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Efficient, Low-Cost, Eco-Friendly Solar PV Recycling Technology

Source: Australian Renewable Energy Agency (ARENA)

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This project will develop a highly efficient and low-cost recycling system to recover valuable metals and silicon from end-of-life photovoltaic panels. The rapid growth in photovoltaic solar panel installations has made end-of-life panel recycling an important topic – both as an environmental challenge and business opportunity. Current recycling technologies are impractical, attributed to low ener

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The project "Efficient, Low-Cost, Eco-Friendly Solar PV Recycling Technology" is an infrastructure initiative in the Advanced Electronics, Chemical (Industrial), Hydro, Manufacturing (Industrial), Metal, Solar, Stadium, Warehouse, Government, Education sector, located in N/A, Australia. Taiyo aggregates data from Australian Renewable Energy Agency (ARENA), including information on sponsoring government bodies, EPCs, and contractors.

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Description

Description

This project will develop a highly efficient and low-cost recycling system to recover valuable metals and silicon from end-of-life photovoltaic panels. The rapid growth in photovoltaic solar panel installations has made end-of-life panel recycling an important topic – both as an environmental challenge and business opportunity. Current recycling technologies are impractical, attributed to low energy efficiency, high-cost and harmful chemicals. It is therefore necessary to develop a highly efficient and low-cost recycling system to recycle end-of-life PV panels. Inspired by metallurgy engineering, the project will develop a highly efficient low-cost closed-loop recycling system to recover valuable metals and silicon from end-of-life solar panels. The project will leverage interdisciplinary research expertise in metallurgy (pyro- and hydro-metallurgy), photovoltaics, waste treatment, and close collaboration with industry partners across the whole supply chain in Australia and overseas. It will be technically achieved by combining state-of-the-art research methods including extensive computer simulations for system design and scale-up, lab- and pilot-scale experiments for system demonstration, and life cycle, economic and policy analyses for overall system evaluation. The expected outcomes include a prototype of a photovoltaic panel recycling system and scalable computer models. Lifecycle and economic analyses, will provide a cost-effective, closed-loop and practical solution to recycling photovoltaic panels. It will open up and/or transform the photovoltaic recycling industry, ultimately allowing for a more competitive and sustainable photovoltaic industry in Australia and globally.Additional impactsThe project will directly employ nine researchers and involve two PhD students.Read more Promo Lab website

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100%

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