The Experts below are selected from a list of 285 Experts worldwide ranked by ideXlab platform
Michel Fauconet - One of the best experts on this subject based on the ideXlab platform.
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determination of the solid liquid phase diagram of the binary system acrylic acid propionic acid
Journal of Chemical & Engineering Data, 2012Co-Authors: Marie Le Page Mostefa, Herve Muhr, Edouard Plasari, Michel FauconetAbstract:In this work, the solid–liquid equilibrium of the binary system acrylic acid (AA) + propionic acid (PA) has been determined by two different methods: analytical and synthetic methods. The phase diagram of AA + PA we obtained exhibits an eutectic behavior, a Peritectic Point, and a Peritectic compound which has never been identified before. Current crude biobased AA contains a higher proportion of PA than AA from petrochemical origin. The determined phase diagram is favorable to the implementation of melt crystallization, and good theoretical yields can be assumed for the production of AA with a high purity.
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Determination of the Solid–Liquid Phase Diagram of the Binary System Acrylic Acid + Propionic Acid
Journal of Chemical & Engineering Data, 2012Co-Authors: Marie Le Page Mostefa, Herve Muhr, Edouard Plasari, Michel FauconetAbstract:In this work, the solid–liquid equilibrium of the binary system acrylic acid (AA) + propionic acid (PA) has been determined by two different methods: analytical and synthetic methods. The phase diagram of AA + PA we obtained exhibits an eutectic behavior, a Peritectic Point, and a Peritectic compound which has never been identified before. Current crude biobased AA contains a higher proportion of PA than AA from petrochemical origin. The determined phase diagram is favorable to the implementation of melt crystallization, and good theoretical yields can be assumed for the production of AA with a high purity.
Herve Muhr - One of the best experts on this subject based on the ideXlab platform.
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Determination of the Solid-Liquid Phase Diagram of the Binary System Acrylic Acid plus Propionic Acid
Journal of Chemical and Engineering Data, 2012Co-Authors: Marie Lepage Mostafa, Herve Muhr, Edouard Plasari, Michel FauconnetAbstract:In this work, the solid liquid equilibrium of the binary system acrylic acid (AA) + propionic acid (PA) has been determined by two different methods: analytical and synthetic methods. The phase diagram of AA + PA we obtained exhibits an eutectic behavior, a Peritectic Point, and a Peritectic compound which has never been identified before. Current crude biobased AA contains a higher proportion of PA than AA from petrochemical origin. The determined phase diagram is favorable to the implementation of melt crystallization, and good theoretical yields can be assumed for the production of AA with a high purity.
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determination of the solid liquid phase diagram of the binary system acrylic acid propionic acid
Journal of Chemical & Engineering Data, 2012Co-Authors: Marie Le Page Mostefa, Herve Muhr, Edouard Plasari, Michel FauconetAbstract:In this work, the solid–liquid equilibrium of the binary system acrylic acid (AA) + propionic acid (PA) has been determined by two different methods: analytical and synthetic methods. The phase diagram of AA + PA we obtained exhibits an eutectic behavior, a Peritectic Point, and a Peritectic compound which has never been identified before. Current crude biobased AA contains a higher proportion of PA than AA from petrochemical origin. The determined phase diagram is favorable to the implementation of melt crystallization, and good theoretical yields can be assumed for the production of AA with a high purity.
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Determination of the Solid–Liquid Phase Diagram of the Binary System Acrylic Acid + Propionic Acid
Journal of Chemical & Engineering Data, 2012Co-Authors: Marie Le Page Mostefa, Herve Muhr, Edouard Plasari, Michel FauconetAbstract:In this work, the solid–liquid equilibrium of the binary system acrylic acid (AA) + propionic acid (PA) has been determined by two different methods: analytical and synthetic methods. The phase diagram of AA + PA we obtained exhibits an eutectic behavior, a Peritectic Point, and a Peritectic compound which has never been identified before. Current crude biobased AA contains a higher proportion of PA than AA from petrochemical origin. The determined phase diagram is favorable to the implementation of melt crystallization, and good theoretical yields can be assumed for the production of AA with a high purity.
Edouard Plasari - One of the best experts on this subject based on the ideXlab platform.
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Determination of the Solid-Liquid Phase Diagram of the Binary System Acrylic Acid plus Propionic Acid
Journal of Chemical and Engineering Data, 2012Co-Authors: Marie Lepage Mostafa, Herve Muhr, Edouard Plasari, Michel FauconnetAbstract:In this work, the solid liquid equilibrium of the binary system acrylic acid (AA) + propionic acid (PA) has been determined by two different methods: analytical and synthetic methods. The phase diagram of AA + PA we obtained exhibits an eutectic behavior, a Peritectic Point, and a Peritectic compound which has never been identified before. Current crude biobased AA contains a higher proportion of PA than AA from petrochemical origin. The determined phase diagram is favorable to the implementation of melt crystallization, and good theoretical yields can be assumed for the production of AA with a high purity.
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determination of the solid liquid phase diagram of the binary system acrylic acid propionic acid
Journal of Chemical & Engineering Data, 2012Co-Authors: Marie Le Page Mostefa, Herve Muhr, Edouard Plasari, Michel FauconetAbstract:In this work, the solid–liquid equilibrium of the binary system acrylic acid (AA) + propionic acid (PA) has been determined by two different methods: analytical and synthetic methods. The phase diagram of AA + PA we obtained exhibits an eutectic behavior, a Peritectic Point, and a Peritectic compound which has never been identified before. Current crude biobased AA contains a higher proportion of PA than AA from petrochemical origin. The determined phase diagram is favorable to the implementation of melt crystallization, and good theoretical yields can be assumed for the production of AA with a high purity.
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Determination of the Solid–Liquid Phase Diagram of the Binary System Acrylic Acid + Propionic Acid
Journal of Chemical & Engineering Data, 2012Co-Authors: Marie Le Page Mostefa, Herve Muhr, Edouard Plasari, Michel FauconetAbstract:In this work, the solid–liquid equilibrium of the binary system acrylic acid (AA) + propionic acid (PA) has been determined by two different methods: analytical and synthetic methods. The phase diagram of AA + PA we obtained exhibits an eutectic behavior, a Peritectic Point, and a Peritectic compound which has never been identified before. Current crude biobased AA contains a higher proportion of PA than AA from petrochemical origin. The determined phase diagram is favorable to the implementation of melt crystallization, and good theoretical yields can be assumed for the production of AA with a high purity.
Piero Baglioni - One of the best experts on this subject based on the ideXlab platform.
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Effect of the Alkyl Chains and of the Headgroups on the Thermal Behavior of Ascorbic Acid Surfactants Mixtures
The journal of physical chemistry. B, 2014Co-Authors: Chiara Venturini, Cristina Pomposi, Moira Ambrosi, Emiliano Carretti, Emiliano Fratini, Pierandrea Lo Nostro, Piero BaglioniAbstract:The role of the alkyl chain length and of the headgroup on the thermal behavior of mixtures of ASC8 (ascorbyl octanoate) and ASC16 (ascorbyl hexadecanoate) was investigated through differential scanning calorimetry, small- and wide-angle X-ray scattering, and Fourier transform infrared spectroscopy experiments. The formation of two eutectics and of a Peritectic Point was found from the phase diagram, and their structural properties were studied. The results were compared by investigating the thermal behavior of mixtures of octanoic acid and hexadecanoic acid. The findings provide insights into the role of the ascorbyl headgroups on the intermolecular interactions that determine the phase behavior of the two ascorbic acid based surfactants in the solid state.
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Effect of the Alkyl Chains and of the Headgroups on the Thermal Behavior of Ascorbic Acid Surfactants Mixtures
2014Co-Authors: Chiara Venturini, Cristina Pomposi, Moira Ambrosi, Emiliano Carretti, Emiliano Fratini, Pierandrea Lo Nostro, Piero BaglioniAbstract:The role of the alkyl chain length and of the headgroup on the thermal behavior of mixtures of ASC8 (ascorbyl octanoate) and ASC16 (ascorbyl hexadecanoate) was investigated through differential scanning calorimetry, small- and wide-angle X-ray scattering, and Fourier transform infrared spectroscopy experiments. The formation of two eutectics and of a Peritectic Point was found from the phase diagram, and their structural properties were studied. The results were compared by investigating the thermal behavior of mixtures of octanoic acid and hexadecanoic acid. The findings provide insights into the role of the ascorbyl headgroups on the intermolecular interactions that determine the phase behavior of the two ascorbic acid based surfactants in the solid state
Michel Fauconnet - One of the best experts on this subject based on the ideXlab platform.
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Determination of the Solid-Liquid Phase Diagram of the Binary System Acrylic Acid plus Propionic Acid
Journal of Chemical and Engineering Data, 2012Co-Authors: Marie Lepage Mostafa, Herve Muhr, Edouard Plasari, Michel FauconnetAbstract:In this work, the solid liquid equilibrium of the binary system acrylic acid (AA) + propionic acid (PA) has been determined by two different methods: analytical and synthetic methods. The phase diagram of AA + PA we obtained exhibits an eutectic behavior, a Peritectic Point, and a Peritectic compound which has never been identified before. Current crude biobased AA contains a higher proportion of PA than AA from petrochemical origin. The determined phase diagram is favorable to the implementation of melt crystallization, and good theoretical yields can be assumed for the production of AA with a high purity.