Detailed Design Engineering for a new electrolysis hydrogen generation system to inject hydrogen and oxygen into existing kiln burner fuel and combustion air lines, respectively.
FEL2 and Detailed Design Engineering of ISBL scope for a new Drywall Compound Manufacturing Facility to expand client’s market footprint into a new location and optimize plant performance.
Front-end engineering services for a pelletized bagasse feedstock facility supporting sustainable aviation fuel production at a co-located sugar mill, including bagasse handling, drying, pelletizing, utility upgrades, and carbon capture.
Front-end engineering study for a new low consistency storage tower and pump integrated into an existing 30 TPD ag-based fiber pulping process facility.
This effort included the completion of the conceptual design (FEL2) phase for a $5 million USD water sustainability program for an existing Fiber Optics facility with a goal to reduce water consumption at the site by 80%.
This effort included the front-end engineering, detailed design, and construction oversight to convert all machine DC motors and drives to AC power. The PIVs were also replaced with AC motors.
Front-end engineering and project development services to assist developer in determining the feasibility and estimated construction cost of various projects throughout the upstate of South Carolina.
Isomer provided process engineering design and consulting services in support of an OEM’s proprietary pyrolysis skid designed to convert municipal solid waste (MSW) into an enhanced syngas stream for sustainable aviation fuel (SAF) production.
FEL1 engineering design for a novel critical elements recovery facility funded by ARPA-e to process 1 ktpd of ultramafic tailings, integrating direct air capture of CO2 for carbon sequestration and electrolytic production of sulfuric acid.
Development of a strategic capital expenditure (CAPEX) spending plan to guide the allocation of approximately $50MM for an Owner with a mill in excess of 60 years of age.