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Erzsébet Bognár, Gabriella Hellner, Andrea Radnóti, László Somogyi and Zsolt Kemény

REFERENCES [1] Appel, K.E.; Abraham, K.; Berge-Preiss, E.; Hansen, T.; Apel, E.; Schuchardt, S.; Vogt, C.; Bakhiya, N.; Creutzenberg, O.; Lampen, A.: Relative oral bioavailability of glycidol from glycidyl fatty acid esters in rats, Arch. Toxicol., 2013 87 (9), 1649–1659 DOI: 10.1007/s00204-013-1061-1 [2] Frank, N.; Dubois, M.; Scholz, G.; Seefelder, W.; Chuat, J.-Y.; Schilter, B.: Application of gastrointestinal modelling to the study of the digestion and transformation of dietary glycidyl esters, Food Addit. Contam. Part A , 2013 30 (1), 69

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Hanqing Tong and Jinping Hai

.1021/acssuschemeng.7b02989. 11. Chen, J., Wang, Y., Huang, J., Li, K., Nie, X. & Jiang, J. (2017).Synthesis and properties of a novel environmental epoxidized glycidyl ester of ricinoleic acetic ester plasticizer for poly(vinyl chloride). Polymers . 9(12), 640. DOI: 10.3390/polym9120640. 12. Chen, J., Nie, X. & Jiang, J. (2018). Synthesis and application of a novel cardanol-based plasticizer as secondary or main plasticizer for poly(vinyl chloride). Polym. Int. 67(3), 269–275. DOI: . 13. Jia, P., Hu, L., Shang, Q., Wang, R

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Fei Song, Haoyu Xia, Puyou Jia, Meng Zhang, Lihong Hu and Yonghong Zhou

References 1. Chen, J.X., Li, Y., Wang, J., Huang, K., Li, X. & Nie, J. Jiang. (2017). Synthesis and application of environmental soybean oil-based epoxidized glycidyl ester plasticizer for poly(vinyl chloride). European J. Lipid Sci. Technol. 119 (5). DOI: 10.1002/ejlt.201600216. 2. Bocqué, M., Voirin, C., Lapinte, V., Caillol, S. & Robin, J.. (2016). Petro-based and bio-based plasticizers: Chemical structures to plasticizing properties. J. Polym. Sci. Part B: Polymer Physics. 54 (1):11-33. DOI: 10.1002/pola.27917