Journal article Open Access
Zoppi, Giulia; Pipitone, Giuseppe; Pirone, Raffaele; Bensaid, Samir
<?xml version='1.0' encoding='UTF-8'?> <record xmlns="http://www.loc.gov/MARC21/slim"> <leader>00000nam##2200000uu#4500</leader> <controlfield tag="005">20211014014832.0</controlfield> <controlfield tag="001">5565150</controlfield> <datafield tag="700" ind1=" " ind2=" "> <subfield code="u">DISAT, Politecnico di Torino</subfield> <subfield code="a">Pipitone, Giuseppe</subfield> </datafield> <datafield tag="700" ind1=" " ind2=" "> <subfield code="u">DISAT, Politecnico di Torino</subfield> <subfield code="a">Pirone, Raffaele</subfield> </datafield> <datafield tag="700" ind1=" " ind2=" "> <subfield code="u">DISAT, Politecnico di Torino</subfield> <subfield code="a">Bensaid, Samir</subfield> </datafield> <datafield tag="856" ind1="4" ind2=" "> <subfield code="s">2033792</subfield> <subfield code="z">md5:a76158206b064348a5af0e4983017e1d</subfield> <subfield code="u">https://zenodo.org/record/5565150/files/Review_in press.pdf</subfield> </datafield> <datafield tag="542" ind1=" " ind2=" "> <subfield code="l">open</subfield> </datafield> <datafield tag="260" ind1=" " ind2=" "> <subfield code="c">2021-06-08</subfield> </datafield> <datafield tag="909" ind1="C" ind2="O"> <subfield code="p">openaire</subfield> <subfield code="p">user-heattofuel</subfield> <subfield code="o">oai:zenodo.org:5565150</subfield> </datafield> <datafield tag="100" ind1=" " ind2=" "> <subfield code="u">DISAT, Politecnico di Torino</subfield> <subfield code="a">Zoppi, Giulia</subfield> </datafield> <datafield tag="245" ind1=" " ind2=" "> <subfield code="a">Aqueous phase reforming process for the valorization of wastewater streams: Application to different industrial scenarios</subfield> </datafield> <datafield tag="980" ind1=" " ind2=" "> <subfield code="a">user-heattofuel</subfield> </datafield> <datafield tag="536" ind1=" " ind2=" "> <subfield code="c">764675</subfield> <subfield code="a">Biorefinery combining HTL and FT to convert wet and solid organic, industrial wastes into 2nd generation biofuels with highest efficiency</subfield> </datafield> <datafield tag="540" ind1=" " ind2=" "> <subfield code="u">https://creativecommons.org/licenses/by/4.0/legalcode</subfield> <subfield code="a">Creative Commons Attribution 4.0 International</subfield> </datafield> <datafield tag="650" ind1="1" ind2="7"> <subfield code="a">cc-by</subfield> <subfield code="2">opendefinition.org</subfield> </datafield> <datafield tag="520" ind1=" " ind2=" "> <subfield code="a"><p>Wastewater is of general concern for environmental sustainability. At the industrial level, carbon-laden aqueous streams must be treated and should be valorized to reduce environmental and economic concerns. Lignocellulosic biomass processing (such as hydrolysis, pyrolysis, and hydrothermal liquefaction) results in secondary aqueous streams in which a high fraction of the initial carbon content of the biomass is virtually lost; food industry (like breweries and cheese factories) produces streams with a variety of organic load and salinity, which may complicate conventional valorization treatments; biodiesel production leads to glycerol excess in the market, which needs to be valorized. Among other alternatives, aqueous phase reforming (APR) has been proposed as a process driven at relatively mild conditions, able to convert oxygenated molecules into hydrogen. Despite its potential, APR has commonly been investigated with model compounds, and a systematic study on the possible fields of application of this technology is lacking. In the present review, the study of the available literature was focused on the valorization of complex feedstocks, such as real waste streams or synthetic mixtures, showing the outcome derived from laboratory-scale experiments. The results were critically discussed, pointing out the present limitations for the full development of this process and its application to the industrial scale. Despite the challenges of APR, its potential is noteworthy for the development of a circular low-waste economy.</p></subfield> </datafield> <datafield tag="024" ind1=" " ind2=" "> <subfield code="a">10.1016/j.cattod.2021.06.002</subfield> <subfield code="2">doi</subfield> </datafield> <datafield tag="980" ind1=" " ind2=" "> <subfield code="a">publication</subfield> <subfield code="b">article</subfield> </datafield> </record>
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