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April 8, 20260 citationsOpen Access

Enhancing Biomass Conversion: Advanced Modeling and Process Optimization for Efficient Biochar and Heat Production

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ASAhmad Saylam

Key Points

  • The aim is to model and optimize the conversion of biomass into biochar, heat, and electricity.
  • Utilized an ideal stirred reactor model to simulate thermochemical processes.
  • Examined the effects of temperature, moisture content, and oxygen concentration.
  • Analyzed biochar yield and the production of gases like carbon monoxide and hydrogen.
  • Identified optimal temperature ranges for drying, pyrolysis, and combustion.
  • Found that process parameters significantly impact biochar yield.
  • Highlighted challenges associated with biomass conversion technologies.

Abstract

This work presents a comprehensive study on the modeling of drying, pyrolysis, and combustion of biomass for biochar, heat, and electricity production. Utilizing an ideal stirred reactor model, the study simulates the thermochemical processes involved in biomass conversion, focusing on a waste wood as primary feedstock. It examines the impacts of temperature, moisture content, and oxygen concentration on biochar yield and the production rates of key gases such as carbon monoxide, hydrogen, and methane. The study highlights the optimal temperature ranges for drying, pyrolysis, and combustion to maximize biochar yield and minimize undesirable byproducts like ash and PAHs. Chemical kinetics are based on the works of Ranzi et al. 19-21. Results underscore the critical role of process parameters in optimizing biochar production, offering insights into the challenges and solutions associated with biomass conversion technologies. arrowdownwardDownload PDF

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Ahmad Saylam (2024) studied this question.

synapsesocial.com/papers/69d5f13674eaea4b11a7ab9dhttps://doi.org/10.5281/zenodo.19438452
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