High-consistency acid hydrolysis replaces mechanical disintegration to reduce energy consumption and production costs.
Ozone gas decomposes super absorbent polymers in used sanitary pulp fibres, reducing lignin content below 0.1% for efficient saccharification.
An aqueous citric acid treatment at acidic pH removes calcium residue from recycled pulp, reducing ash content for reuse in sanitary products.
Converting agricultural waste into spinnable filaments via chlorine-free oxidation, reducing arable land demand.
EDDS polycarboxylic acid adduct resolves hygroscopicity and low solubility in solid detergent formulations.
Real-time poloidal flow monitoring adjusts rotor power to prevent over-pulping, maintaining pulp brightness while reducing ink reattachment.
Optimized pulping parameters narrow molecular weight distribution to produce regenerated fibers with wet tenacity exceeding 1.9 cN/dtex.