Torrefaction of Agricultural Residues: Effect of Temperature and Residence Time on the Process Products Properties

Author:

Jagodzińska Katarzyna1,Czerep Michał2,Kudlek Edyta3,Wnukowski Mateusz2,Pronobis Marek4,Yang Weihong5

Affiliation:

1. Faculty of Energy and Environmental Engineering, Silesian University of Technology, Konarskiego 20, Gliwice K113, Poland

2. Department of Boilers, Combustion and Energy Processes, Wroclaw University of Science and Technology, Wybrzeże St. Wyspiańskiego 27, Wrocław 50-370, Poland

3. Faculty of Energy and Environmental Engineering, Silesian University of Technology, Konarskiego 18, Gliwice 44-100, Poland

4. Faculty of Energy and Environmental Engineering, Silesian University of Technology, Konarskiego 20, Gliwice 44-100, Poland

5. Department of Material Sciences and Engineering, KTH Royal Institute of Technology, Brinellvägen 23, Stockholm 100 44, Sweden

Abstract

Abstract To date, few studies on the potential utilization of agricultural residue torrefaction products have been performed. Thus, torrefaction product characterization aimed at its potential utilization was performed. Wheat–barley straw pellets and wheat–rye chaff were used in the study. The impact of the torrefaction temperature (280–320 °C) on polycyclic aromatic hydrocarbons (PAHs) content in the biochar and noncondensable gas (noncondensables) composition was investigated. The impact of the torrefaction time (30–75 min) on the composition of the condensable volatiles (condensables) and their toxicity were also studied. The torrefaction process was performed in a batch-scale reactor. The PAH contents were measured using high-performance liquid chromatography (HPLC), and the noncondensables composition was measured online using a gas analyzer and then gas chromatograph with flame ionization detector (GC-FID). The condensables composition and main compound quantification were determined and quantified using gas chromatography–mass spectrometry (GC/MS). Three toxicity tests, for saltwater bacteria (Microtox® bioassay), freshwater crustaceans (Daphtoxkit F magna®), and vascular plants (Lemna sp. growth inhibition test), were performed for the condensables. The PAHs content in the biochar, regardless of the torrefaction temperature, allows them to be used in agriculture. The produced torgas shall be co-combusted with full-caloric fuel because of its low calorific value. Toxic compounds (furans and phenols) were identified in the condensable samples, and regardless of the processing time, the condensables were classified as highly toxic. Therefore, they can be used either as pesticides or as an anaerobic digestion substrate after their detoxification.

Publisher

ASME International

Subject

Geochemistry and Petrology,Mechanical Engineering,Energy Engineering and Power Technology,Fuel Technology,Renewable Energy, Sustainability and the Environment

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