Improving Efficiency Across Pulp and Paper Mills
Pulp and paper mills face mounting pressure to reduce water consumption, lower chemical costs, and meet stricter environmental regulations. Reliable separation and emissions control have become essential for maintaining production efficiency while managing sustainability commitments.
Pulp and paper mills face mounting pressure to reduce water consumption, lower chemical costs, and meet stricter environmental regulations. Reliable separation and emissions control have become essential for maintaining production efficiency while managing sustainability commitments.
ALSYS delivers membrane and catalyst solutions designed for the harsh chemical and thermal conditions common in pulp and paper operations, helping mills stabilize performance, reduce operating costs, and extend the productive life of existing treatment infrastructure.
Answers to Common Pulp and Paper Treatment Challenges
Pulp and paper operations face complex chemical recovery, water clarification, and emissions challenges across kraft, sulfite, and recycled fiber processes. The questions below highlight where membrane and catalyst technologies deliver the greatest impact and how ALSYS helps improve reliability, compliance, and overall mill performance.
Caustic recovery streams operate at pH 12-14 with elevated temperatures and significant lignin and suspended solids content. Traditional clarification struggles with these conditions, leading to inconsistent caustic purity and increased chemical makeup costs. Ceramic membranes maintain stable flux and separation performance despite extreme pH, high temperatures, and organic loading, enabling mills to recover more caustic while reducing chemical purchasing. Their tolerance for aggressive cleaning protocols ensures consistent performance across production campaigns in your mill.
White water clarification must balance solids removal with system reliability—any downtime directly impacts paper machine productivity. ALSYS membrane systems operate continuously with automated backwash cycles that maintain flux without interrupting white water flow. Installations across kraft and recycled fiber mills demonstrate improved shower water quality, reduced deposit formation on felts and fabrics, and enhanced drainage performance. Systems adapt to grade changes and furnish variations while delivering consistent permeate quality for your paper machine.
Recovery boiler exhaust contains high particulate loading, variable temperatures, and combustion products from black liquor that challenge catalyst performance and longevity. ALSYS SCR catalysts are engineered for high-dust applications, maintaining NOx reduction activity despite particulate exposure and temperature swings typical of recovery boiler operation. They integrate with existing boiler controls and support compliance with air quality regulations while preserving recovery boiler efficiency in your mill.
Water closure requires reliable polishing of effluent streams to meet quality specifications for process reuse while managing dissolved organics and residual chemistry. ALSYS membrane systems treat biological effluent and fiber recovery streams, producing water suitable for cooling systems, process dilution, and non-critical applications. By enabling reuse, mills reduce freshwater consumption, lower wastewater discharge volumes, and progress toward closure targets while maintaining production flexibility in your facility.
Explore The Solutions That Best Match Your Separation or Emissions Challenge
Find the membrane or catalyst technologies that best address your mill’s performance targets.