Closing the feedback loop on the electrode cycle
Electrochemical DLE runs on intercalation and elution phases with different optimal potential windows. EELI monitors electrode state and incoming brine chemistry continuously, then adjusts setpoints to keep both phases near their efficiency ceiling.
Four stages, one continuous loop
EELI operates as a real-time process, not a batch optimization. Each stage feeds the next, creating a feedback loop that responds to conditions as they change rather than on a fixed schedule.
Upstream brine characterization
Inline ion-selective electrode sensors and conductivity probes at the brine feed inlet measure Li, Mg, Ca, and total dissolved solids continuously. These readings enter EELI's feed-forward model 12 to 40 minutes before the brine front reaches the electrode stack, providing the lead time needed for proactive setpoint adjustment.
Electrode state estimation
On-stack electrochemical impedance spectroscopy measurements feed a continuous model of Li+ loading fraction in the intercalation material. The state estimator distinguishes between normal loading variation, Mg co-intercalation signatures, and early-stage fouling responses in the impedance spectrum, updating every 30 seconds throughout the cycle.
Cycle optimization
The cycle optimizer combines the brine feed forecast with the real-time electrode state estimate to compute optimal potential setpoints for the intercalation, elution, and rinse phases of the next cycle. The optimization balances recovery rate against purity targets that operators set within EELI's dashboard interface. Cycle duration adjusts dynamically based on actual loading fraction rather than a fixed timer.
PLC setpoint delivery
Updated potential setpoints are sent to the site PLC at cycle phase boundaries via Modbus TCP or OPC-UA. EELI also monitors for fouling indicator thresholds and can trigger targeted rinse cycles when the impedance signature crosses early-warning limits. All setpoint changes are logged with timestamp and causal state data for operator review and retrospective analysis.
The closed-loop control architecture
EELI's control loop runs continuously alongside the electrode cycle. The feedback path closes at the state estimator: what the electrode actually did informs the setpoints for the next phase.
Technical questions on EELI integration
Ready to close the control loop?
We work through a structured pilot process: brine chemistry review, sensor placement assessment, PLC communication mapping, and a commissioning timeline that fits your operational schedule.