Combining slurry, paper-making, or extrusion sheets enables tunable thickness, porosity, filling power, combustion rate, and taste.
An elongate susceptor heats the aerosol-forming substrate by induction, reducing residue accumulation and supporting consistent flavor.
Biodegradable aerosol cartridges decompose after disposal while germinable seeds support new plant growth and reduce pollution.
Single-process reconstituted tobacco sheets limit filling power and taste; mixing slurry and paper-making sheets tunes both in the tobacco rod.
Ground alkaloid powder forms a lower-water slurry with binder and aerosol former, reducing cellulose-fiber use and drying energy for self-supporting sheets.
Modulating NtSULTR3 activity during tobacco curing adjusts sugar and free amino acid levels for new flavor and aroma profiles.
Moisture, thickness, stickiness, holes, and tears are checked to trigger timely splicing and limit sheet breaks, waste, and downtime.
Targeting GaIT expression helps modulate tobacco alkaloids and TSNA precursors, simplifying regulation and reducing processing costs.
Modulating YIPF-related protein activity changes tobacco alkaloid pathways to reduce alkaloids and TSNA precursors.
Combining tobacco material with more than 50% non-tobacco botanical fiber creates a hybrid aerosol material for a more favorable flavor and sensory experience.
See how a 0.5:1.0 to 0.85:1.0 primary acid-to-nicotine ratio preserves free nicotine for throat sensation while limiting acidity-related device damage.
Mixing enzyme-rich and glycoside-containing tobacco leaves enables flavor development during controlled humidified storage.
Homogenised oregano material with defined marker levels improves heated-aerosol flavor and mouthfeel while reducing phenol compounds.
This case uses measured cumin compounds in a heated substrate to improve flavor and mouthfeel while reducing combustion byproducts.
Mixing reconstituted tobacco sheets with pulp creates distinctive wrappers with tensile strength of at least 3.0 kgf/15 mm.
Star anise substrate preserves flavor during heating while limiting undesirable compounds.
Susceptor particles spread heat through tobacco plugs, limiting hot spots and burning.
This case uses starch extracted from tobacco to bind particles into strong, formable sheets without added plant fibers.
This casting box uses a positioned bar element to circulate slurry, reduce agglomerations, and improve cast-web consistency.
A bypass path lowers resistance when disengaged, limiting substrate airflow until the heating device is engaged.
A rotating retainer uses lugs and wedges to clamp vessel screens, improving alignment and limiting leakage during cryogenic screen changes.
A binder-and-filler particle matrix helps limit volatile loss while supporting consistent flavor and active-ingredient delivery.
Controlled anaerobic fermentation tracks lactic acid and reducing sugars to improve tobacco smoothness and floral notes without additives.
Radial flocking fixes tobacco filler to the paper wall, reducing thermal resistance and simplifying heat-not-burn rod production.
Paper layers and a non-combustible intermediate layer reduce porosity, limit oxygen access, and support conventional manufacturing.
An amorphous solid layer on a wood or cardboard carrier supports controlled aerosol flow, heat transfer, and recyclable handling.