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February 21, 2026Environments2 citationsOpen Access

Char Produced from Waste and Biomass Blended Pellets: Comprehensive Thermochemical Behavior Assessment

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SSSusana SantosMGMargarida GonçalvesPBPaulo Brito

Key Points

  • The aim is to assess char produced from refuse-derived fuel and biomass pellets for energy-density potential and operational challenges.
  • Chars produced at 400 °C for one hour in closed crucibles
  • Analyzed using calorimetry, infrared spectroscopy, thermogravimetry, inductively coupled plasma, and X-ray fluorescence
  • Evaluated mass yield, energy yield, and thermal stability
  • Char with 50% and 25% RDF ignited at approximately 150 °C and exhibited high flammability
  • Achieved combustion temperatures of 716–746 °C, indicating thermal stability
  • High heating values ranged from 18–19 MJ/kg on a dry basis
  • High acid–base indices with low slag viscosity suggest reduced reactor surface issues

Abstract

The growing demand for carbon-based energy materials requires sustainable alternatives to fossil fuels. This study explored the production and characterization of char obtained from refuse-derived fuel (RDF) and biomass blended pellets in varying proportions (0%, 15%, 25%, 50%, and 100% RDF). The objective was to evaluate their potential as high-energy-density solid fuels while addressing operational challenges related to ash behavior. Chars were produced at 400 °C for one hour in a muffle furnace in closed crucibles. A set of analytical techniques (calorimetry, infrared spectroscopy, thermogravimetry, inductively coupled plasma, and X-ray fluorescence) was employed to assess physicochemical properties. RDF content strongly affected mass yield, energy yield, and thermochemical behavior. Among the tested formulations, char with 50 and 25% of RDF (CRDF50: BW50 and CRDF25: BW75) ignited at lower temperatures (≈150 °C) and showed high flammability (C) values (1. 97–2. 03 × 10−5), indicating greater flammability. They also reached higher combustion temperatures (716–746 °C), suggesting improved thermal stability during the final combustion stage. Both chars presented increased high heating values (18–19 MJ/kg, dry basis) and a few surface functional groups. This supports a lower devolatilization rate, meaning that although ignition is easy, combustion remains stable and controllable. All chars showed very high acid–base indices, indicating a strong tendency for ash melting. However, low slag viscosity and alkalinity values suggest viscous, poorly mobile slag, reducing adhesion and buildup on reactor surfaces. This study combines thermogravimetric combustion analysis with ash chemistry–based slagging and fouling indices to provide an integrated assessment of the operational behavior of RDF–biomass-derived char fuels. The results highlight the technical feasibility of chars produced from RDF and biomass blended pellets, whose thermal properties make them promising candidates for use as solid fuels.

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Cite This Study

Santos et al. (2026) studied this question.

synapsesocial.com/papers/69994c01873532290d0201efhttps://doi.org/10.3390/environments13020119
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