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A. Alsabry

References [1] Jungwirth D., Grübl P. and Windisch A. (1991): Elektrochemische Schutzverfahren für bewehrte Bauteile aus baupraktischer Sicht . – Beton und Stahlbetonbau vol.86, H, No.7, pp.167–171. [2] Mietz J. (1993): Elektrochemische Schutzverfahren zur Beseitigung von Korrosionsrisiken an Stahlbetonbauwerken . – Bauingenieur, vol.68, pp.533–538. [3] Tritthart J., Pettersson K. and Sorensen B. (1993): Electrochemical removal of chlorides from hardened cement paste . – Cement and Concrete Research, vol.23, pp.1095-1104. [4] Elsener B

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Pinar Goc Rasgele, Meral Kekecoglu and Fulya Dilek Gokalp Muranli

the Karoon waterway river, Iran Toxicol. Lett. , 151 (1), 63-67. [14] EPA. (1996). Health Effects Test Guidelines. OPPTS 870.5395 In Vivo Mammalian Cytogenetic Tests: Erythrocyte Micronucleus Assay. 712-C-96-226. [15] Fahmy, M.A., & Aly, F.A.E. (2000). In vivo and in vitro studies on the genotoxicity of cadmium chloride in mice, J. App.Toxic. , 20, 231-238. [16] Feng, S., Wang, X., Wei, G., Peng, P., Yang, Y., & Cao, Z. (2007). Leachates of municipal solid waste incineration bottom ash from Macao: Heavy metal

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Alisa Machner, Petter Hemstad and Klaartje De Weerdt

REFERENCES 1. Galan I & Glasser F P: “Chloride in cement,” Advances in Cement Research, Vol. 27, 2015, pp. 63–97. 2. International Federation for Structural concrete, fib , Model Code for Service Life Design: Model code prepared by Task group 5.6, fib, Lausanne, 2006. 3. Fick A, “Über Diffusion,” Annalen der Physik , Vol. 170, 1855, pp. 59–86. 4. De Weerdt K, Lothenbach B & Geiker M R: “Comparing chloride ingress from sea water and NaCl solution in Portland cement mortar,” Submitted for publication to Cement and Concrete Research

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L. Czarnecki and P. Woyciechowski

theoretical models”, Protection against Corrosion 5s/A/, 51-56 (2008), (in Polish). [5] G. Wieczorek, Reinforcement Corrosion Initiated by Chlorides or Cover Carbonation , Dolnośląskie Wydawnictwo Edukacyjne, Wrocław, 2002, (in Polish). [6] K. Slopkova, “Observing of state of steel reinforcement in concrete and process of its corrosion by effect of carbonization”, Proc. KONTRA 2002, 243-248 (2002). [7] V. Papadakis, C. Vayenas, and M. Fardis, “Experimental investigation and mathematical modeling of the concret carbonation

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Corina Sosdean, Liviu Marsavina and Geert De Schutter

References [1] Schlangen, E. et al. Measurement of chloride ingress in cracked concrete. In: Audenaert K., Marsavina L., De Schutter G. (eds), International RILEM workshop on transport mechanisms in cracked concrete. Acco, Leuven pp 19-25, 2007, ISBN 978-90-334-6637-3 [2] Ye, H. et al. Influence of cracking on chloride diffusivity and moisture influential depth in concrete subjected to simulated environmental conditions. Construction and Building Materials, 2013, vol. 47, pp. 66-79 ISSN 0950-0618, DOI:10.1016/j

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Alina Kałużewicz, Romuald Górski, Krzysztof Sobieralski, Marek Siwulski and Iwona Sas-Golak

References [1] Miklus MB, Beelman RB. CaCl 2 treated irrigation water applied to mushroom crops (Agaricus bisporus) increases Ca concentration and improves postharvest quality and shelf life. Mycologia. 1996;88:403-409. [2] Beelman RB, Simons S. Addition of calcium chloride to irrigation water increases calcium content and improves quality of Agaricus mushrooms independent of inherent calcium content. In: Van Griensven LJLD, editor. Science and Cultivation of Edible Fungi. Rotterdam: Balkema; 2000:491-497. [3] Kukura JL, Beelman RB, Peiffer MW. Calcium

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Zahra Ghahremanzadeh, Javid Imanpour Namin, Ali Bani and Ali Hallajian

. Ichthyol. 35: 109-120. Bath R.N., Eddy F.B. 1979 - Salt and water balance in rainbow trout (Salmo gairdneri) rapidly transferred from fresh water to sea water - J. Exp. Biol. 83: 193-202. Belda E., Kolankaya D. 2009 - The relationship between chloride cells and salinity adaptation in the euryhaline teleost, Lebistes reticulatus - J. Anim. Vet. Adv. 8: 888-892. Caberoy N.B., Quinitio G.F. 2000 - Changes in Na+,K+-ATPase activity and gill chloride cell morphology in the grouper Epinephelus coioides larvae and juveniles in

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Hanqing Tong and Jinping Hai

LITERATURE CITED 1. Ang, D.T., Khong, Y.K. & Gan, S.N. (2014). Palm oil--based compound as environmentally friendly plasticizer for poly(vinyl chloride). J. Vinyl Addit. Technol. 22 (1), 80–87. DOI 10.1002/vnl.21434. 2. Hsu, N.Y., Liu, Y.C., Lee, C.W. & Su, H.J. (2017). Higher moisture content is associated with greater emissions of DEHP from PVC wallpaper. Environ. Res. 152, 1–6. DOI: 10.1016/j.envres.2016.09.027. 3. Pyeon, H.B., Park, J.E. & Done, H.S.(2017). Non-phthalate plasticizer from camphor for flexible PVC with a wide range of

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Pua Eng Hock and Muhammad Abbas Ahmad Zaini

References Abnisa F, Wan-Daud WMA, Husin WNW, Sahu JN (2011) Utilization possibilities of palm shell as a source of biomass energy in Malaysia by producing bio-oil in pyrolysis process. Biomass Bioenergy 35(5), 1863–1872. Doi: 10.1016/j.biombioe.2011.01.033. Acharya J, Sahu JN, Sahoo BK, Mohanty CR, Meikap BC (2008) Removal of chromium(VI) from wastewater by activated carbon developed from Tamarind wood activated with zinc chloride. Chemical Engineering Journal 150(1), 25–39. Doi:10.1016/j.cej.2008.11.035. Angın D (2013) Production and

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Katarína Valachová, Grigorij Kogan, Peter Gemeiner and Ladislav Šoltés

metals. Interdisciplinary Toxicology   2 : 229-238. Šoltés L, Stankovská M, Brezová V, Schiller J, Arnhold J, Kogan G, Gemeiner P. (2006). Hyaluronan degradation by copper(II) chloride and ascorbate: rotational viscometric, EPR spin-trapping, and MALDI-TOF mass spectrometric investigations. Carbohydr Res   341 : 2826-2834. Šoltés L, Stankovská M, Kogan G, Gemeiner P, Stern R. (2005). Contribution of oxidative-reductive reactions to high-molecular-weight hyaluronan catabolism. Chem Biodivers   2 : 1242