investment in PV recycling lines, creating unprecedented opportunities for their development.

What new policies are driving investment in PV recycling production lines?

Photovoltaic panels contain valuable materials such as glass, áli, sílikon, and small amounts of silver and copper. Hins vegar, they also potentially contain harmful substances like lead and cadmium. Simply landfilling waste not only wastes resources but also creates risks of soil and groundwater contamination.

Based on this understanding, governments across the world have implemented new regulations and incentives to promote investment in endurvinnslustjórnun sólarplötur. Hence, new policies boost investment in PV recycling lines.

New Policies Boost Investment in PV Recycling Line
new policies about PV recycling

What Successful Cases Can Serve as References?

Driven by new policies, our photovoltaic recycling solutions successfully serve multiple global markets. Below are two representative project case studies.

1000kgh photovoltaic panel recycling production line

Verkefni fyrir förgun eins glers ljósvökva

Í 2022, we constructed a 1000kg/h photovoltaic panel recycling production line for a German client. This production line employs mechanical recycling processes, which separate glass, sílikon, rammar úr áli, and conductive materials from components through crushing and sorting. The entire process produces no secondary pollution, and consumes minimal energy.

  • Equipment Configuration: Automatic feeding system, crushing unit, air classifier, magnetic separator, optical sorting system, and dust removal system.
  • Recycling Efficiency: Glass recycling purity exceeds 96%, and metal recovery rate surpasses 95%, which fully meets the recycling standards of EU.
a photovoltaic recycling production line

Solar panel pyrolysis project solution

Í 2024, a client from Japan contacted us. They intended to invest in building a photovoltaic recycling production line with annual processing capacity of 5,000 tonn. The process decomposes the EVA encapsulation layer in a pyrolysis furnace, and then uses mechanical equipment to separate the metal, gler, and silicon wafers.

  • Equipment Configuration: Pyrolysis furnace, exhaust gas purification system, cooling unit, and automatic sorting system.
  • Recovery efficiency: Silicon recovery purity reaches 99%, and exhaust gases meet emission standards through the purification system.