Search Results - "Duquesne, S"

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  1. 1

    An engineered PET depolymerase to break down and recycle plastic bottles by Tournier, V., Topham, C. M., Gilles, A., David, B., Folgoas, C., Moya-Leclair, E., Kamionka, E., Desrousseaux, M.-L., Texier, H., Gavalda, S., Cot, M., Guémard, E., Dalibey, M., Nomme, J., Cioci, G., Barbe, S., Chateau, M., André, I., Duquesne, S., Marty, A.

    Published in Nature (London) (01-04-2020)
    “…Present estimates suggest that of the 359 million tons of plastics produced annually worldwide 1 , 150–200 million tons accumulate in landfill or in the…”
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  2. 2

    Recycling of plastic waste using flash pyrolysis – Effect of mixture composition by KLAIMY, S., LAMONIER, J.-F., CASETTA, M., HEYMANS, S., DUQUESNE, S.

    Published in Polymer degradation and stability (01-05-2021)
    “…•A model mixture representative of the plastic waste was established.•Pyrolysis of virgin and polymer mixtures was investigated.•The decomposition process is…”
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  3. 3

    Self-stratifying coatings: A review by Beaugendre, A., Degoutin, S., Bellayer, S., Pierlot, C., Duquesne, S., Casetta, M., Jimenez, M.

    Published in Progress in organic coatings (01-09-2017)
    “…•An historical background of self-stratifying coatings is proposed.•Factors affecting the formation of stratified layers are detailed.•Models to predict…”
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  4. 4

    Intumescent fire protective coating: Toward a better understanding of their mechanism of action by Jimenez, M., Duquesne, S., Bourbigot, S.

    Published in Thermochimica acta (01-10-2006)
    “…The aim of this work is to better understand the role and the mechanism of action of boric acid and of coated ammonium polyphosphate (pure ammonium…”
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  5. 5

    Key role of magnesium hydroxide surface treatment in the flame retardancy of glass fiber reinforced polyamide 6 by Casetta, M., Michaux, G., Ohl, B., Duquesne, S., Bourbigot, S.

    Published in Polymer degradation and stability (01-02-2018)
    “…In this paper, the fire retardant properties of two magnesium dihydroxide (MDH) were compared into glass fiber reinforced polyamide 6 (PA6 GF). The difference…”
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  6. 6

    Characterization of the carbonization process of expandable graphite/silicone formulations in a simulated fire by Gardelle, B., Duquesne, S., Vandereecken, P., Bourbigot, S.

    Published in Polymer degradation and stability (01-05-2013)
    “…The fire performance of curable-silicone based coatings containing expandable graphite (EG) is evaluated in hydrocarbon fire scenario (standard UL1709) using a…”
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  7. 7

    Characterization of the performance of an intumescent fire protective coating by Jimenez, M., Duquesne, S., Bourbigot, S.

    Published in Surface & coatings technology (05-10-2006)
    “…The aim of this work is to study the efficiency of different intumescent formulations designed to protect steel in the case of hydrocarbon fire. The coating is…”
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  8. 8

    Comprehensive Study of the Influence of Different Aging Scenarios on the Fire Protective Behavior of an Epoxy Based Intumescent Coating by Jimenez, M, Bellayer, S, Revel, B, Duquesne, S, Bourbigot, S

    “…Passive fire protection systems are widely used by the oil, gas, and chemical industries to protect steel against fire. However, there are concerns that the…”
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  9. 9

    Flammability properties of intumescent PLA including starch and lignin by Réti, C., Casetta, M., Duquesne, S., Bourbigot, S., Delobel, R.

    Published in Polymers for advanced technologies (01-06-2008)
    “…The aim of this study is to evaluate the efficiency of different intumescent formulations to flame retard polylactic acid (PLA). First, the ammonium…”
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  10. 10

    Thermal degradation and fire performance of intumescent silicone-based coatings by Gardelle, B., Duquesne, S., Rerat, V., Bourbigot, S.

    Published in Polymers for advanced technologies (01-01-2013)
    “…This paper deals with the thermal degradation and fire performance of silicone‐based coatings for protecting steel. In this study, the fire performance of…”
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  11. 11

    Flame retardant and weathering resistant self-layering epoxy-silicone coatings for plastics by Beaugendre, A., Lemesle, C., Bellayer, S., Degoutin, S., Duquesne, S., Casetta, M., Pierlot, C., Jaime, F., Kim, T., Jimenez, M.

    Published in Progress in organic coatings (01-11-2019)
    “…•A flame retardant and weathering resistant self-stratified coating is designed.•Epoxy stratifies as the base layer and silicone as the upper layer.•Iron oxide…”
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  12. 12

    Effect of zinc borate on the thermal degradation of ammonium polyphosphate by Samyn, F., Bourbigot, S., Duquesne, S., Delobel, R.

    Published in Thermochimica acta (15-05-2007)
    “…The thermal behaviour of a mixture containing an ammonium polyphosphate based compound (AP760) and zinc borate (ZB) is investigated. After an investigation of…”
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  13. 13

    An engineered enzyme embedded into PLA to make self-biodegradable plastic by Guicherd, M., Ben Khaled, M., Guéroult, M., Nomme, J., Dalibey, M., Grimaud, F., Alvarez, P., Kamionka, E., Gavalda, S., Noël, M., Vuillemin, M., Amillastre, E., Labourdette, D., Cioci, G., Tournier, V., Kitpreechavanich, V., Dubois, P., André, I., Duquesne, S., Marty, A.

    Published in Nature (London) (25-07-2024)
    “…Plastic production reached 400 million tons in 2022 (ref. 1 ), with packaging and single-use plastics accounting for a substantial amount of this 2 . The…”
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  14. 14

    Self-stratifying epoxy/silicone coatings by Beaugendre, A., Degoutin, S., Bellayer, S., Pierlot, C., Duquesne, S., Casetta, M., Jimenez, M.

    Published in Progress in organic coatings (01-02-2017)
    “…•Self-Stratifying Epoxy/Silicone Coatings Novel epoxy/silicone self-stratifying coatings are designed for plastics.•The choice of solvent highly influences the…”
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  15. 15

    Resistance to fire of intumescent silicone based coating: The role of organoclay by Gardelle, B., Duquesne, S., Vandereecken, P., Bellayer, S., Bourbigot, S.

    Published in Progress in organic coatings (01-11-2013)
    “…•We investigate the fire protection of intumescent silicone based coating.•The organoclay enhances significantly the fire performance of the coating.•The mode…”
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  16. 16

    Influence of the degree of exfoliation of an organoclay on the flame‐retardant properties of cross‐linked ethylene‐co‐Propylene‐co‐diene monomer‐g‐Maleic anhydride‐based composites by Moustafa, H., Duquesne, S., Haidar, B., Vallat, M.F.

    Published in Polymer composites (01-05-2017)
    “…Layered montmorillonite was synthesized by hydrothermal method, progressively modified by an alkylammonium and thoroughly characterized by elemental, thermal,…”
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  17. 17

    Getting a better insight into the chemistry of decomposition of complex flame retarded formulation: New insights using solid state NMR by Hansupo, N., Tricot, G., Bellayer, S., Roussel, P., Samyn, F., Duquesne, S., Jimenez, M., Hollman, M., Catala, P., Bourbigot, S.

    Published in Polymer degradation and stability (01-07-2018)
    “…This paper aims at developing an innovative approach to characterize the char residue of an intumescent coating obtained after a UL1709 furnace test. The…”
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  18. 18

    The use of POSS as synergist in intumescent recycled poly(ethylene terephthalate) by Vannier, A., Duquesne, S., Bourbigot, S., Castrovinci, A., Camino, G., Delobel, R.

    Published in Polymer degradation and stability (01-04-2008)
    “…Fire retarded poly(ethylene terephthalate) (PET) has been obtained by the incorporation of octamethyl polyhedral oligomeric silsesquioxane (OMPOSS) and Exolit…”
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  19. 19

    Multiscale Experimental Approach for Developing High-Performance Intumescent Coatings by Jimenez, M, Duquesne, S, Bourbigot, S

    “…The goal of this work is to combine small-scale screening tests permitting, during the laboratory research phase of a development, the optimization of…”
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  20. 20

    Intumescent paints: fire protective coatings for metallic substrates by Duquesne, S., Magnet, S., Jama, C., Delobel, R.

    Published in Surface & coatings technology (01-03-2004)
    “…This study investigates the role of the binder in an intumescent paint. In fact, it is generally known that acid source, carbon source and blowing agent are…”
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