2017
DOI: 10.1021/acs.energyfuels.7b02434
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Techno-economic Analysis of a Bioethanol to Hydrogen Centralized Plant

Abstract: The possibility to obtain chemicals and/or fuels from renewable sources is an attractive option in order to develop an integrated biorefinery concept. Bioethanol can be a suitable starting material for the production of H 2 as fuel or syngas. Hydrogen is considered as a future energy vector that can meet the ever growing world energy demand in a clean and sustainable way. Moreover, it can be used as a green chemical for several other processes. In this work, the centralized production of pure hydrogen from bio… Show more

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Cited by 21 publications
(18 citation statements)
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“…For example, new synthesized materials (that were classified in the chemicals section) may have biological applications or act as a catalyst for energy production [ 83 ]. Indeed, the bio-refinery approach was introduced to solve the future energy and environmental needs, but renewable feedstocks are currently exploited both for fuels and chemicals production [ 84 ]. Then, it is clear that there is a significant interconnection among the materials categories as well as there is an interdependence among the three sustainability pillars and the development targets.…”
Section: Sustainable Materials Developed By the Instm Consortiummentioning
confidence: 99%
“…For example, new synthesized materials (that were classified in the chemicals section) may have biological applications or act as a catalyst for energy production [ 83 ]. Indeed, the bio-refinery approach was introduced to solve the future energy and environmental needs, but renewable feedstocks are currently exploited both for fuels and chemicals production [ 84 ]. Then, it is clear that there is a significant interconnection among the materials categories as well as there is an interdependence among the three sustainability pillars and the development targets.…”
Section: Sustainable Materials Developed By the Instm Consortiummentioning
confidence: 99%
“…A price of 3.23 Euro/kg has been estimated for small-scale production [51]. Solar photovoltaic electrolysis (5.28-23.27 $/kg), wind-driven electrolysis (5.89-6.03 $/kg) or nuclear electrolysis (4.17-7.00 $/kg) are considered other viable options [52][53][54]. Considering one month's production with either CuO or Pt promoted catalysts, one order of magnitude increase of productivity may be sufficient to make this option economically feasible.…”
Section: Basic Cost Assessmentmentioning
confidence: 99%
“…In order to carry out the comparative analysis, life cycle inventories were modified. In relation to the type and quantity of reaction catalyst, the WGS data were obtained from Compagnoni et al (2017). All the necessary data to measure the inputs and outputs in SS3.…”
Section: Comparative Analysismentioning
confidence: 99%