Biocarbons (Biochars) carbonisation, graphitisation, multiscale characterisation and energy storage performances
ABG-132097 | Thesis topic | |
2025-05-20 | EU funding |

- Materials science
- Chemistry
- Energy
Topic description
The project aims at the synthesis of biocarbon-based composites for energy storage.
An ongoing study is focused on the selection of biomass feedstocks, their characterisation and on pyrolysis to produce biocarbon composites. As part of this ERC work and in parallel with other ongoing studies in our research group, this PhD work will be dedicated to the synthesis (standard and concentrated solar processes) of ordered biocarbon using carbonisation and graphitisation processes, and they application in energy storage. Multiscale structure (micro, nano and atomic) assessment will be performed using various standard chemical and physical techniques including particle size distribution and shape, elemental and chemical composition, specific surface area as well as thermochemical and thermomechanical parameters from thermogravimetric and differential scanning calorimetry (TGA-DSC), and thermomechanical analysis (TMA).
Particular attention will be paid to its multi-scale (micro, nano and atomic) chemical, mechanical and structural transformations. It is expected to probe the changes in biocarbon nanostructure, aromaticity and/or degree of aromatic condensation, crystalline graphitic domains and investigate how this evolution is impacted by the inclusion of inorganic elements. Raman spectroscopy, X-ray diffraction, transmission electron macroscopy, and X-Ray photon spectroscopy among other complementary techniques will be used to this end. The study should investigate the relation between carbon structure, thermomechanical stability, and conductivity of the biocarbon and the impact of these properties on storage performances. These properties and performances will be correlated with the feedstocks, production process and application in energy storage. A sustainability assessment approach will be developed for the biocarbon value chain.
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School of the ministry in charge of industry, IMT Mines Albi is a school of the Institut Mines-Télécom, 1st group of engineering and management schools of France. At the forefront of industrial and academic issues on the international scene, it acts as a territorial scientific and economic engine by combining its 4 missions - to train engineers by integrating the dynamics of sustainable development, scientific research, contributing to economic development and spreading the culture of science, technology and innovation - in a virtuous and innovative cycle.
Its positioning in terms of training and research places IMT Mines Albi as a reference school on three of the four themes of the IMT, namely responsible future industry, energy, circular economy and society and engineering, health and well-being.
IMT Mines Albi has adopted in 2023 and for a five-year period, a strategic plan divided into 7 major actions, thus responding to the strategic orientations of the IMT group to which it belongs.
The candidate will work at the RAPSODEE research laboratory at IMT Mines Albi in France to produce materials using conventional heating, and for their characterisation. Some of the experiments (concentrated solar graphitisation and energy storage) as well as advanced characterisation will be carried out in PROMES CNRS laboratory (Odeillo, France) and in partners laboratories in USA, Germany, or UK. It is expected that the PhD student visits some of those places to perform part of the PhD work.
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It is expected that the candidate holds a Master degree in chemical, or material engineering, or in material science, or solid-state physics with initial background on solid characterisation. Initial experience in some of the following techniques, XRD, XPS, TGA-DSC, N2 sorption, SEM-EDS, HR-TEM, Raman spectroscopy, synchrotron will be much appreciated.
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