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Email

johannes.fehrmann@unimelb.edu.au

Credentials


Position
ACIAR Research Fellow, Lignocellulosic Engineering & Wood Science
School of Agriculture, Food and Ecosystem Sciences
Education
PhD
University of Melbourne
Bachelors Degree
The University of Goettingen
ORCID

0000-0002-6413-9824

Dr Johannes Fehrmann

ACIAR Research Fellow, Lignocellulosic Engineering & Wood Science
School of Agriculture, Food and Ecosystem Sciences

19 Scholarly works
2 Projects

HIGHLIGHTS

  • 2026

    Journal article

    Effect of genotype on selected properties of young plantation-grown Eucalyptus pellita F. Muell. and its hybrids for structural applications
    DOI: 10.1007/s00226-026-01785-4
  • 2026

    Journal article

    Hybrid effects on processing recovery, wood quality, and structural performance of engineered Eucalyptus pellita products
    DOI: 10.1007/s00107-025-02376-z
  • 2025

    Media

    Rethinking engineered panels: Harnessing plant-based residues for next-generation sustainable materials. [Part 2]
  • 2025

    Report

    Evaluation of commercial opportunities for LVL from underutilised small diameter resource in Gippsland - Final report – Accelerated Weathering Trial
  • 2025

    Journal article

    Effect of a thermo-mechanical densification process on selected properties of densified wood of Tasmanian oak and Eucalyptus nitens
    DOI: 10.1007/s00107-025-02289-x
  • 2023

    Research grants (other domestic)

    Healing Australian Carbon Wounds Using Hemp Plantation and Construction
  • 2023

    Research grants (other domestic)

    Healing Australian Carbon Wounds Using Hemp Plantation and Construction
Johannes Fehrmann

RECENT SCHOLARLY WORKS

  • 2025

    Media

    Rethinking engineered panels: Harnessing plant-based residues for next-generation sustainable materials. [Part 1]
  • 2024

    Journal article

    Effects of mat composition and pressing time on citric acid-bonded ultra-low-density hemp hurd particleboard
    DOI: 10.1016/j.indcrop.2024.118070
  • 2024

    Journal article

    Effect of Processing and Cultivar on Thermo-Chemical Properties of Australian- Grown Hemp Hurd (Cannabis sativa L.)
    DOI: 10.32604/jrm.2024.053741
  • 2023

    Thesis / Dissertation

    Evaluation of Australian industrial hemp hurd (Cannabis sativa L.) as substitute lignocellulosic raw material for ultra-low-density particulate composites
  • 2023

    Journal article

    Influence of particle granulometry and panel composition on the physico-mechanical properties of ultra-low-density hemp hurd particleboard
    DOI: 10.1002/pc.27631

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