Book Chapter10.1016/b978-0-443-28824-1.50154-xLatent State Space Extension for interpretable hybrid mechanistic modelsJan 01, 2024Computer Aided Chemical EngineeringJudit Aizpuru + 3 more +3CiteListenSave
Book Chapter10.1016/b978-0-443-28824-1.50177-0Modeling the Market Fluctuations of Ammonia PriceJan 01, 2024Computer Aided Chemical EngineeringAndrea Isella + 1 more +1CiteListenSave
Book Chapter110.1016/b978-0-443-28824-1.50243-xOptimizing Circular Economy Pathways: MultiCriteria Decision-Making Tool for Chemical Recycling of Plastic WastesJan 01, 2024Computer Aided Chemical EngineeringVirgil Cabo + 3 more +3CiteListenSave
Book Chapter10.1016/b978-0-443-28824-1.50019-3Modeling Fed-batch Cultures of Yeast for the Production of Heterologous Proteins - an Industrial Experimental StudyJan 01, 2024Computer Aided Chemical EngineeringMicaela Benavides + 4 more +4CiteListenSave
Book Chapter10.1016/b978-0-443-28824-1.50540-8Multi-Parametric Programming for Design Space IdentificationJan 01, 2024Computer Aided Chemical EngineeringSimon Walsh + 4 more +4CiteListenSave
Book Chapter10.1016/b978-0-443-28824-1.50405-1Life Cycle Assessment (LCA) of Dimethyl Ether (DME) Production: Fossil Fuels vs. BiogasJan 01, 2024Computer Aided Chemical EngineeringMatteo Fedeli + 3 more +3This study conducts a comprehensive Life Cycle Assessment (LCA) to compare the environmental impacts of two alternative pathways for producing dimethyl ether (DME): one utilizing conventional fossil fuel-based processes and the other relying on biogas feedstocks . LCA is employed as a robust tool for evaluating the sustainability of these fuel production methods. The authors meticulously quantify resource inputs and outputs for both production routes in the inventory analysis phase. For conventional fossil fuel-based production, the value of the impact categories is retrieved from SimaPRO database. On the other hand, for biogas-based production, Aspen HYSYS is utilised to perform process simulations. The results of these are used as input for LCA analysis. Our findings reveal significant disparities between the two production pathways. Biogas-derived DME exhibit lower greenhouse gas emissions and reduced dependence on finite fossil resources. The biogas route also provides valuable co-benefits, such as organic waste valorization and potential improvements in soil quality through feedstock cultivation. However, it is essential to recognize that biogas-based production requires more land and water resources than fossil fuel-based. Therefore, trade-offs between reduced carbon emissions and increased resource use should be carefully considered, particularly in regions with limited land and water availability.Read moreCiteListenSave
Book Chapter10.1016/b978-0-443-28824-1.50431-2Onboard or Onsite Hydrogen Production: A Comparative InvestigationJan 01, 2024Computer Aided Chemical EngineeringBruna Gava Floriam + 2 more +2CiteListenSave
Book Chapter10.1016/b978-0-443-28824-1.50415-4Computer-aided optimization of cooling temperature profiles in slow freezing for human induced pluripotent stem cellsJan 01, 2024Computer Aided Chemical EngineeringYusuke Hayashi + 3 more +3CiteListenSave
Book Chapter10.1016/b978-0-443-28824-1.50543-3Application of Co-Simulation Techniques in Process Systems Engineering and Algorithmic ChallengesJan 01, 2024Computer Aided Chemical EngineeringAlexander Zinser + 1 more +1CiteListenSave
Book Chapter710.1016/b978-0-443-28824-1.50137-xEmbedding Physics into Neural ODEs to learn Kinetics from Integral ReactorsJan 01, 2024Computer Aided Chemical EngineeringTim Kircher + 2 more +2CiteListenSave