01 Supply continuity Document contracted or forecast material supply, chemistry mix, format mix and variability. Industrial equipment should not be sized from a short-term sample alone.
02 Receiving and buffer plan Map unloading, isolation, identification, temporary storage and controlled transfer. Buffer design should reflect shift patterns and upstream variability.
03 Automation boundary Identify which material-handling steps, alarms, ngaahi loka, records and interfaces must be automated. The word automated is not a complete specification.
04 Maintenance and access Industrial layout must include inspection, cleaning, replacement access, lifting needs and safe maintenance zones around the selected modules.
01 Upstream interface Industrial receiving flow Define the point where customer responsibility ends and the processing line begins, including identification, storage and controlled feeding.
02 Flow stability Controlled feeding Buffering and feeding should match the reviewed material and planned operating schedule. The proposal should state monitoring and intervention points.
03 Process-dependent Multi-stage size reduction One or more stages may be used according to format, conditioning route and target particle state. Equipment selection follows material review.
04 System balance Screening and separation Screening, airflow, density and magnetic stages are balanced as a system rather than selected independently.
05 Downstream interface Collection and storage Define containers, transfer, sampling, storage, dust control and downstream dispatch for each output category.
06 Automation scope Controls and records The approved scope should describe alarms, ngaahi loka, operator values, batch or shift records and interfaces with site systems.
01 Material-flow ownership Receiving, faka'atā, veteki, feeding, intermediate storage and output dispatch.
02 Control philosophy Operator roles, alarms, ngaahi loka, shutdown boundaries, data records and maintenance modes.
03 Utilities and site Electrical standard, installed power basis, ventilation, compressed air, access and available footprint.
04 Acceptance plan Feedstock window, test material, sampling, performance conditions and documentation owners.
01 Powder-bearing output Confirm sealed collection, sampling, container handling and the downstream acceptance window.
02 Metal-bearing outputs Copper-, ʻaluminiume- and ferrous-bearing fractions require defined collection and transfer points.
03 Residual and recirculation streams The proposal should identify residual material, recirculation and customer responsibilities for downstream handling.
A Confirmed facts Approved material data and project requirements are shown as the basis of the proposal.
B Project-dependent items Configuration choices remain conditional until the feedstock and site have been reviewed.
C Human approval gates Commercial terms, final performance and compliance statements require authorized review.
D Version control The proposal should identify the approved configuration version, assumptions and open questions.
01Incoming materialRepresentative battery mix, incoming preparation, hourly schedule and acceptance targets.
02Expected outputsClassified electrode-, copper-, ʻaluminiume- and iron-bearing fractions; measured results remain test-controlled.
03Project interfacesComplete safety, environmental, ngaahi me'angaue, controls, storage and downstream scope.