GL01V1-5
Mini
- Capacity
- 0.6–0.8t/h
- Power
- 30kW
- Footprint
- 24m2installed footprint · 8 × 3 m layout · 3 m clear height
- Sorting scope
- 5material typesPET · HDPE · PP · Mixed
AI Optical Sorting
The WEI LAN AI optical sorter for waste identifies PET bottles, HDPE bottles, PP, and other mixed plastics by material and color. Modular configurations support automated waste sorting systems, MRF equipment upgrades, and compact smart recycling facilities that need stable continuous sorting.
Model Data
Three configurations on a shared AI sorting platform. Choose by throughput and material categories.
GL01V1-5
Mini
GL01V2-9
Standard
GL01V3-10
Plus
Performance Data
GL01V combines AI recognition, optical sensing, air-jet ejection, cyclic conveying, and digital reporting in a compact sorting center for plastic recycling and MRF upgrades.
Feed material
Compact sorting center
Mini, Standard, and Plus layouts scale from compact pilot lines to larger MRF sorting upgrades while keeping the same AI/HUD operating logic.
Smart machine
Higher recovery value: AI identifies PET, HDPE, PP, PE, mixed plastics, and reject streams with less dependence on manual judgment.
Stable output purity: fast air-jet ejection removes targets accurately while the line keeps continuous throughput.
Lower purity risk: live sensor signals expose recognition, pressure, timing, and material-flow drift before output quality drops.
96-98% sorting performance: brochure-listed accuracy supports high-purity recovery targets for plastic recycling and MRF upgrades.
Lower labor pressure: robot-ready layout leaves room to reduce manual picking as material volume grows.
Faster decisions: live status, alarms, runtime, sorting statistics, carbon indicators, and video feeds are combined in one view.
Process Flow
The core sorting stage shows material flow, AI recognition, air-jet separation, and operating data in one view.
Core process videoAI recognition and optical sorting in one operating view
Comparison
Comparison data shows the WEI LAN AI optical sorter against a typical sorting line on the metrics that drive total cost of ownership.
Lower spare-part ratio means slower depreciation and lower lifetime maintenance cost.
Skid-mounted layout fits compact MRF rooms and roadside recycling stations.
Optimised feed + AI recognition lifts throughput at the same footprint class.
Roughly 40% lower power per tonne sorted, calculated at rated throughput.
Pre-wired skid modules ship in standard containers; on-site work is bolt-and-cable only.
FAQ
These answers help recycling operators, EPC teams, and equipment procurement teams evaluate whether the AI optical sorter fits their material stream and project stage.
The system is designed for recyclable plastic streams such as PET bottles, HDPE bottles, PP, mixed rigid plastics, and color-based PET fractions including transparent, green, blue, and mixed-color bottles.
Price depends on throughput, material categories, number of sorting modules, feeding and baling scope, digital control requirements, installation support, and whether the project needs integration with existing MRF equipment.
The GL01V model range covers 0.6-2 t/h. Final sizing should be checked against material composition, contamination level, desired purity, available footprint, and daily operating hours.
Integration can be evaluated when the project team provides the current process layout, feed condition, conveyor height, control requirements, and target output. The skid-mounted structure supports practical retrofit discussions.
RFQ Input
Send these inputs before quotation so the engineering team can confirm sorting scope, equipment model, layout feasibility, and integration risks.
Show the feed stream on belt, bale condition, contamination level, and color mix in normal operating conditions.
Confirm hourly capacity, daily operating hours, peak load, and whether the line needs one or multiple sorting modules.
List required fractions such as PET clear, PET green, PET blue, HDPE, PP, mixed plastic, or reject stream.
Provide conveyor height, available footprint, upstream feeding method, downstream baler position, and control interface needs.