In the lab, hybrid fuels reach 95 to 102 octane
The University of Sharjah team named the blends HyperFuel-95 through HyperFuel-102.
Carbon capture, recycling, new materials, agritech: the engineering that puts matter back into circulation.
Ecotech is the engineering that puts matter back into circulation: capturing carbon instead of letting it escape, reusing what was thought fit for the landfill, swapping a heavy material for a clean one. This section follows recycling pilot lines — solar panels, wind-turbine blades, plastics — carbon capture and use, low-carbon cement and steel, and the agritech that grows more with less water and fewer inputs.
We report what can be measured: a recovery yield, a cost per tonne, a plant opening, a process moving from the lab to the production line. Every article cites its sources — often industrial announcements or scientific papers the general press never picks up — and separates what is already running from what is still a prototype. This is the raw material of progress, in the most literal sense.
The University of Sharjah team named the blends HyperFuel-95 through HyperFuel-102.
ARENA will deliver AUD 7.25 million over five years, starting in 2027, for research led by the University of Sydney.
University of Michigan researchers tested the device through four cycles in simulated ocean water.
An East China Normal University team’s SUV can detect methane at speeds of up to 100 km/h, with measurement precision reaching 66 ppb.
Teams from Harvard University, Harvard Medical School and Stanford modified Alteromonas macleodii, a widespread marine bacterium.
Researchers at Stanford University are developing an electric plasma method for laboratory cement production.
Osaka Metropolitan University tested coconut-derived FAME and FAEE in a small turbojet.
National University of Singapore researchers grind carbon fiber and epoxy together, avoiding chemical separation.
A University of Newcastle team recovered almost 100% of the silver from used solar panels.