Search Results - "Dalmazzone, C"

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  1. 1

    Fatty Acids Methyl Esters (FAME) autoxidation: New insights on insoluble deposit formation process in biofuels by Alves-Fortunato, M., Ayoub, E., Bacha, K., Mouret, A., Dalmazzone, C.

    Published in Fuel (Guildford) (15-05-2020)
    “…[Display omitted] •Oxidized fuel form an oil-oil complex emulsion.•Oxidized fossil diesel presents the most dense and viscous oxidation products, but it is the…”
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    Journal Article
  2. 2

    Impact of Electrolytes on Produced Water Destabilization by Plassard, L, Mouret, A, Nieto-Draghi, C, Dalmazzone, C, Langevin, D, Argillier, J.-F

    Published in Energy & fuels (03-02-2022)
    “…In order to increase oil recovery, new techniques were developed such as chemical Enhanced Oil Recovery (EOR). The water injected in the reservoir tends to…”
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  3. 3

    A method for the characterization of emulsions, thermogranulometry: Application to water-in-crude oil emulsion by Clausse, D., Gomez, F., Dalmazzone, C., Noik, C.

    Published in Journal of colloid and interface science (15-07-2005)
    “…Emulsions are used in a wide range of applications and industries. Their size distribution is an important parameter because it influences most of the emulsion…”
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  4. 4

    Application of DSC for Emulsified System Characterization by Dalmazzone, C., Noïk, C., Clausse, D.

    Published in Oil & gas science and technology (01-09-2009)
    “…This paper will describe how Differential Scanning Calorimetry (DSC) may be used to characterize emulsions, especially the concentrated and opaque water-in-oil…”
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  5. 5

    Drop break-up in turbulent pipe flow downstream of a restriction by Galinat, S., Masbernat, O., Guiraud, P., Dalmazzone, C., Noı¨k, C.

    Published in Chemical engineering science (01-12-2005)
    “…This work addresses the drop fragmentation process induced by a cross-sectional restriction in a pipe. An experimental device of an upward co-current…”
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  6. 6

    Triblock copolymers as destabilizers of water-in-crude oil emulsions by Le Follotec, A., Pezron, I., Noik, C., Dalmazzone, C., Metlas-Komunjer, L.

    “…Water-in-oil emulsions are formed during crude oil exploitation. Asphaltenes aggregates (crude oil natural surfactants) are known to form viscoelastic film…”
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    Journal Article Conference Proceeding
  7. 7

    Morphology characterization of emulsions by differential scanning calorimetry by Clausse, D., Gomez, F., Pezron, I., Komunjer, L., Dalmazzone, C.

    Published in Advances in colloid and interface science (14-12-2005)
    “…This article is a review of some results obtained by Differential Scanning Calorimetry (DSC) for characterizing the morphology of emulsions. In a classical DSC…”
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    Journal Article Conference Proceeding
  8. 8

    Breakup of a drop in a liquid-liquid pipe flow through an orifice by Galinat, S., Garrido Torres, L., Masbernat, O., Guiraud, P., Risso, F., Dalmazzone, C., Noik, C.

    Published in AIChE journal (01-01-2007)
    “…The drop breakup in a heterogeneous turbulent pipe flow developing downstream of an orifice is reported. A two‐phase flow is considered of n‐heptane drops in a…”
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  9. 9

    Surfactant system for water-based well fluids by Audibert-Hayet, A., Dalmazzone, C.

    “…Water-based fluids are used at different steps of well construction, i.e. drilling, completion or hydraulic fracturing, generally due to strong local…”
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    Journal Article Conference Proceeding
  10. 10

    Destabilisation of Water-in-Crude Oil Emulsions by Silicone Copolymer Demulsifiers by Daniel-David, D., Le Follotec, A., Pezron, I., Dalmazzone, C., Noïk, C., Barré, L., Komunjer, L.

    Published in Oil & gas science and technology (01-01-2008)
    “…Asphaltene aggregates are known to form viscoelastic film preventing the coalescence of droplets in water-in-oil emulsions formed during crude oil…”
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    Journal Article Conference Proceeding
  11. 11

    Efficiency Enhancement of Polyols Derivatives Surfactants for Oil and Water Phase Separation by Noik, C., Dalmazzone, C., Dewattines, C.

    “…The objective of this study is to test and to select de-emulsifier "base" products coming from glycerine chemistry. A rigorous methodology based on…”
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  12. 12

    Génération mécanique des émulsions by Dalmazzone, C.

    Published in Oil & gas science and technology (01-05-2000)
    “…Les émulsions sont des systèmes complexes très fréquemment rencontrés dans notre vie quotidienne et dans la plupart des secteurs industriels, dont l'industrie…”
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  13. 13

    Fatty Acids Methyl Esters (FAME) autoxidation: 1 new insights on insoluble deposits formation process 2 in biofuels by Alves-Fortunato, M., Ayoub, E., Bacha, K., Mouret, A., Dalmazzone, C.

    Published in Fuel (Guildford) (15-05-2020)
    “…The thermal and oxidation stability of fatty acids methyl esters (FAME) is arousing attention in the transport industry, since they are the main components…”
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    Journal Article
  14. 14

    Measurements of $$\pi ^\pm $$, $$K^\pm $$, p and $$\bar{p}$$ spectra in $$^{40}\hbox {Ar+}^{45}\hbox {Sc}$$ collisions at 13A to 150A $$\text{ Ge }\hspace{-1.00006pt}\text{ V }\!/\!c by Adhikary, H., Adrich, P., Allison, K. K., Amin, N., Andronov, E. V., Antićić, T., Arsene, I.-C., Bajda, M., Balkova, Y., Baszczyk, M., Battaglia, D., Bazgir, A., Bhosale, S., Bielewicz, M., Blondel, A., Bogomilov, M., Bondar, Y., Bostan, N., Brandin, A., Bryliński, W., Brzychczyk, J., Buryakov, M., Camino, A. F., Ćirković, M., Csanád, M., Cybowska, J., Czopowicz, T., Dalmazzone, C., Davis, N., Dmitriev, A., von Doetinchem, P., Dominik, W., Dorosz, P., Dumarchez, J., Engel, R., Feofilov, G. A., Fields, L., Fodor, Z., Friend, M., Gaździcki, M., Golosov, O., Golovatyuk, V., Golubeva, M., Grebieszkow, K., Guber, F., Igolkin, S. N., Ilieva, S., Ivashkin, A., Izvestnyy, A., Kadija, K., Kargin, N., Karpushkin, N., Kashirin, E., Kiełbowicz, M., Kireyeu, V. A., Kitagawa, H., Kolesnikov, R., Kolev, D., Koshio, Y., Kovalenko, V. N., Kowalski, S., Kozłowski, B., Krasnoperov, A., Kucewicz, W., Kuchowicz, M., Kuich, M., Kurepin, A., László, A., Lewicki, M., Lykasov, G., Lyubushkin, V. V., Maćkowiak-Pawłowska, M., Majka, Z., Makhnev, A., Maksiak, B., Malakhov, A. I., Marcinek, A., Marino, A. D., Mathes, H.-J., Matulewicz, T., Matveev, V., Melkumov, G. L., Merzlaya, A., Mik, Ł., Morawiec, A., Morozov, S., Nagai, Y., Nakadaira, T., Naskręt, M., Nishimori, S., Ozvenchuk, V., Panova, O., Paolone, V., Petukhov, O., Pidhurskyi, I., Płaneta, R., Podlaski, P., Popov, B. A., Pórfy, B., Posiadała-Zezula, M.

    “…Abstract The NA61/SHINE experiment at the CERN Super Proton Synchrotron studies the onset of deconfinement in strongly interacting matter through a beam energy…”
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  15. 15

    Characterization of charge spreading and gain of encapsulated resistive Micromegas detectors for the upgrade of the T2K Near Detector Time Projection Chambers by Ambrosi, L., Attié, D., Ballester, O., Batkiewicz-Kwasniak, M., Billoir, P., Blanchet, A., Blondel, A., Bolognesi, S., Boullon, R., Calvet, D., Casado, M.P., Catanesi, M.G., Cicerchia, M., Cogo, G., Colas, P., Collazuol, G., D’Ago, D., Dalmazzone, C., Daret, T., Delbart, A., De Lorenzis, A., de Oliveira, R., Dolan, S., Dygnarowicz, K., Dumarchez, J., Emery-Schrenk, S., Ershova, A., Eurin, G., Feltre, M., Forza, C., Giannessi, L., Giganti, C., Gramegna, F., Grassi, M., Guigue, M., Hamacher-Baumann, P., Hassani, S., Henaff, D., Iacob, F., Jesús-Valls, C., Joshi, S., Kurjata, R., Lamoureux, M., Langella, A., Laporte, J.F., Lachner, K., Lavitola, L., Lehuraux, M., Levorato, S., Longhin, A., Lux, T., Magaletti, L., Marchi, T., Mattiazzi, M., Mehl, B., Mellet, L., Mezzetto, M., Munteanu, L., Obrȩbski, W., Orain, Y., Pari, M., Parraud, J.-M., Pastore, C., Pepato, A., Pierre, E., Garcia, C. Pio, Pizzirusso, O., Popov, B., Porthault, J., Przybiliski, H., Pupilli, F., Radermacher, T., Radicioni, E., Riccio, C., Rinaldi, L., Rossi, F., Roth, S., Russo, L., Russo, S., Rychter, A., Saenz-Arevalo, W., Schune, Ph, Scomparin, L., Smyczek, D., Steinmann, J., Suvorov, S., Swierblewski, J., Teixeira, A., Terront, D., Thamm, N., Toussenel, F., Valentino, V., Varghese, M., Vasseur, G., Villa, E., Virginet, U., Vuillemin, C., Yevarouskaya, U., Ziembicki, M., Zito, M.

    “…An upgrade of the near detector of the T2K long baseline neutrino oscillation experiment is currently being conducted. This upgrade will include two new Time…”
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  16. 16

    Measurements of neutrino oscillation parameters from the T2K experiment using \documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$$3.6\times 10^{21}$$\end{document}3.6×1021 protons on target by Abe, K., Akhlaq, N., Akutsu, R., Ali, A., Alonso Monsalve, S., Alt, C., Andreopoulos, C., Antonova, M., Aoki, S., Arihara, T., Asada, Y., Ashida, Y., Atkin, E. T., Barbi, M., Barker, G. J., Barr, G., Barrow, D., Batkiewicz-Kwasniak, M., Bench, F., Berardi, V., Berns, L., Bhadra, S., Blanchet, A., Blondel, A., Bolognesi, S., Bonus, T., Bordoni, S., Boyd, S. B., Bravar, A., Bronner, C., Bron, S., Bubak, A., Buizza Avanzini, M., Caballero, J. A., Calabria, N. F., Cao, S., Carabadjac, D., Carter, A. J., Cartwright, S. L., Catanesi, M. G., Cervera, A., Chakrani, J., Cherdack, D., Chong, P. S., Christodoulou, G., Chvirova, A., Cicerchia, M., Coleman, J., Collazuol, G., Cook, L., Cudd, A., Dalmazzone, C., Daret, T., Davydov, Yu. I., De Roeck, A., De Rosa, G., Dealtry, T., Delogu, C. C., Densham, C., Dergacheva, A., Di Lodovico, F., Dolan, S., Douqa, D., Doyle, T. A., Drapier, O., Dumarchez, J., Dunne, P., Dygnarowicz, K., Eguchi, A., Emery-Schrenk, S., Erofeev, G., Ershova, A., Eurin, G., Fedorova, D., Fedotov, S., Feltre, M., Finch, A. J., Fiorentini Aguirre, G. A., Fiorillo, G., Fitton, M. D., Franco Patiño, J. M., Friend, M., Fujii, Y., Fukuda, Y., Fusshoeller, K., Giannessi, L., Giganti, C., Glagolev, V., Gonin, M., González Rosa, J., Goodman, E. A. G., Gorin, A., Grassi, M., Guigue, M., Hadley, D. R., Haigh, J. T., Hamacher-Baumann, P., Harris, D. A., Hartz, M., Hasegawa, T.

    “…The T2K experiment presents new measurements of neutrino oscillation parameters using \documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym}…”
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  17. 17

    Measurements of neutrino oscillation parameters from the T2K experiment using 3.6 × 10 21 protons on target by Abe, K, Akhlaq, N, Akutsu, R, Ali, A, Alonso Monsalve, S, Alt, C, Andreopoulos, C, Antonova, M, Aoki, S, Arihara, T, Asada, Y, Ashida, Y, Atkin, E T, Barbi, M, Barker, G J, Barr, G, Barrow, D, Batkiewicz-Kwasniak, M, Bench, F, Berardi, V, Berns, L, Bhadra, S, Blanchet, A, Blondel, A, Bolognesi, S, Bonus, T, Bordoni, S, Boyd, S B, Bravar, A, Bronner, C, Bron, S, Bubak, A, Buizza Avanzini, M, Caballero, J A, Calabria, N F, Cao, S, Carabadjac, D, Carter, A J, Cartwright, S L, Catanesi, M G, Cervera, A, Chakrani, J, Cherdack, D, Chong, P S, Christodoulou, G, Chvirova, A, Cicerchia, M, Coleman, J, Collazuol, G, Cook, L, Cudd, A, Dalmazzone, C, Daret, T, Davydov, Yu I, De Roeck, A, De Rosa, G, Dealtry, T, Delogu, C C, Densham, C, Dergacheva, A, Di Lodovico, F, Dolan, S, Douqa, D, Doyle, T A, Drapier, O, Dumarchez, J, Dunne, P, Dygnarowicz, K, Eguchi, A, Emery-Schrenk, S, Erofeev, G, Ershova, A, Eurin, G, Fedorova, D, Fedotov, S, Feltre, M, Finch, A J, Fiorentini Aguirre, G A, Fiorillo, G, Fitton, M D, Franco Patiño, J M, Friend, M, Fujii, Y, Fukuda, Y, Fusshoeller, K, Giannessi, L, Giganti, C, Glagolev, V, Gonin, M, González Rosa, J, Goodman, E A G, Gorin, A, Grassi, M, Guigue, M, Hadley, D R, Haigh, J T, Hamacher-Baumann, P, Harris, D A, Hartz, M, Hasegawa, T

    “…The T2K experiment presents new measurements of neutrino oscillation parameters using protons on target (POT) in (anti-)neutrino mode at the far detector (FD)…”
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  18. 18

    A Field Experimentation on Bioremediation: Bioren by Le Floch, S., Merlin, F.-X., Guillerme, M., Dalmazzone, C., Le Corre, P.

    Published in Environmental technology (01-08-1999)
    “…Most shoreline bioremediation strategies are based on the addition of limiting nutrients to contaminated environments to cause an acceleration of the natural…”
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  19. 19

    Formation Kinetics and Viscoelastic Properties of Water/Crude Oil Interfacial Films by Quintero, C. G., Noïk, C., Dalmazzone, C., Grossiord, J. L.

    Published in Oil & gas science and technology (01-09-2009)
    “…Viscoelastic interfacial properties of a light paraffinic crude oil/water system were studied in order to determine the formation film kinetics. A drop…”
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  20. 20

    K^0_S$$ K S 0 meson production in inelastic p+p interactions at 31, 40 and 80  $$\text {Ge}\hspace{-1.00006pt}\text {V}\!/\!c$$ Ge V / c beam momentum measured by NA61 $$/$$ / SHINE at the CERN SPS by NA61/SHINE Collaboration, N. Abgrall, H. Adhikary, P. Adrich, K. K. Allison, N. Amin, E. V. Andronov, T. Antićić, I.-C. Arsene, M. Bajda, Y. Balkova, M. Baszczyk, D. Battaglia, A. Bazgir, S. Bhosale, M. Bielewicz, A. Blondel, M. Bogomilov, Y. Bondar, N. Bostan, A. Brandin, A. Bravar, W. Bryliński, J. Brzychczyk, M. Buryakov, A. F. Camino, M. Ćirković, M. Csanád, J. Cybowska, T. Czopowicz, C. Dalmazzone, N. Davis, A. Dmitriev, P. von Doetinchem, W. Dominik, P. Dorosz, J. Dumarchez, R. Engel, G. A. Feofilov, L. Fields, Z. Fodor, M. Friend, M. Gaździcki, O. Golosov, V. Golovatyuk, M. Golubeva, K. Grebieszkow, F. Guber, A. Haesler, S. N. Igolkin, S. Ilieva, A. Ivashkin, A. Izvestnyy, K. Kadija, N. Kargin, N. Karpushkin, E. Kashirin, M. Kiełbowicz, V. A. Kireyeu, H. Kitagawa, R. Kolesnikov, D. Kolev, A. Korzenev, Y. Koshio, V. N. Kovalenko, S. Kowalski, B. Kozłowski, A. Krasnoperov, W. Kucewicz, M. Kuchowicz, M. Kuich, A. Kurepin, A. László, M. Lewicki, G. Lykasov, V. V. Lyubushkin, M. Maćkowiak-Pawłowska, Z. Majka, A. Makhnev, B. Maksiak, A. I. Malakhov, A. Marcinek, A. D. Marino, H.-J. Mathes, T. Matulewicz, V. Matveev, G. L. Melkumov, A. Merzlaya, Ł. Mik, A. Morawiec, S. Morozov, Y. Nagai, T. Nakadaira, M. Naskręt, S. Nishimori, V. Ozvenchuk, O. Panova, V. Paolone, O. Petukhov, I. Pidhurskyi

    “…Abstract The yields of $$K^0_S$$ K S 0 mesons have been measured in inelastic p+p interactions at incident projectile momenta of 31, 40 and 80  $$\text…”
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