NextPrism Tech Corporation's solution empowers customers to maximize the collection of recyclables within their operational scope, ensuring stable material supply; achieve efficient utilization and maximize resource recovery benefits for all types of recyclable materials, guaranteeing output material purity; drive the sorting system toward minimally manned, intelligent, and highly automated operations, reducing labor dependency and ensuring stable production line operation; and significantly boost system throughput capacity, achieving efficient and stable production. (Image 02)
Municipal Solid Waste / Mixed Recyclables
Mixed Recyclables
The recyclables industry faces challenges including insufficient standardization, difficult regulatory oversight, lagging digitalization, and inefficient data collection. Traditional vendor-based collection models have led to a fragmented and disorganized industry with poor working conditions and obstructed material flow, while corridor stockpiling creates safety hazards. Reliance on manual sorting due to complex material compositions limits throughput capacity and results in significant resource waste.
SOLUTION
What Our Solution Can Do
Mixed recyclables
(Image input-1)Over thirty categories of recyclable materials including cardboard, book and newspaper paper, mixed paper, plastic bottles, food containers, PET blister packaging, mixed plastics, glass, ferrous metals, non-ferrous metals, mixed metals, used clothing, paired shoes, bags and luggage, cotton quilts, and electrical appliances
(Images output-1, output-2, output-3, output-4, output-5)

INPUT & OUTPUT
Input and Output





| Type | Content |
|---|---|
| Input | Mixed recyclables |
| Output | Over thirty categories including cardboard, book and newspaper paper, mixed paper, plastic bottles, food containers, PET blister packaging, mixed plastics, glass, ferrous metals, non-ferrous metals, mixed metals, used clothing, paired shoes, bags and luggage, cotton quilts, and electrical appliances |
CORE TECHNOLOGY
Core Technology
Mechanical Screening Technology
- Through the combined application of multiple types of screening equipment, we achieve precise diversion of materials with different sizes, weights, densities, and 2D/3D characteristics. (Image 04-1)
AI Sorting Technology
- Through continuous material identification and model training, we achieve intelligent recognition and sorting of multi-category materials, completing high-precision, large-scale material sorting operations via equipment clusters. (Image 04-2)
ADVANTAGES
Advantages
Precision Grading and Diversion
Recyclables undergo multi-stage mechanical screening and are precisely diverted by size, 3D/flat morphology, enabling materials to reach the optimal recognition and sorting state.
Multi-Technology Intelligent Sorting
Integrating artificial intelligence, visible light, proprietary vision technology, and multi-sensor fusion, supported by a specialized large database and visualization platform, we achieve precision sorting.
Minimally Manned Intelligent Sorting
Centered on full-process intelligent technology, we enable minimally manned, intelligent operations for recyclable resource sorting.
Human-Centered O&M Design
The system plans full-process equipment inspection and maintenance routing with human-centered design for convenient daily O&M management.
Efficient, Stable, Large-Scale Operation
Deeply adapted to diverse material compositions and forms, ensuring stable production, precise and efficient sorting, with substantial throughput capacity and stable economic returns.
TECHNOLOGY IMAGES
Mechanical Screening Technology and AI Sorting Technology
Mechanical Screening Technology
Through the combined application of multiple types of screening equipment, we achieve precise diversion of materials with different sizes, weights, densities, and 2D/3D characteristics. (Image 04-1)
AI Sorting Technology
Through continuous material identification and model training, we achieve intelligent recognition and sorting of multi-category materials, completing high-precision, large-scale material sorting operations via equipment clusters. (Image 04-2)


PROJECT CASES
Project Cases
NextPrism Tech Corporation Recyclables Sorting Center Project
- Location
- Jiangsu
- Waste Type Processed
- Mixed recyclables
- Daily Processing Capacity
- 100 tons
Project overview: Undertaking the specialized processing of mixed recyclables from Suzhou City, this project adopts a standardized processing model of "manual pre-sorting + mechanical screening + AI intelligent sorting + mechanical baling." Through efficient multi-stage coordination, mixed recyclables can be precisely sorted into over thirty categories.



Ningbo Recyclable Waste Processing Project
- Location
- Zhejiang
- Waste Type Processed
- Paper, metals, high and low-value plastics, and other recyclables
- Daily Processing Capacity
- 24 tons
Project overview: Serving 600,000 permanent residents in Ningbo with 492 collection service points, this project leverages 12 domestically developed core intelligent sorting units to create a leading combined sorting line and mixed plastics sorting line. Through multi-process integration, plastics are refined into 13 categories, achieving efficient resource circular utilization. The project has received key support from both municipal and district governments and features comprehensive full-process oversight and sustainable operational safeguards.


