Solar-Driven Process Converts Waste Plastics Into Hydrogen And Industrial Fuels
Adelaide, Australia (SPX) Apr 29, 2026 Researchers at Adelaide University are advancing a technology that uses sunlight to convert discarded plastics into hydrogen, syngas and other valuable industrial chemicals, offering a dual solution to plastic pollution and the global demand for clean energy. A new paper led by PhD candidate Xiao Lu explores how solar-powered photoreforming can break down waste plastics at relatively low t
Adelaide, Australia (SPX) Apr 29, 2026
Researchers at Adelaide University are advancing a technology that uses sunlight to convert discarded plastics into hydrogen, syngas and other valuable industrial chemicals, offering a dual solution to plastic pollution and the global demand for clean energy.
A new paper led by PhD candidate Xiao Lu explores how solar-powered photoreforming can break down waste plastics at relatively low t
Researchers at Adelaide University are advancing a technology that uses sunlight to convert discarded plastics into hydrogen, syngas and other valuable industrial chemicals, offering a dual solution to plastic pollution and the global demand for clean energy.
A new paper led by PhD candidate Xiao Lu explores how solar-powered photoreforming can break down waste plastics at relatively low t
