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Updated: May 14, 2026

Fast Pyrolysis of Biomass Residues in a Twin-screw Mixing Reactor
Published on: September 9, 2016
Bio-based compounds from synergistic processing of bone waste via advanced ultrasound assisted-enzymatic pretreatment
Gabriela Ionescu1, Mircea Gabriel Macavei1, Mariana Pătraşcu1
1National University of Science and Technology Politehnica Bucharest, Faculty of Energy Engineering, 313 Splaiul Independentei st., 060042 Bucharest, Romania.
Abstract:
This study investigates the synergistic processing of chicken bone waste through a novel combination of advanced ultrasound-assisted enzymatic pretreatment and fast pyrolysis conditions (500-900 °C, ∼100 °C/min). The higher process temperature inhibits CO2, and promotes ≥ C2, CH4, CO and H2. The pyrolysis gas energetic potential reaches a maximum of 33 MJ/Nm3, thus can serve as biofuel. The bio-oil derived from the pyrolysis of feedstock, whether pretreated by classical or enzymatic methods, yields rich in N-heterocycles. At ≥ 700 °C, bio-oil contains more heterocyclic compounds and hydrocarbons. Pyrolysis of enzymatically pretreated feedstock results in higher concentrations of pyrrole and pyrrolo[1,2-a]pyrazine-1,4-dione, hexahydro, which are valuable for the synthesis of organonitrogen compounds relevant to the agriculture, pharmaceutical and advanced materials industries. The H/C < 0.7 and O/C < 0.28 ratios, together with the phosphorus content, indicated a stable high-quality biochar. The increase of process temperature decreases biochar yield, doubles ash content, promotes density and improves thermal stability. The total heat absorbed increases from 22 kJ (500 °C) to 39 kJ (900 °C), indicating a moderate energy demand for pyrolysis. This synergistic processing promotes sustainable poultry waste management and facilitates the circular utilisation of bio-based, compound-oriented products, for their potential use as renewable gases, green chemicals and functional biochar.
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