1000kg / h Litium Batré pembuangan Line
Plan an industrial target configuration around feedstock supply, battery format, pra-perlakuan, operating schedule, site utilities and required output fractions.
The page name is retained for URL and search continuity. It does not guarantee hourly or daily output for unreviewed material.
Project view
Bahan / outputIndustrial scale begins with supply continuity and site integration
The original 1000kg/h page focused on scale and automation. This rebuild turns those claims into a practical industrial planning framework covering receiving, buffer capacity, panganteur, maintenance and output handling.
01Supply 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.
02Receiving and buffer plan
Map unloading, isolation, identification, temporary storage and controlled transfer. Buffer design should reflect shift patterns and upstream variability.
03Automation boundary
Identify which material-handling steps, alarms, interlocks, records and interfaces must be automated. The word automated is not a complete specification.
04Maintenance and access
Industrial layout must include inspection, cleaning, replacement access, lifting needs and safe maintenance zones around the selected modules.
Industrial process framework
Industrial configuration is more than enlarging individual machines. Expand each stage to see the engineering questions that should be resolved before approval.
01Receiving and pre-treatment+

Define identification, ngurangan, dismantling and storage boundaries.
- Input to confirm: formatna, kimia, condition and variation at this step.
- Scope decision: included equipment, optional controls and customer-supplied items.
- Acceptance point: define the handover, sampling or operating check in the approved specification.
02Controlled feeding+

Configure feeding and size reduction for the approved operating basis.
- Input to confirm: formatna, kimia, condition and variation at this step.
- Scope decision: included equipment, optional controls and customer-supplied items.
- Acceptance point: define the handover, sampling or operating check in the approved specification.
03Multi-stage separation+

Arrange suitable screening, airflow, density and magnetic modules.
- Input to confirm: formatna, kimia, condition and variation at this step.
- Scope decision: included equipment, optional controls and customer-supplied items.
- Acceptance point: define the handover, sampling or operating check in the approved specification.
04Collection and monitoring+

Define conveying, intermediate collection, alarms and records.
- Input to confirm: formatna, kimia, condition and variation at this step.
- Scope decision: included equipment, optional controls and customer-supplied items.
- Acceptance point: define the handover, sampling or operating check in the approved specification.
05Site controls+

Select control modules for the proposed route and documented local needs.
- Input to confirm: formatna, kimia, condition and variation at this step.
- Scope decision: included equipment, optional controls and customer-supplied items.
- Acceptance point: define the handover, sampling or operating check in the approved specification.
Industrial configuration requires coordinated modules and interfaces
Capacity class is only one input. The system also needs balanced feeding, pipisahan, collection, control and site interfaces.
01Industrial receiving flow
Define the point where customer responsibility ends and the processing line begins, including identification, storage and controlled feeding.
02Controlled feeding
Buffering and feeding should match the reviewed material and planned operating schedule. The proposal should state monitoring and intervention points.
03Multi-stage size reduction
One or more stages may be used according to format, conditioning route and target particle state. Equipment selection follows material review.
04Screening and separation
Screening, airflow, density and magnetic stages are balanced as a system rather than selected independently.
05Collection and storage
Define containers, transfer, sampling, storage, dust control and downstream dispatch for each output category.
06Controls and records
The approved scope should describe alarms, interlocks, operator values, batch or shift records and interfaces with site systems.
Industrial project decisions that should be written into the scope
A larger target configuration needs clearer ownership and interface definitions.
Material-flow ownership
Receiving, ngurangan, ngabongkar, feeding, intermediate storage and output dispatch.
Control philosophy
Operator roles, alarms, interlocks, shutdown boundaries, data records and maintenance modes.
Utilities and site
Electrical standard, installed power basis, ventilation, compressed air, access and available footprint.
Acceptance plan
Feedstock window, test material, sampling, performance conditions and documentation owners.
1000kg/h project checklist
This table separates the current planning basis from items that require material tests, site information or written human approval.
| Project item | Current basis | Status |
|---|---|---|
| Configuration class | 1000kg/h target | Controlled |
| Guaranteed output | Not stated on website | Locked |
| Feedstock supply basis | Customer input | To confirm |
| Chemistry and format | From material profile | To confirm |
| Operating schedule | Customer input | To confirm |
| Automation boundary | Defined in proposal | Project-dependent |
| Utilities | Based on site information | To confirm |
| Material flow and layout | Based on site review | To confirm |
Design output handling as part of the line
At industrial scale, collection, sampling, storage and downstream transfer are part of system design—not an afterthought.
01Powder-bearing output
Confirm sealed collection, sampling, container handling and the downstream acceptance window.
02Metal-bearing outputs
Copper-, alumunium- and ferrous-bearing fractions require defined collection and transfer points.
03Residual and recirculation streams
The proposal should identify residual material, recirculation and customer responsibilities for downstream handling.
Acceptance discipline: Yield, kasucian, capacity and recovery values are not assumed from a website description. They must be tied to the approved feedstock, test basis and written project specification.
Get the right response for your current decision stage
Tell YUSHUNXIN whether you are researching, testing feasibility, comparing suppliers or preparing procurement. The project brief routes the next conversation around the information you have now.
Why work with YUSHUNXIN
YUSHUNXIN combines equipment configuration with layout and project-input review, documenting assumptions and open items before an industrial scope is presented as final.
Confirmed facts
Approved material data and project requirements are shown as the basis of the proposal.
Project-dependent items
Configuration choices remain conditional until the feedstock and site have been reviewed.
Human approval gates
Commercial terms, final performance and compliance statements require authorized review.
Version control
The proposal should identify the approved configuration version, assumptions and open questions.
Questions project teams ask before a proposal
Is 1000kg/h a guaranteed throughput?+
No. It is the target configuration represented by the existing page. Actual performance requires written technical confirmation.
Can daily output be calculated from the page name?+
Not as a public commitment. Availability, feed consistency, maintenance and operating conditions affect actual output.
What automation is included?+
The proposal should define material handling, ngawaskeun, alarms, interlocks, records and interfaces.
Does the line meet every country’s requirements?+
No blanket statement is made. The customer and qualified local parties confirm permits and applicable local requirements.
What should an industrial brief include?+
Include supply, kimia, formatna, pra-perlakuan, operating basis, outputs, situs, utilitas, country and integration needs.
Related project planning pages
1,000 kg/h scope comparison
Use the 1,000 kg/h class only after defining the process modules included in the stable throughput measurement.
Matéri asup
Representative battery mix, incoming preparation, hourly schedule and acceptance targets.
outputs ekspektasi
Classified electrode-, copper-, alumunium- and iron-bearing fractions; measured results remain test-controlled.
panganteur proyék
Complete safety, environmental, utilitas, controls, storage and downstream scope.
Use only the row matching the selected process boundary.
| Rujukan katalog | Kapasitas | Kakuatan | amplop fisik | Kaasup wates |
|---|---|---|---|---|
| YSX public familyPublic equipment family | 500–1,000 kg/h | 102–238 kW | 20–35 m line; 7.5–19.5 t | Standard equipment-family envelope; no per-model allocation |
| YSX-LR1000LR complete line | 1,000 kg/h | 410 kW | 45 × 17 × 7.5 m | Conditioning, separation and gas-treatment line |
| Project reference - 1000Earlier integrated layout | 1,000 kg/h | 349 kW | 80 × 7 × 7 m | Earlier layout without a published model label |
Aturan konfigurasi: kapasitas katalog mangrupakeun rujukan tata. throughput stabil, dipasang / kakuatan operasi, tapak suku, pamulihan, kasucian, émisi jeung paménta utiliti merlukeun daptar parabot disatujuan, representative material and written acceptance conditions.
Inpormasi anu diperyogikeun sateuacan konfigurasi sareng petik
- Poto bahan wawakil, specifications and available sample.
- Kapasitas diperlukeun tambah jam per shift, shifts per day and operating days.
- Target outputs, sampling method and downstream receiver requirements.
- Nagara situs, kakuatan sadia, suluh, cai, compressed air and building limits.
- Lingkungan lokal, seuneu, storage and occupational-safety requirements.
- Dipénta wates pangiriman: parabot, perenah, pamasangan, commissioning and training.