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Harnessing an invasive species’ waste for syngas production: Fast pyrolysis of rosehip seeds in a bubbling fluidized bed

Torres Sciancalepore, Rodrigo Agustin et al · Multidisciplinary Digital Publishing Institute · 2025

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This study examines the fast pyrolysis of rosehip seed waste (RSW) in a fluidized bed reactor, evaluating its potential for syngas production and effective waste valorization. The fluidization behavior of sand/RSW mixtures was characterized by determining the minimum fluidization velocity (Umf) from pressure drop measurements. Umf increased with RSW content, ranging from 0.227 to 0.257 m/s. Fluid-dynamic tests conducted in an acrylic prototype assessed bed expansion and mixing, showing stable fluidization at 10% RSW concentration without axial slugging. The bed expanded to 68% above the fixed-bed height, while bubble formation promoted uniform mixing and prevented solid segregation. Pyrolysis experiments were performed in a steel reactor using a nitrogen flow three times the Umf, an initial bed height of 2.5 cm, and a 10% RSW mixture. The reactor operated between 400 and 600 ◦C, and syngas composition was analyzed. At 600 ◦C, carbon monoxide and hydrogen yields reached 13.868 mmol/gRSW and 7.914 mmol/gRSW, respectively—values notably higher than those obtained under slow pyrolysis conditions. These findings demonstrate that high-efficiency fluidized bed technology provides a sustainable pathway to convert invasive biomass into clean syngas, integrating waste mitigation with renewable energy generation. Fil: Torres Sciancalepore, Rodrigo Agustin. Consejo Nacional de Investigaciones Cientificas y Tecnicas. Centro Cientifico Tecnologico Conicet - Patagonia Confluencia. Instituto de Investigacion y Desarrollo En Ingenieria de Procesos, Biotecnologia y Energias Alternativas. Grupo Vinculado Instituto de Ingenieria Quimica | Universidad Nacional del Comahue. Instituto de Investigacion y Desarrollo En Ingenieria de Procesos, Biotecnologia y Energias Alternativas. Grupo Vinculado Instituto de Ingenieria Quimica.; Argentina Fil: Zalazar García, Daniela Inés Yanina. Consejo Nacional de Investigaciones Cientificas y Tecnicas. Centro Cientifico Tecnologico Conicet - Patagonia Confluencia. Instituto de Investigacion y Desarrollo En Ingenieria de Procesos, Biotecnologia y Energias Alternativas. Grupo Vinculado Instituto de Ingenieria Quimica | Universidad Nacional del Comahue. Instituto de Investigacion y Desarrollo En Ingenieria de Procesos, Biotecnologia y Energias Alternativas. Grupo Vinculado Instituto de Ingenieria Quimica.; Argentina

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APA 7

Torres Sciancalepore, R. A. E. A. (2025). Harnessing an invasive species’ waste for syngas production: Fast pyrolysis of rosehip seeds in a bubbling fluidized bed. http://hdl.handle.net/11336/281331

MLA

Torres Sciancalepore, Rodrigo Agustin et al. "Harnessing an invasive species’ waste for syngas production: Fast pyrolysis of rosehip seeds in a bubbling fluidized bed." 2025. http://hdl.handle.net/11336/281331.

Chicago

Torres Sciancalepore, Rodrigo Agustin et al. 2025. "Harnessing an invasive species’ waste for syngas production: Fast pyrolysis of rosehip seeds in a bubbling fluidized bed.". http://hdl.handle.net/11336/281331.

Harvard

Torres Sciancalepore, R. A. E. A. 2025, Harnessing an invasive species’ waste for syngas production: Fast pyrolysis of rosehip seeds in a bubbling fluidized bed, Multidisciplinary Digital Publishing Institute, available at: http://hdl.handle.net/11336/281331 [Accessed 8 Aug. 2026].

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Title
Harnessing an invasive species’ waste for syngas production: Fast pyrolysis of rosehip seeds in a bubbling fluidized bed
Author / contributors
Torres Sciancalepore, Rodrigo Agustin et al
Publisher
Multidisciplinary Digital Publishing Institute
Publication year
2025
ISSN
2305-7084
ISSN
2305-7084
Language
English

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