This effort included the basic design (FEL1-2) phase for a greenfield $37 million USD Lithium-Ion Battery recycling facility. The owner operates facilities throughout Asia and Europe and this facility is their first in the United States.
Civil engineering, permit coordination, and construction administration for the removal and replacement of an deteriorated parking lot with a 107,500-sf light industrial building.
Isomer conducted an engineering review of a proposed lithium facility that imports spodumene ore and uses a novel process to produce lithium carbonate, assessing technology, scale-up, site, demand, and finances, with findings and red flags.
FEL2 front-end engineering design for a first-of-a-kind 1000TPA facility to recover monomers from spent textiles via a proprietary chemical recycling process, including scale-up from an existing lab-scale processes.
Detailed design and structural dynamics engineering evaluation to analyze a 4000-hp existing power plant ID fan for an unbalance issue at an existing facility.
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.
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 FEL3 and detailed design for a new reactor structure, associated equipment and supporting insfras turecture at an existing surfactant production facility.
FEL2 preliminary study and detailed design engineering for a new concrete containment area for chemical railcar loading at an existing production facility.
Technical due diligence on behalf of a financier for an existing soil washing asset in operation, as well as a forward-looking evaluation of the company's pipeline of development opportunities.