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Invited; ULSI and TFT technologies joint forces to meet the future challenges of a pervasive digital society
The worldwide development of communication and data exchange systems, as well as research on environmental protection, have strongly encouraged the development of digital technology. This technology has been growing exponentially since 2005 and its evolution would rather go towards an acceleration of this growth due to the emergence of cryptocurrencies, such as blockchains (Bitcoin, Litecoin, or Ethereum), the 5G or artificial intelligence. The transparency of the operation of these tools on the user\u27s side makes us forget that the associated energy consumption is also growing exponentially and that we could reach a global dead end in less than 10 years, with the electrical consumption of digital technology exceeding the current world electrical production.
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Thermodynamic-based Solvent Selection for the Separation of Lignin- derived Molecules
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A novel free-fall reactor for (catalytic) pyrolysis of biomass and plastics
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Validating the applicability of vapor-liquid phase equilibria models for fast pyrolysis bio-oils through Advanced Distillation Curves
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Isoconversional and Distributed Activation Energy Models for the Kinetic Study of Biomass Fast Devolatilization Based on MS Data
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Autothermal slow pyrolysis of poplar wood chips in an auger reactor
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Pyrolysis atmosphere effect on biochar properties and PTEs behaviour
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Advancements on process development and transfer for Integrated Continuous Biomanufacturing
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Development and scale-up of perfusion cell culture process for higer productivity
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