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Assessment of Alder Tree Bark Potential as a Renewable Source of Proanthocyanidins in Latvia

References [1] G. Telysheva, T. Dizhbite, O. Bikovens, J. Ponomarenko, S. Janceva, J. Krasilnikova, “Structure and antioxidant activity of diarylheptanoids extracted from bark of grey alder (Alnus incana) and potential of biorefinery-based bark processing of European trees”, Holzforschung, no. 65, pp. 623-629, 2010. http://dx.doi.org/10.1515/hf.2011.096 [2] Y. S. Park, M. H. Jeon, H. J. Hwang, M. R. Park, S. H. Lee, S. G. Kim and M. Kim, “Antioxidant activity and analysis of proanthocyanidins from pine (Pinus densiflora

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Mechanical and Heat Shrinkable Properties of Electron Beam Irradiated Polypropylene With Bisphenol A Dimethacrylate Crosslinker

. 92, no. 2, pp. 299–309, Feb. 2007. https://doi.org/10.1016/j.polymdegradstab.2006.10.010 [5] P. Cerruti, M. Malinconico, J. Rychly, L. Matisova-Rychla, and C. Carfagna, “Effect of natural antioxidants on the stability of polypropylene films,” Polymer Degradation and Stability , vol. 94, no. 11, pp. 2095–2100, Nov. 2009. https://doi.org/10.1016/j.polymdegradstab.2009.07.023 [6] C. Maier and T. Calafut, Polypropylene: The Definitive User’s Guide and Databook . Norwich, NY: Plastics Design Library, 1998. [7] H. Wang and W. Chen, “Radiation

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Toxicity Evaluation of Surface Cleaning Preparation Using Different Test Methods / Virsmu tīrīšanas līdzekļa toksiskuma novērtēšana, izmantojot dažādas testa metodes

.1016/0147-6513(94)90033-7 14. Masood, S., Saleh, L., Witzel, K., et al. Determination of oxidative stress in wheat leaves as influenced by boron toxicity and NaCl stress. Plant physiology and Biochemistry, 2012, vol. 56, pp. 56-61. http://dx.doi.org/10.1016/j.plaphy.2012.04.011 15. Gill Sarvajeet S., Khan, N.A., Tuteja N. Cadmium at high dose perturbs growth, photosynthesis and nitrogen metabolism while at low dose it up regulates sulfur assimilation and antioxidant machinery in garden cress (Lepidium sativum L.). Plant Science, 2012, vol. 182, pp. 112-120. http

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