Annuaire des chercheurs et enseignants-chercheurs de Centrale Lille

Johan Sarazin

Research Scientist

UMET

E-mail : johan.sarazin@centralelille.fr

Téléphone : +33374951313

Bureau : C7a-012

Présentation

Johan Sarazin is a Research Scientist at Centrale Lille Institut and a researcher within the Materials and Transformations Unit (UMET – CNRS UMR 8207), in the Polymer Systems Engineering (ISP) team and the R2Fire group. His research focuses on the fire behaviour of materials, with the aim of understanding the physical and physicochemical mechanisms governing their response when exposed to thermal stresses and fire conditions.

His scientific and professional career is characterised by an unconventional trajectory, progressively built through research and experimental practice. After an initial professional experience as a chemistry and microbiology technician in environmental analysis, he pursued an engineering degree in industrial chemistry at CNAM alongside his professional activity. He subsequently joined UMET, within the ISP/R2Fire team, first as a research engineer and then as a research scientist. He notably contributed to the research carried out within the FireBar ERC project (2015–2020). He later joined Centrale Lille Institut as a Research Scientist and obtained his PhD through the French Validation des Acquis de l’Expérience (VAE) process, with research focused on the fire behaviour of materials, the design of experimental devices, and the development of innovative experimental protocols.

His research activities lie at the interface between fire science, materials science, and experimental engineering. They combine the thermophysical characterisation of materials with the study of ignition, thermal degradation, pyrolysis and combustion phenomena, as well as the analysis of the mechanisms governing their fire behaviour. An important aspect of his work is the design and development of original experimental devices. When existing methods are not sufficient to address a specific scientific question, he designs and develops dedicated test benches and associated instrumentation, from computer-aided design (CAD) to sensor integration, data acquisition and experimental validation.

This approach makes research engineering and scientific instrumentation a central component of his research activities. He develops experimental systems to investigate the behaviour of materials under controlled thermal and environmental conditions, and contributes to the development of experimental methodologies required to study new fire scenarios. This approach aims not only to characterise material performance, but above all to link experimental observations to the underlying physical and chemical mechanisms.

He is also strongly involved in the management and development of experimental facilities at UMET. He contributes to the management of the Fire Resist platform, dedicated to fire-behaviour characterisation, while also overseeing the management and development of other scientific equipment and experimental design facilities outside this platform. His responsibilities include equipment acquisition, installation, commissioning, maintenance, qualification, instrumentation and upgrades, as well as user training.

His research is conducted through both academic projects and numerous industrial collaborations with partners from sectors including energy, aeronautics and aerospace, space, construction, paints and coatings, chemistry, and polymeric materials. These collaborations range from characterisation and testing services to more complex activities aimed at developing materials or systems with improved fire performance, as well as studies addressing evolving regulatory requirements and the substitution of specific substances.

An increasing part of his research focuses on emerging fire scenarios and extreme environments, particularly those associated with hydrogen, batteries and energy-storage systems, as well as space applications. These emerging challenges raise scientific questions that conventional test methods cannot always address directly and therefore require the development of new experimental approaches. This research direction is further developed within the FireSpace ERC Synergy Grant (2026–2032), which investigates interactions between fire, materials and the environment under the specific conditions encountered in space applications.

Alongside his research activities, Johan Sarazin is involved in supervision and the transfer of experimental expertise, working with technicians, assistant engineers, students from undergraduate to Master’s level, as well as PhD students and postdoctoral researchers. He also teaches in the third year of the Bachelor of Technology in Chemistry (BUT3), including courses addressing water, its analysis and the challenges associated with this essential resource, as well as the physics and chemistry of fire applied to materials.

Beyond his research and experimental responsibilities, Johan Sarazin is also involved in standardisation and laboratory safety. He participates in the AFNOR CP92 committee, contributing to discussions and developments related to fire-testing standards. He also serves as a laboratory safety officer (Assistant de Prévention), contributing to the implementation of safety procedures, risk prevention and the safe operation of experimental activities and facilities.

Throughout this career, his activities lie at the intersection of materials science, fire science and research engineering. His approach combines mechanistic understanding, design, instrumentation and experimentation, with the objective of developing the scientific tools required to investigate material behaviour under both conventional conditions and emerging fire scenarios and extreme environments. This combination of scientific questions, design, instrumentation and experimentation is a defining feature of his research activities.

 

Mots-clés

Fire behaviour of materials • Fire retardancy • Experimental test benches • Scientific instrumentation • Experimental engineering • Thermophysical characterisation

Publications

Extreme hydrogen fire exposure: a new instrumented bench and the thermal limits of carbon/epoxy composites

International Journal of Hydrogen Energy, 2026, 266, pp.156915. ⟨10.1016/j.ijhydene.2026.156915⟩

Johan Sarazin,Serge Bourbigot

Lien : https://hal.science/hal-05754172v1

Flexural Performance of Carbon Fiber Reinforced Polyether Ether Ketone Exposed to a High Heat Flux Hydrogen Flame

Fire Safety Journal, 2026, pp.104757. ⟨10.1016/j.firesaf.2026.104757⟩

G. de Knegt,J. Vacandare,P. Krauskopf,N. Delpouve,T. Davin,F. Barbe,J. Sarazin,S. Bourbigot,B. Vieille

Lien : https://hal.science/hal-05571552v1

Fire retarded three-dimensional material for railway applications

Journal of Fire Sciences, 2025, 43 (5-6), pp.308-329. ⟨10.1177/07349041251365543⟩

Laura Geoffroy,Johan Sarazin,Nicolas Gay,Serge Bourbigot

Lien : https://lilloa.hal.science/hal-05471930v1

Influence of a hydrogen/oxygen flame on the fire-behaviour and the tensile properties of hybrid Carbon Glass fibers reinforced PEEK composite laminates

International Journal of Hydrogen Energy, 2024, 88, pp.1226-1236. ⟨10.1016/j.ijhydene.2024.09.288⟩

B. Vieille,T. Davin,Fabrice Barbe,J. Sarazin,S. Bourbigot

Lien : https://hal.science/hal-04888383v1

One-dimensional transient pyrolysis model for intumescent fire retardant polymers use in Electric vehicles packs applications: validation with fire-retarded polycarbonate

European Meeting on Fire Retardant Polymeric Materials (FRPM), Jun 2023, Dübendorf, Switzerland

Kossigan Dedey,Han Goosen,Johan Sarazin,Gaelle Fontaine,Serge Bourbigot

Lien : https://lilloa.hal.science/hal-04453828v1

Fire resistance of Na/K based geopolymer containing oil

European Meeting on Fire Retardant Polymeric Materials (FRPM), Jun 2023, Dübendorf, Switzerland

Qi Yang,Serge Bourbigot,Johan Sarazin,Catherine Davy,Gaelle Fontaine

Lien : https://lilloa.hal.science/hal-04453860v1

Photogrammetry for making real-time measurements of the deformation of fire retarded material subjected to an external heat flux

14th International Symposium on Fire Safety Science, Oct 2023, Tsukuba, Japan. pp.103894, ⟨10.1016/j.firesaf.2023.103894⟩

Serge Bourbigot,Aditya Ramgobin,Johan Sarazin,Manon Fleurotte,Abdenour Amokrane,Olivier Authier,Gerald Debenest,Gaelle Fontaine

Lien : https://lilloa.hal.science/hal-04227898v1

A pyrolysis model for the thermal decomposition of low-density polyethylene blended with ammonium polyphosphate and pentaerythritol

Fire Safety Journal, 2023, 139, pp.103813. ⟨10.1016/j.firesaf.2023.103813⟩

Alain Coimbra,Johan Sarazin,Serge Bourbigot,Guillaume Legros,Jean-Louis Consalvi

Lien : https://cnrs.hal.science/hal-04157226v1

Enhanced thermal stability of biobased crosslinked poly (isobornylacrylate-co-2-ethylhexylacrylate) copolymers

Journal of Polymer Research, 2022, 29 (7), pp.279. ⟨10.1007/s10965-022-03139-7⟩

Dounya Merah,Lamia Bedjaoui-Alachaher,Nouh Zeggai,Zohra Bouberka,Johan Sarazin,Donna Boutalbi,Ana Barrera,Hana Boughrara,Frédéric Dubois,Frédéric Cazaux,Philippe Supiot,Ulrich Maschke

Lien : https://ulco.hal.science/hal-04457008v1

A semi-global reaction mechanism for the thermal decomposition of low-density polyethylene blended with ammonium polyphosphate and pentaerythritol

Fire Safety Journal, 2022, 133, pp.103649. ⟨10.1016/j.firesaf.2022.103649⟩

Alain Coimbra,Johan Sarazin,Serge Bourbigot,Guillaume Legros,Jean-Louis Consalvi

Lien : https://hal.science/hal-03821917v1

Benefit of 3D printing on the flame resistance of geopolymer coatings for the fire protection of steel Civil Engineering structures

76th RILEM Annual Week and International Conference on Regeneration and Conservation of Structures (ICRCS 2022), Sep 2022, Kyoto, Japan

Zeineb Sdiri,Jordan Bassetti,Charles Thery,Johan Sarazin,Serge Bourbigot,D. Lambertin,Gaelle Fontaine,Catherine Davy

Lien : https://lilloa.hal.science/hal-04453853v1

Jetfire lab: Jetfire at reduced scale

Journal of Fire Sciences, 2021, Journal of Fire Sciences, 39 (6), pp.455-476. ⟨10.1177/07349041211037192⟩

Johan Sarazin,Elsa Franchini,Virginie Dréan,Roman Chiva,Serge Bourbigot

Lien : https://lilloa.hal.science/hal-03352830v1

Foamed geopolymers for fire protection: Burn‐through testing and modeling

FIRE AND MATERIALS, 2021, FIRE AND MATERIALS, ⟨10.1002/fam.3048⟩

Serge Bourbigot,Johan Sarazin,Catherine A. Davy,Gaelle Fontaine

Lien : https://lilloa.hal.science/hal-03593576v1

Présentation d'un banc optique de mesures d'émissivité

51èmes journées de calorimétrie et d'analyse thermique, Jun 2021, Webinaire, France

Tsilla Bensabath,Johan Sarazin,Polireddy Ramakrishnareddy Thirumuru,Anne-Lise Davesne,Serge Bourbigot

Lien : https://lilloa.hal.science/hal-04443224v1

Incorporation of organic liquids in cement-based materials – novel applications for waste mineral and sunflower oils

4th International Conference on Bio-Based Building Materials, Jun 2021, Barcelone, Spain

Catherine Davy,Johan Sarazin,Benjamin Dewailly,Gaelle Fontaine,Serge Bourbigot,David Lambertin

Lien : https://lilloa.hal.science/hal-04453857v1

IPBES-IPCC co-sponsored workshop report on biodiversity and climate change

IPBES. 2021

Hans-Otto Pörtner,Robert Scholes,John Agard,Emma Archer,Xuemei Bai,David Barnes,Michael Burrows,Lena Chan,Sarah Diamond,Camila Donatti,Carlos Duarte,Nico Eisenhauer,Wendy Foden,Maria Gasalla,Collins Handa,Thomas Hickler,Ove Hoegh-Guldberg,Kazuhito Ichii,Ute Jacob,Gregory Insarov,Wolfgang Kiessling,Paul Leadley,Rik Leemans,Lisa Levin,Michelle Lim,Shobha Maharaj,Shunsuke Managi,Pablo Marquet,Pamela Mcelwee,Guy Midgley,Thierry Oberdorff,David Obura,Balgis Osman Elasha,Ram Pandit,Unai Pascual,Aliny Pires,Alexander Popp,Victoria Reyes-García,Mahesh Sankaran,Josef Settele,Yunne-Jai Shin,Dejene Sintayehu,Peter Smith,Nadja Steiner,Bernardo Strassburg,Raman Sukumar,Christopher Trisos,Adalberto Luis Val,Jianguo Wu,Edvin Aldrian,Camille Parmesan,Ramon Pichs-Madruga,Alex Rogers,Sandra Díaz,Markus Fischer,Shizuka Hashimoto,Sandra Lavorel,Ning Wu,Hien Ngo

Lien : https://hal.science/hal-04526826v1

Anisotropy of expandable graphite to explain its behavior as a flame-retardant

Journal of Fire Sciences, 2021, Journal of Fire Sciences, 39 (2), pp.109-118. ⟨10.1177/0734904120969639⟩

Tsilla Bensabath,Johan Sarazin,Serge Bourbigot

Lien : https://lilloa.hal.science/hal-03592692v1

Geopolymer foams for fire protection

European Meeting on Fire Retardant Polymeric Materials, Aug 2021, Budapest, Hungary

Gaelle Fontaine,Catherine Davy,Johan Sarazin,Jerome Hosdez,Grégory Tricot,D. Lambertin,Serge Bourbigot

Lien : https://lilloa.hal.science/hal-04453815v1

Flame resistance of geopolymer foam coatings for the fire protection of steel

Composites Part B: Engineering, 2021, Composites Part B: Engineering, 222, pp.109045. ⟨10.1016/j.compositesb.2021.109045⟩

Johan Sarazin,Catherine Davy,Serge Bourbigot,Grégory Tricot,Jérôme Hosdez,David Lambertin,Gaelle Fontaine

Lien : https://lilloa.hal.science/hal-03272136v1

DOWNSIZING FIRE: NOVEL METHODS FOR INVESTIGATING FIRE BEHAVIOR OF MATERIALS

6th International Symposium on Flame-Retardant Materials & Technologies (ISFRMT), Oct 2020, Qingdao, China

Tsilla Bensabath,Serge Bourbigot,Johan Sarazin,Pierre Bachelet,T Bensabath

Lien : https://lilloa.hal.science/hal-02962786v2

Intumescent polypropylene in extreme fire conditions

Fire Safety Journal, 2020, 120, pp.103082. ⟨10.1016/j.firesaf.2020.103082⟩

Serge Bourbigot,Johan Sarazin,Tsilla Bensabath

Lien : https://lilloa.hal.science/hal-02926318v2

Low-Emissivity Metal/Dielectric Coatings as Radiative Barriers for the Fire Protection of Raw and Formulated Polymers

ACS Applied Polymer Materials, 2020, ACS Applied Polymer Materials, 2 (7), pp.2880-2889. ⟨10.1021/acsapm.0c00399⟩

Anne-Lise Davesne,Tsilla Bensabath,Johan Sarazin,Séverine Bellayer,Fabrice Parent,Fabienne Samyn,Maude Jimenez,Frédéric Sanchette

Lien : https://lilloa.hal.science/hal-03605313v1

Formulation of eco-friendly sol–gel coatings to flame-retard flexible polyurethane foam

Green materials, 2020, Green materials, pp.1-11. ⟨10.1680/jgrma.19.00059⟩

Séverine Bellayer,Maude Jimenez,Sophie Barrau,Adeline Marin,Johan Sarazin,Serge Bourbigot

Lien : https://lilloa.hal.science/hal-02927066v1

Intumescent polypropylene: Interactions between physical and chemical expansion

15th International Conference and Exhibition on Fire Science and Engineering, Jul 2019, Egham, United Kingdom

Tsilla Bensabath,Johan Sarazin,Maude Jimenez,Fabienne Samyn,Serge Bourbigot

Lien : https://lilloa.hal.science/hal-02291136v1

INTUMESCENT POLYOLEFINS: SYNERGY AND MECHANISTIC ASPECTS

Flame 2019, May 2019, San Antonio, United States

Serge Bourbigot,Johan Sarazin,Tsilla Bensabath,Fabienne Samyn,Maude Jimenez

Lien : https://lilloa.hal.science/hal-02277160v1

Intumescent polypropylene: Reaction to fire and mechanistic aspects

Fire Safety Journal, 2019, 105, pp.261-269. ⟨10.1016/j.firesaf.2019.03.007⟩

Serge Bourbigot,Johan Sarazin,Tsilla Bensabath,Fabienne Samyn,Maude Jimenez

Lien : https://lilloa.hal.science/hal-03379769v1

INTUMESCENT POLYOLEFINS: A JOURNEY FROM FIRE BEHAVIOR TO MECHANISTIC ASPECTS

AMI Conference « Fire Resistance in Plastics », Apr 2019, Pittsburgh, PA, United States

Serge Bourbigot,Johan Sarazin,Tsilla Bensabath,Fabienne Samyn,Maude Jimenez

Lien : https://lilloa.hal.science/hal-02277149v1

NOVEL METHODS FOR CHARACTERIZING INTUMESCENT POLYMERIC MATERIALS UPON BURNING

7th International Seminar on Modern Polymeric Materials for Environmental Applications (MPM), May 2019, Cracovie, Poland

Serge Bourbigot,Johan Sarazin,Gizem Okyay,Pauline Tranchard,Fabienne Samyn,Maude Jimenez

Lien : https://lilloa.hal.science/hal-02277153v1

Intumescent ethylene-vinyl acetate copolymer: Reaction to fire and mechanistic aspects

Polymer Degradation and Stability, 2019, Polymer Degradation and Stability, pp.235-244. ⟨10.1016/j.polymdegradstab.2019.01.029⟩

Serge Bourbigot,Johan Sarazin,Fabienne Samyn,Maude Jimenez

Lien : https://lilloa.hal.science/hal-02075670v1

Intumescent polypropylene: Interactions between physical and chemical expansion

Fire and Materials, 2019, Fire and Materials, ⟨10.1002/fam.2790⟩

Tsilla Bensabath,Johan Sarazin,Maude Jimenez,Fabienne Samyn,Serge Bourbigot

Lien : https://lilloa.hal.science/hal-02414122v1

2019 FIRE RETARDANCY ODYSSEY: A JOURNEY THROUGH THE MECHANISMS

3rd Asia-Oceania Symposium on Fire Safety Materials Science and Engineering - AOFSM’3, Oct 2019, Villeneuve d Ascq, France

Serge Bourbigot,Gizem Okyay,Johan Sarazin,Tsilla Bensabath

Lien : https://lilloa.hal.science/hal-02277163v1

NEW CONCEPTS FOR INTUMESCENT POLYOLEFINS

Flame 2018, May 2018, Stamford, CT, United States

Serge Bourbigot,Johan Sarazin,Johan Sarazin,Fabienne Samyn,Maude Jimenez

Lien : https://lilloa.hal.science/hal-04354331v1

Fire Bench for Extreme fire scenario from Experimental to Simulation

ESIA (École des Sciences des Incendies et Applications), May 2018, Obernai, France

Roland Adanmenou,Fabienne Samyn,Maude Jimenez,Sophie Duquesne,Johan Sarazin,Serge Bourbigot

Lien : https://lilloa.hal.science/hal-02508830v1

GOING INTO THE DEEP INTUMESCENCE: A JOURNEY TO THE MECHANISTIC ASPECTS

5th International Symposium on Flame-Retardant Materials & Technologies (ISFRMT2018), Jun 2018, Hangzhou, China

Serge Bourbigot,Johan Sarazin,Fabienne Samyn,Maude Jimenez

Lien : https://lilloa.hal.science/hal-04354330v1

Flame retardancy of microcellular poly(lactic acid) foams prepared by supercritical CO 2 -assisted extrusion

Polymer Degradation and Stability, 2018, Polymer Degradation and Stability, 153, pp.100-108. ⟨10.1016/j.polymdegradstab.2018.04.021⟩

Dániel Vadas,Tamás Igricz,Johan Sarazin,Serge Bourbigot,György Marosi,Katalin Bocz

Lien : https://lilloa.hal.science/hal-04287207v1

Maze running into intumescence: mechanistic aspects in polypropylene

3rd European Symposium on Fire Safety Science (ESFSS 2018), Sep 2018, Nancy, France. pp.032001, ⟨10.1088/1742-6596/1107/3/032001⟩

Serge Bourbigot,Johan Sarazin,Fabienne Samyn,Maude Jimenez

Lien : https://lilloa.hal.science/hal-02137698v1

Fire retardant sol-gel coatings for flexible polyurethane foams

AMI Fire resistance in plastics, Dec 2018, Cologne, Germany

Séverine Bellayer,Maude Jimenez,B. Prieur,Benjamin Dewailly,Aditya Ramgobin,Johan Sarazin,Bertrand Revel,Grégory Tricot

Lien : https://lilloa.hal.science/hal-04289115v1

PHYSICS AND CHEMISTRY OF INTUMESCENCE: APPLICATION TO THE DEGRADATION OF POLYOLEFINS

10th International Conference of Modification, Degradation and Stabilization of Polymers (MoDeSt2018), Sep 2018, Tokyo, Japan

Serge Bourbigot,Johan Sarazin,Fabienne Samyn,Maude Jimenez

Lien : https://lilloa.hal.science/hal-04290899v1

Fire Retardant sol-gel coatings for flexible polyurethane foams

Ecofram 2018, Mar 2018, Metz, France

Séverine Bellayer,Maude Jimenez,Sophie Barrau,Pierre Bachelet,Benjamin Dewailly,Aditya Ramgobin,Johan Sarazin,Serge Bourbigot

Lien : https://lilloa.hal.science/hal-04289344v1

Metal-Organic Frameworks: New Fire Retardant for Polymeric Material

16th European Meeting on Fire Retardant Polymeric Materials, Jul 2017, Manchester, United Kingdom

Gaelle Fontaine,Johan Sarazin,Christophe Volkringer,Philippe Devaux,Thierry Loiseau,Serge Bourbigot

Lien : https://lilloa.hal.science/hal-02319502v1

Fire behavior of simulated low voltage intumescent cables with and without electric current

Journal of Fire Sciences, 2017, 35 (3), pp.179 - 194. ⟨10.1177/0734904117698843⟩

Johan Sarazin,Pierre Bachelet,Serge Bourbigot

Lien : https://hal.science/hal-01697376v1

SCALE REDUCTION: HOW TO PLAY WITH FIRE?

Fire and Materials, Feb 2017, San Francisco, United States

Serge Bourbigot,Johan Sarazin,Pierre Bachelet,Fabienne Samyn,Maude Jimenez,Sophie Duquesne

Lien : https://lilloa.hal.science/hal-01879759v1

Développement et validation de nouveaux tests d'évaluation du comportement au feu des gaines de câble électrique basse tension

Matériaux. 2014

Johan Sarazin

Lien : https://dumas.ccsd.cnrs.fr/dumas-01360754v1

Laboratoire