Avaliación da Calidade do Solo
Calidade do Solo
Lancaster University
Lancaster, Reino Unido
Publicacións en colaboración con investigadores/as de Lancaster University (10)
2025
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Design of conventional batch distillation of anaerobic digestate to isolate ammonium bicarbonate considering non-ideal mixture behavior
Biofuels, Bioproducts and Biorefining, Vol. 19, Núm. 4, pp. 1110-1123
2024
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Activity coefficients for ideal mixtures (Hexane/Heptane, Benzene/Toluene, and 1-Propanol/Isopropanol) and non-ideal mixtures (Ethanol/Water, Ammonia/Water, and Carbon Dioxide/Water) determined with Aspen Plus® v12.
Zenodo
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Classical Batch Distillation of Anaerobic Digestate to Isolate Ammonium Bicarbonate: Membrane Not Necessary!
Bioengineering, Vol. 11, Núm. 11
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Developing a novel technology for slurry management by project-based learning
Frontiers in Sustainable Food Systems, Vol. 8
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Integration of the Ash-Based Treatment of the Anerobic Digestate in a Wider Valorization Process by Aspen Plus® Simulation
Mendeley Data
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Isolation of ammonium bicarbonate by reactive distillation of food waste digestate liquor
Bioresource Technology, Vol. 399
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OPTIMIZATION OF CONVENTIONAL BATCH DISTILLATION OF ANAEROBIC DIGESTATE TO ISOLATE AMMONIUM BICARBONATE CONSIDERING THE WELL-KNOWN BEHAVIOR OF THE NON-IDEAL MIXTURE ETHANOL-WATER
European Biomass Conference and Exhibition Proceedings
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Production of ammonium bicarbonate from the condensate of the upgrading biogas-pipelines
Journal of Cleaner Production, Vol. 449
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Research data of developing a novel technology for slurry management by project-based learning
Zenodo
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Tunning of the variables (boil-up rate, heating power, reflux ratio, and separation efficiency) is exemplified for the classical non-ideal mixture of ethanol and water
Zenodo