Publications
Seeking Recycling technologies for biodegradable films |
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We are looking for solutions to convert bio-based packaging back to starting materials or other high-value added chemicals (no fuels). |
Seeking to Reduce Contamination in Production Lines (Converting Machines) |
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We are seeking to reduce contamination in our production lines (converting machines). The specific machines use diverse web materials (mainly non-woven based) to produce our products. The materials come to our machines in a planetary roll form. Those rolls would be unwound and conveyed through the converting processes (combining, cutting…) to form final products. Within this process, the web materials release different sources of contamination (e.g. dust &/or fibers) causing accumulation of contamination in all places of the machine where it can settle. With the late changes of materials, we have seen a substantial increase in contamination. As a result, we need to move cleaning times from 8 hour intervals (10 minute cleaning with 2 operators) to less than 6 hour intervals (>15min cleaning with 4 people). In order to maintain operability standards and productivity, we are seeking methods to return to 8 hour cleaning intervals. |
Seeking technologies to reduce GHGs in all aspects of the supply chain and manufacturing process. |
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PepsiCo is committed to reducing GHG emissions from seed to shelf. We are looking to engage with partners who can assist us in our goal of reducing GHG 20% by 2030 and achieving net-zero emissions by 2050. As new technologies emerge, efficiencies will be gained and PepsiCo aims to remain at the forefront of best practices in the food and beverage industry. PepsiCo is seeking technologies to reduce GHGs in all aspects of the supply chain and manufacturing process. Solutions may be in one or more of the following areas: • Agriculture – sustainable farming and the reduction of GHG intensive fertilizers • Manufacturing – adopting energy efficient manufacturing processes; novel methods for utilizing waste; use of renewable thermal energy at scale • Packaging – alternative packaging materials and formats that reduce GHGs • Distribution – technologies to assist in the efficiency of our company-owned and third party fleet |
TWISCO – Digital TWIn for Sustainable Supply Chain in Construction |
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TwiSCo is a Digital Twin solution demonstrator whose purpose is to promote the sharing of data on construction products in order to finally have complete, accurate and reliable data on a built asset and thus be able to better manage its construction, maintenance and end of life, and to reduce the gap between designed and as-built performance of future constructions. To this aim, TwiSCo offers value-added services which, by enabling players of the construction supply chain to optimize their practices, lead them to formalize and structure their data, and to share them with a win-win perspective. Here are some examples of the gains that the construction supply chain can expect from the tool: Development of new BIM use cases dedicated to the construction phase of buildings, using IFC data coming from BIM models in order to optimize material deliveries on construction sites; Integration of product data from manufacturers (according to new ISO 23386 and 23387) using an ontology to ensure collaboration and efficient data exchanges; de facto, enrichment of as-built model; Implementation of Just-in-Time logistics through a web platform where construction companies and their subcontractors can customize kits and define where they will be delivered and installed, how it should be packaged and when it should be delivered; ·Better control of delivery conditions through the integration of sensors data on site; ·Customization of delivery means and constraints for each project based on user defined business rules ; ·Improved monitoring of the construction site thanks to parcel tracking that enables to locate the place where a material is stored or installed; ·Multi criteria evaluation of current delivery scenarios and alerts on unmanaged constraints; ·Proposition of optimized delivery scenarios calculated by a genetic algorithm. |
Process to produce lithium carbonate from spodumene ore concentrates. |
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Process to produce lithium carbonate or other lithium chemicals from spodumene ore concentrates. ⇒ Replaces sulfuric acid with ferrous sulfate which is abundant, lower cost, and easier to transport and handle. ⇒ Process is easier to operate, since in traditional processes with sulfuric acid the acid pulp is very complex to handle. ⇒ Does not generate liquid effluents. ⇒ Generates two by-products with market value: lithium carbonate and red hematite |
iGuess4SECAP - An Energy Transition Platform for Sustainable Energy and Climate Action Planning for Cities and Regions |
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The iGuess® platform framework has been developed since 12 years with different stakeholders at city and regional level and different applications in mind. The entire platform with all components is developed and owned by LIST. An enormous amount of knowledge in interoperable GIS based web platforms for a diversity of applications is contained at LIST level and can also be transferred. The increasing demand for sustainable energy solutions and the urgent need to combat climate change have made renewable energy a crucial aspect of urban development. Cities must transition to renewable energy sources and integrate them into their energy systems. However, the process of planning and implementing renewable energy projects in urban areas can be complex and challenging. It requires holistic and sustainable approaches which can only be delivered by in- depth/deep technologies, such as interoperable web- and cloud-based platforms, integrating a diversity of data and IoT sources, simulation and forecasting tools, as well as complex 3D-4D visualisation tools, in order to develop and implement decarbonisation strategies across the globe for cities, regions and nations. |
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