Calcium composite molding creates granular activated carbon with controlled pore distribution and high hardness, replacing scarce wood powder sources.
A photothermal coupling reactor divides solar radiation into infrared and ultraviolet parts for simultaneous hydrogen production.
Extracting TiO2 into a binder-free surface layer to boost NOx degradation while preserving concrete strength and visual appearance.
A honeycomb structure combines large and small opening cells to maintain high cell density while suppressing soot clogging in catalyst carriers.
Constant-thickness open-pored metallic partition walls eliminate thermal bridges and ensure uniform heat distribution in exhaust gas filters.
Segmented deposition and polymerization on spherical templates control shell porosity for precise transport properties.
An offset center of gravity counteracts gravitational deformation during manufacturing, preventing cracks and enhancing mechanical strength.
Protonated lamellar titanate catalysts enable efficient transesterification of triglycerides into biodiesel esters.
Roughened reactor walls increase contact area with microfibrous catalysts, resolving heat transfer resistance at the interface.