Technology · T.01

Cracking the code of waste identification.

Traditional optical identification fails on visually-similar materials, complex polymers, and contaminated streams. Our patented nanotechnology operates at the nanoscale, coating material with optical nanosensors and reading them with ultra-fast lasers and an AI inference engine.

M.01

Accelerated accuracy

Precision in every particle, including complex co-polymers.

M.02

Effortless build

Complements your existing conveyor systems with minimal capex.

M.03

Data-driven

Every scan produces structured data, turning waste into wisdom.

M.04

65% ROI in year one

Typical return on investment within the first year of deployment.

01 / The process

Dissecting the process, particle by particle.

Three steps, executed in sequence on every piece of material on the belt.

PROCESS · 01

Misting

Waste material is misted with our patented optical nanosensors. The process ensures each material is densely coated, particle by particle.

PROCESS · 02

Optical identification

Coated material enters the optical block and is scanned by ultra-fast laser systems. Lasers reflect off the attached nanosensors with unique optical signatures.

PROCESS · 03

AI data analysis

Reflected light is fed back into the AI engine. Machine-learning algorithms process the signal and classify materials based on their unique optical responses.

02 / Why nanoscale

Maximizing material ID with nanosensors.

Traditional visual identification methods often fail to distinguish between materials accurately, leading to contamination and reduced quality and efficiency in the recycling process.

NeoSort's nanotech utilizes nanotags to optimize the material identification process, enabling never-before-seen precision, even with materials that are difficult to distinguish using conventional methods.

03 / The AI engine

AI accuracy at the nanoscale.

The AI engine harnesses signals from nanotech sensors at material-property level. These signals are processed by a machine-learning model trained to identify patterns and classify composition with unparalleled precision, even for visually identical materials with different molecular structures.

04 / Integration

Streamlined integration. Capex savings.

Drop-in compatibility

Integrates seamlessly with existing waste management facilities and material recovery facilities (MRFs), complementing conveyor systems without disrupting inbound waste processes.

Capex reduction

Reduces capital expenditure by up to 85% compared to the leading alternative, optimizing efficiency and maximizing return on investment.

Adapts to any setup

Adapts to virtually any waste management facility, ensuring a perfect fit for your operation and minimizing additional infrastructure costs.

Data sovereignty

Robust encryption in transit and at rest. AWS, VPN, and VPC architecture maintain the highest standards of privacy and operational integrity.

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Tap into the power of nanotech.