The Experts below are selected from a list of 51606 Experts worldwide ranked by ideXlab platform
Audran Gérard - One of the best experts on this subject based on the ideXlab platform.
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Identification of chemical species created during γ‐irradiation of antioxidant used in polyethylene and polyethylene‐ co ‐vinyl Acetate multilayer film
'Wiley', 2020Co-Authors: Dorey Samuel, Gaston Fanny, Girard-perier Nina, Dupuy Nathalie, Marque, Sylvain R.a., Barbaroux Magali, Audran GérardAbstract:International audienceWith the increasing use of γ-irradiated containers made of multilayer poly-meric flexible films for food and biopharmaceutical applications, the possible migration of degradation products of the polymers and their additives is becoming a topic of concern. This article aims at highly reliably identifying the degradation products generated after gamma irradiation and their origin to later on assess their potential harmfulness in single-use containers. In this study, GC-MS is used to identify by-products created by γ-irradiation of primary and secondary antioxidants usually present in polyolefin-based biotechnological single-use materials and to confirm identification relevancy based on the literature survey or standard when available. Degradation pathways are proposed to account for the formation of by-products identified during the study and to list intermediates and other by-products present in too small amounts to be detected and identified accurately in all extractable studies
Dorey Samuel - One of the best experts on this subject based on the ideXlab platform.
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Identification of chemical species created during γ‐irradiation of antioxidant used in polyethylene and polyethylene‐ co ‐vinyl Acetate multilayer film
'Wiley', 2020Co-Authors: Dorey Samuel, Gaston Fanny, Girard-perier Nina, Dupuy Nathalie, Marque, Sylvain R.a., Barbaroux Magali, Audran GérardAbstract:International audienceWith the increasing use of γ-irradiated containers made of multilayer poly-meric flexible films for food and biopharmaceutical applications, the possible migration of degradation products of the polymers and their additives is becoming a topic of concern. This article aims at highly reliably identifying the degradation products generated after gamma irradiation and their origin to later on assess their potential harmfulness in single-use containers. In this study, GC-MS is used to identify by-products created by γ-irradiation of primary and secondary antioxidants usually present in polyolefin-based biotechnological single-use materials and to confirm identification relevancy based on the literature survey or standard when available. Degradation pathways are proposed to account for the formation of by-products identified during the study and to list intermediates and other by-products present in too small amounts to be detected and identified accurately in all extractable studies
Marque, Sylvain R.a. - One of the best experts on this subject based on the ideXlab platform.
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Identification of chemical species created during γ‐irradiation of antioxidant used in polyethylene and polyethylene‐ co ‐vinyl Acetate multilayer film
'Wiley', 2020Co-Authors: Dorey Samuel, Gaston Fanny, Girard-perier Nina, Dupuy Nathalie, Marque, Sylvain R.a., Barbaroux Magali, Audran GérardAbstract:International audienceWith the increasing use of γ-irradiated containers made of multilayer poly-meric flexible films for food and biopharmaceutical applications, the possible migration of degradation products of the polymers and their additives is becoming a topic of concern. This article aims at highly reliably identifying the degradation products generated after gamma irradiation and their origin to later on assess their potential harmfulness in single-use containers. In this study, GC-MS is used to identify by-products created by γ-irradiation of primary and secondary antioxidants usually present in polyolefin-based biotechnological single-use materials and to confirm identification relevancy based on the literature survey or standard when available. Degradation pathways are proposed to account for the formation of by-products identified during the study and to list intermediates and other by-products present in too small amounts to be detected and identified accurately in all extractable studies
Barbaroux Magali - One of the best experts on this subject based on the ideXlab platform.
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Identification of chemical species created during γ‐irradiation of antioxidant used in polyethylene and polyethylene‐ co ‐vinyl Acetate multilayer film
'Wiley', 2020Co-Authors: Dorey Samuel, Gaston Fanny, Girard-perier Nina, Dupuy Nathalie, Marque, Sylvain R.a., Barbaroux Magali, Audran GérardAbstract:International audienceWith the increasing use of γ-irradiated containers made of multilayer poly-meric flexible films for food and biopharmaceutical applications, the possible migration of degradation products of the polymers and their additives is becoming a topic of concern. This article aims at highly reliably identifying the degradation products generated after gamma irradiation and their origin to later on assess their potential harmfulness in single-use containers. In this study, GC-MS is used to identify by-products created by γ-irradiation of primary and secondary antioxidants usually present in polyolefin-based biotechnological single-use materials and to confirm identification relevancy based on the literature survey or standard when available. Degradation pathways are proposed to account for the formation of by-products identified during the study and to list intermediates and other by-products present in too small amounts to be detected and identified accurately in all extractable studies
Dupuy Nathalie - One of the best experts on this subject based on the ideXlab platform.
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Identification of chemical species created during γ‐irradiation of antioxidant used in polyethylene and polyethylene‐ co ‐vinyl Acetate multilayer film
'Wiley', 2020Co-Authors: Dorey Samuel, Gaston Fanny, Girard-perier Nina, Dupuy Nathalie, Marque, Sylvain R.a., Barbaroux Magali, Audran GérardAbstract:International audienceWith the increasing use of γ-irradiated containers made of multilayer poly-meric flexible films for food and biopharmaceutical applications, the possible migration of degradation products of the polymers and their additives is becoming a topic of concern. This article aims at highly reliably identifying the degradation products generated after gamma irradiation and their origin to later on assess their potential harmfulness in single-use containers. In this study, GC-MS is used to identify by-products created by γ-irradiation of primary and secondary antioxidants usually present in polyolefin-based biotechnological single-use materials and to confirm identification relevancy based on the literature survey or standard when available. Degradation pathways are proposed to account for the formation of by-products identified during the study and to list intermediates and other by-products present in too small amounts to be detected and identified accurately in all extractable studies