
AJUNTAMENT D'ALCOI
Website

Generalitat Valenciana
Website

Ayuntamiento de Valencia
Website

Cicloplast
Website

Ayuntamiento de Onil
Website

Anarpla
Website

Ayuntamiento de Mislata
Website

nlWA, North London Waste Authority
Website

Ayuntamiento de Salinas
Website

Zicla
Website

Fondazione Ecosistemi
Website

PEFC
Website

ALQUIENVAS
Website

DIPUTACI� DE VAL�NCIA
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AYUNTAMIENTO DE REQUENA
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UNIVERSIDAD DE ZARAGOZA
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OBSERVATORIO CONTRATACIÓN PÚBLICA
Website

AYUNTAMIENTO DE PAIPORTA
Website

AYUNTAMIENTO DE CUENCA
Website

BERL� S.A.
Website

CM PLASTIK
Website

TRANSFORMADORES INDUSTRIALES ECOL�GICOS

INDUSTRIAS AGAPITO
Website

RUBI KANGURO
Website
If you want to support our LIFE project as a STAKEHOLDER, please contact with us: life-future-project@aimplas.es
In this section, you can access to the latest technical information related to the FUTURE project topic.
A SMART MATERIAL WASTE STATION SUPPORTED BY ARTIFICIAL INTELLIGENCE, ROBOT AND DIGITAL TECHNOLOGY
This invention relates to a circular economy, sustainable artificial intelligence, robot and digital technology supported smart material waste station with an object to reduce the carbon footprint, characterized in that it comprises at least one solid waste bin (1) containing the glass section (1.1), the paper section (1.2), the plastic section (1.3), the battery section (1.4), the electronic section (1.5), the composite packaging section (1.6), the metal section (1.7), the organic section (1.8) and the other waste section (1.9) where the solid waste other than these sections is stored, the water waste bin (3) where the water wastes in the solid waste are poured over the water channel (8), the liquid waste bin (2) where the non-water wastes in the solid waste are poured over the liquid channel (7), at least one horizontally positioned horizontal rail (5) that allows the battery section (1.4) and the electronic section (1.5) to be horizontally separated from the solid waste bin (1), at least one vertically positioned vertical rail (4) that allows the remaining sections except the battery section (1.4) and the electronic section (1.5) to be separated vertically from the solid waste bin (1) and the liquid waste bin (2) and the water waste bin (3), the laser sensor integrated in the bin in each section in the solid waste bin (1), the liquid waste bin (2) and the water waste bin (3), the weight sensor integrated in the bin in each section in the solid waste bin (1), the liquid waste bin (2) and the water waste bin (3), the digital display (6) where the occupancy rate of each section in the solid waste bin (1) of the personnel is displayed and the QR code is read, the microcontroller assigning points to the person who deposits waste according to the weight ratio of the wastes transferred to the solid waste sections in the solid waste bin (1), the liquid waste bin (2) and the water waste bin (3) after the QR code is read, the image processor classifying according to the type of solid wastes left in the material area (9), the robot arm using the separation line (A) over the separation area (10) to transfer the classified solid wastes from the accumulation area (11), the Wi-Fi module that transmits the occupancy rates of the solid waste sections in the solid waste bin (1), the liquid waste bin (2) and the waste in the water waste bin (3) to the main center.

» Number: WO2025136279A1 (A1)
» Publication Date: 26/06/2025
» Applicant: ISTANBUL MEDIPOL UNIV TEKNOLOJI TRANSFER OFISI ANONIM SIRKETI?[TR]
» Inventor: CAN GIZEM?[TR]
C/ Gustave Eiffel, 4
(València Parc Tecnològic) - 46980
PATERNA (Valencia) - SPAIN
(+34) 96 136 60 40
Project Management department - Sustainability and Industrial Recovery
life-future-project@aimplas.es
