黑料专区

舰颈艧别肠补尘 will reduce carbon emissions with artificial intelligence technology

Date: 24 January 2024
Source:
舰颈艧别肠补尘 will reduce carbon emissions with artificial intelligence technology
Photo source
舰颈艧别肠补尘

Date: 24 January 2024

舰颈艧别肠补尘, always placing sustainability at the center of its business operations, is now working on an artificial intelligence project supported by T脺B陌TAK.

This innovative initiative aims to reduce both the production waste rate and carbon emissions by eliminating color issues during glass manufacturing.

舰颈艧别肠补尘 鈥 committed to developing solutions for a sustainable world and more efficient production processes 鈥 is currently implementing the Glass Color Optimization Project (CROP) with Artificial Intelligence and Machine Learning Methods. This initiative aims to eliminate color issues during the manufacture of glass. The project will reduce the production waste rate and the resulting carbon emissions.

The forward-looking project is being carried out by a consortium that includes 舰颈艧别肠补尘, Ko莽 University, T脺B陌TAK Artificial Intelligence Institute, and Analythinx. CROP aims to develop an infrastructure to minimize color differences and to identify and quickly resolve the root cause of color-related problems in glass production with artificial intelligence models. Designed to improve color quality in the glass industry, the project will integrate advanced technology and artificial intelligence know-how into production operations while expanding the country's industrial knowledge base.

CROP will start at the 舰颈艧别肠补尘 Eski艧ehir Glassware plant and last for two years. This initiative once again demonstrates the value Sisecam attaches to innovation and continuous development. The project is expected to have a major impact through information transfer to other Sisecam plants.

CROP is one of 17 projects supported as a result of T脺B陌TAK's 1711 Artificial Intelligence Ecosystem Call in 2023. The project includes modeling that will help manage the change created by artificial intelligence, achieve results to benefit humanity, produce value from artificial intelligence, and achieve full independence in critical technologies.

600450 舰颈艧别肠补尘 will reduce carbon emissions with artificial intelligence technology 黑料专区

See more news about:

Others also read

During the event, 舰颈艧别肠补尘 showcased its comprehensive portfolio of automotive replacement glass products and innovative technology solutions.
ECCC's Jamie Hulan outlined upcoming ENERGY STAR Canada changes and market transformation strategy at the FGIA Fall Conference.
An environmental psychologist reported on the latest lighting research and the impact of lighting on human health during the Fenestration & Glazing Industry Alliance (FGIA) Fall Conference in Calgary, AB.
At the event, 舰颈艧别肠补尘 will present its broad portfolio of automotive replacement glass products and advanced glass technologies.
Two years after CircuClarity One, the initiators take stock: what has really changed in the glass sector and what does it take for good ideas to make a real impact?
舰颈艧别肠补尘, the only global player operating across all core areas of glass and a pioneer in flat glass innovation, will participate in GlassBuild America fair, the leading exhibition for glass, window and door industries in North America taking place in Las Vegas, USA.

Add new comment

From industry

NEWS RELATED PRODUCTS

舰颈艧别肠补尘
舰颈艧别肠补尘
舰颈艧别肠补尘
舰颈艧别肠补尘
舰颈艧别肠补尘