Szczegóły publikacji

Opis bibliograficzny

Effect of steam-enriched $CO_2$ atmosphere on the properties of biochar derived from food waste gasification / Aneta MAGDZIARZ, Łukasz KORZENIOWSKI, Marek PLATA, Małgorzata CIERPIŃSKA, Agata MLONKA-MĘDRALA, Izabela KALEMBA-REC, Wojciech JERZAK // Renewable Energy ; ISSN  0960-1481 . — 2026 — vol. 275 art. no. 126291, s. 1–11. — Bibliogr. s. 10–11, Abstr. — Publikacja dostępna online od: 2026-08-14

Autorzy (7)

Słowa kluczowe

lignocellulosic residuessurface propertiessteam gasificationcarbon materialsagro industrial residues

Dane bibliometryczne

ID BaDAP169706
Data dodania do BaDAP2026-10-01
Tekst źródłowyURL
DOI10.1016/j.renene.2026.126291
Rok publikacji2026
Typ publikacjiartykuł w czasopiśmie
Otwarty dostęptak
Creative Commons
Czasopismo/seriaRenewable Energy

Abstract

Agro-industrial residues (food waste) represent a significant source of feedstocks that possess, both material and energy potentials. This study examined the valorisation of sunflower husks, buckwheat husks, cherry stones, and tomato waste through gasification under CO2 and steam-enriched CO2 atmospheres at 900 °C. The biochemical composition of these feedstocks was characterised by 28–78 wt% lignocellulosic fractions content and from 0.6 to 17 wt% of lipids. Solid residue (biochar) yields ranged from 9.1% (sunflower husks, CO2 + H2O) to 28.1% (tomato waste, CO2), while carbon content reached up to 88 wt% for cherry stone. The introduction of steam reduced the yield by 35%, but significantly increased the specific surface area from 410 to 881 m2/g and from 224 to 823 m2/g for buckwheat husks and sunflower husks, respectively. Lignin-rich feedstocks produced more aromatic and thermally stable structures (R50 > 0.45). FT-IR spectra confirmed the loss of hydroxyl and carbonyl groups and formation of condensed aromatic structures. These findings show that biochemical composition of food waste significantly influences carbonisation behaviour and surface functionality. Furthermore, they provide a framework for optimizing gasification conditions to produce biochars that can be used as bio-based materials in catalysis, adsorption, and carbon sequestration.

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