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June 4, 2026Sustainability0 citationsOpen Access

Production and Characterization of Pellets from Blends of Residual Biomass of Pinus Wood and Coffee Straw

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SWShoraia Germani WinterAZAntônio José Vinha ZanuncioRSRaquel Julia Cipriano dos Santos

Key Points

  • This work aims to produce and characterize pellets from blends of pine and coffee straw residues, assessing their properties and compliance with standards.
  • Produced pellets from nine blends using an Amandus Kahl pellet mill model 14-175.
  • Analyzed in terms of moisture, calorific value, bulk density, chloride content, and mechanical properties.
  • Applied Scott-knott test for statistical comparisons at 95% probability.
  • Best performing blends were 100% pine and 87.5% pine with 12.5% coffee straw, with higher calorific values of 20.65 MJ/kg.
  • Moisture content for best blends was 8.98% and 9.17%, with low ash content of 0.22% and 1%.
  • Mechanical durability limitations were noted with values of 96.74% and 97.12%.

Abstract

The world’s energy matrix faces challenges in replacing fossil fuels and reducing greenhouse gas emissions. Pellet production is effective for the correct disposal of agricultural waste through the production of biofuels. The objective of this work was to produce and characterize pellets from blends of pine and coffee straw residues, in addition to their compliance with ISO 17225-6/2021. The biomasses were subjected to analysis of dry and wet base moisture, bulk density, upper and lower calorific value (HCV and LCV dry), immediate, structural and elemental chemistry, chloride content, and thermogravimetric behavior. The pellets were produced in nine blends with the Amandus Kahl pellet mill, model 14-175, being submitted to analysis of productivity, moisture in dry and wet base, HCV and LCV dry, chloride, immediate chemistry, hardness, diameter and length, durability and percentage of fines, the analyses were compared by the Scott-knott test at the level of 95% probability. The blends that presented the best overall performance were 100% pine and a mixture of 87.5% pine and 12.5% coffee straws, especially for the higher calorific value (20.65 and 20.65 MJ/kg), moisture (8.98 and 9.17%), and ash (0.22 and 1%), but had limitations regarding mechanical durability (96.74 and 97.12%). The use of blends in pellet production is promising to promote the sustainable use of agricultural waste and the generation of clean energy.

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Cite This Study

Winter et al. (2026) studied this question.

synapsesocial.com/papers/6a211852d499ed480b170e86https://doi.org/10.3390/su18115586
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