Detailed Design for a $20 million white liquor optimization project consisting of a new three-story pressure disc filter process building, causticizer, clarifier and lime mud filter upgrades.
Full-service Detailed Design Engineering supporting Balance of Plant design, equipment procurement, and integration of a vendor-supplied anaerobic/aerobic 4.0 MGD Wastewater Treatment System and infrastructure into an existing Linerboard Mill.
Detailed design for rerouting broke from an existing linerboard machine to the OCC system to improve water balance, remove fines, and increase fiber recovery.
This effort included the detailed design and construction support to install a River Water Intake System and Raw Water Treatment system to support an Ammonium Nitrate Solution (ANSol) plant in Tennessee.
Designing temporary construction facilities on a constrained worksite, including a lunch/break tent over an existing ditch line, to support the EPC contractor's construction of new HRSG units at an existing generating station.
FEL-2 design to support upgrades to an existing linerboard paper machine roll handling line, including conveyors, a lowerator, and shipping floor conveyors for loading finished product rolls into railcars.
FEL1 Engineering and Owner’s Engineering Services for a 160 TPD Tissue Machine Rebuild project to convert from Towel-grade to Tissue-grade and increase production capacity as part of a Fleet-wide Rebuild Program.
Detailed design engineering for a $45MM TIC laser guided vehicle operated distribution center at an existing sugar mill and refinery, including the integration into an existing warehouse and packaging building.
Root cause analysis for a significant vibration issue affecting a group of dryer cans on an existing paper machine, including both onsite and offsite analysis.
Detailed design for a maintenance and reliability project on an existing linerboard machine that included the installation of a new dust collection system to address issues with glue and sensor reliability caused by the presence of excess dust.