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Analysis of chemical stability of tap water in terms of required level of technological safety

Analysis of chemical stability of tap water in terms of required level of technological safety ReferencesCarneiro, RN., Damiao, S. & Benoliel, M.J. (2015). Water safety plans at EPAL’s water supply system-tool to prioritize investments and mitigation actions, Water Science Technology, 15, pp. 1106-1114.Carrier Air Conditioning Company (1965). Handbook of Air Conditioning System Design, McGraw-Hill Books, New York 1965.Darvishi, G., Kootenaei, F.G., Ramezani, M., Lotfi , E. & Asgharnia, H. (2016). Comparative Investigation of River Water Quality by OWQI, NSFWQI and Wilcox Indexes (Case study: the Talar River - IRAN), Archives of Environmental Protection, 42, pp. 41-48. DOI: 10.1515/aep-2016-0005Dubiel, M., Hsu, C.H., Chien, C.C., Mansfeld, F. & Newman, D.K. (2002). Microbial iron respiration can protect steel from corrosion, Applied Environment Microbiology, 68, pp. 1440-1445.EN 12502:2006 Guidance on the assessment of corrosion likelihood in water distribution and storage systems.Ferrandez-Gamot, L., Busson, P., Blesa, J., Tornil-Sin, S., Puig, V., Eric, D. & Soldevila, A. (2015). Leak localization in water distribution networks using pressure residuals and classifiers original, Water Resources, 48, pp. 220-225.Garboś, S. & Święcicka, D. (2015). Human health risk assessment of uranium in drinking water sampled from drilled wells located in rural areas of the Lower Silesian region (Poland), Archives of Environmental Protection, 41, pp. 21-27. DOI: 10.1515/aep-2015-0014Gerke, T.L., Maynard, J.B., Schock, M.R. & Lytle, D.L. (2008). Physiochemical characterization of five iron tubercles from a single drinking water distribution system: possible new insights on their formation and growth, Corrosion Science, 50, pp. 2030-2039.Gorka, A., Papciak, D., Zamorska, J. & Antos, D. (2008). The influence of biofilm on the effectiveness of ion exchange process, Industrial & Engineering Chemistry Research, 47, pp. 7456-7464.Haibo, W., Chun, H. & Xiaoxiao, L. (2015). Characterization of biofi lm bacterial communities and cast iron corrosion in bench- -scale reactors with chloraminated drinking water, Engineering Failure Analysis, 57, pp. 423-433.Husband, P.S. & Boxall, J.B. (2011). Asset deterioration and discolouration in water distribution systems, Water Resources, 45, pp. 113-124.Kaźmierczak, B. & Wdowikowski, M. (2016). Maximum rainfall model based on archival pluviographic records - case study for Legnica (Poland), Periodica Polytechnica Civil Engineering, 60(2), pp. 305-312. DOI: 10.3311/PPci.8341Królikowska, J. (2011). Application of PHA method for assessing risk of failure on the example of sewage system in the city of Krakow, Rocznik Ochrona Srodowiska, 13, pp. 693-710.Kutylowska, M. & Orlowska-Szostak, M. (2016). Comparative analysis of water-pipe network deterioration-case study, Water Practice and Technology, 11(1), pp. 148-156.Kiedryńska, L., Papciak, D. & Granops, M. (2006). Sanitary Chemistry, Warsaw University of Life Sciences - SGGW (WULS-SGGW), Warsaw 2006. (in Polish) Lia, X., Wanga, H., Hua, C., Yanga, M., Hub, H. & Niuc, J. (2014). Characteristics of biofilms and iron corrosion scales with ground and surface waters in drinking water distribution systems, Corrosion Science, 90, pp. 331-339.McNeill, L.S. & Edwards, M. (2001). Iron pipe corrosion in distribution systems, Journal of American Water Works Association, 93, pp. 88-100.Langelier, W.F. (1936). The analytical control of anti-corrosion water treatment, Journal of the American Water Works Association, 28, pp. 1500-1521.Nowacka, A., Wlodarczyk-Makula, M., Tchorzewska-Cieslak, B. & Rak, J. (2016). The ability to remove the priority PAHs from water during coagulation process including risk assessment, Desalination Water Treatment, 57, pp. 1297-1309.Nowak, A.S. & Collins, K.R. (2013). Reliability of Structures, Taylor & Francis Group, New York 2013.Ondrejka-Harbulakova, V., Purcz, P., Estokova, A., Luptakova, A. & Repka, M. (2015). Using a statistical method for the concrete deterioration assessment in sulphate environment, Chemical Engineering Transaction, 43, pp. 2221-2226.Pietrzyk, A. & Papciak, D. (2016). Organic Matter in Natural Water - Forms of Occurring and Methods of Purifying, Czasopismo Inżynierii Lądowej, Środowiska i Architektury - Journal of Civil Engineering, Environment and Architecture, JCEEA, 63 (2/I), pp. 241-252. DOI: 10.7862/rb.2016.126Radzka, E., Rymuza, K. & Jankowska, J. (2015). The assessment of drinking water quality using zero unitarization method, Archives of Environmental Protection, 41, pp. 91-95. DOI: 10.1515/aep-2015-0043Ryznar, J. (1944). A new index for determining the amount of calcium carbonate scale formed by a water, Journal of the American Water Works Association, 36, pp. 472-486.Strohecker, R. (1936). A New Way to Determine the Aggressiveness of Water, Zeitschrift für Analytische Chemie, 107, pp. 321-328. (in Deutsch)Studziński, A. & Pietrucha-Urbanik, K. (2015). Preventive maintenance and reliability of water supply system elements, Czasopismo Inżynierii Lądowej, Środowiska i Architektury - Journal of Civil Engineering, Environment and Architecture, JCEEA, 62(3), pp. 429-436. DOI: 10.7862/rb.2015.126Suna, H. & Wanga, X. (2016). NH4 + adsorption and adsorption kinetics by sediments in a drinking water reservoir, Archives of Environmental Protection, 42, pp. 90-95. DOI: 10.1515/aep-2016-0039Tchórzewska-Cieslak, B. & Szpak, D. (2015). Proposed method of analysis and assessment of water supply safety, Ochrona Środowiska, 37(3), pp. 43-47. (in Polish)Tchorzewska-Cieslak, B. & Rak, J. (2009). Method of identification of operational states of water supply system, Conf. Proc. of 3rd Congress Environmental Engineering, Lublin, Poland, pp. 521-526.Tchorzewska-Cieslak, B., Boryczko, K. & Eid, M. (2012). Failure scenarios in water supply system by means of fault tree analysis, Advances in Safety, Reliability and Risk Management - Proceedings of the European Safety and Reliability Conference, ESREL 2011, pp. 2492-2499.Volk, C., Dundore, E., Schiermann, J. & Lechevallier, M. (2000). Practical evaluation of iron corrosion control in a drinking water distribution system, Water Resources, 34, pp. 1967-1974.Zhang, H., Tian, Y., Wan, J. & Zhao, P. (2015). Study of biofilm influenced corrosion on cast iron pipes in reclaimed water, Applied Surface Science, 357, pp. 236-247.Zhang, Y., Griffi n, A. & Edwards, M. (2010). Effect of nitrification on corrosion of galvanized iron, copper, and concrete, Journal of American Water Works Association, 102, pp. 83-93. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Archives of Environmental Protection de Gruyter

Analysis of chemical stability of tap water in terms of required level of technological safety

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de Gruyter
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2083-4810
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DOI
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ReferencesCarneiro, RN., Damiao, S. & Benoliel, M.J. (2015). Water safety plans at EPAL’s water supply system-tool to prioritize investments and mitigation actions, Water Science Technology, 15, pp. 1106-1114.Carrier Air Conditioning Company (1965). Handbook of Air Conditioning System Design, McGraw-Hill Books, New York 1965.Darvishi, G., Kootenaei, F.G., Ramezani, M., Lotfi , E. & Asgharnia, H. (2016). Comparative Investigation of River Water Quality by OWQI, NSFWQI and Wilcox Indexes (Case study: the Talar River - IRAN), Archives of Environmental Protection, 42, pp. 41-48. DOI: 10.1515/aep-2016-0005Dubiel, M., Hsu, C.H., Chien, C.C., Mansfeld, F. & Newman, D.K. (2002). Microbial iron respiration can protect steel from corrosion, Applied Environment Microbiology, 68, pp. 1440-1445.EN 12502:2006 Guidance on the assessment of corrosion likelihood in water distribution and storage systems.Ferrandez-Gamot, L., Busson, P., Blesa, J., Tornil-Sin, S., Puig, V., Eric, D. & Soldevila, A. (2015). Leak localization in water distribution networks using pressure residuals and classifiers original, Water Resources, 48, pp. 220-225.Garboś, S. & Święcicka, D. (2015). Human health risk assessment of uranium in drinking water sampled from drilled wells located in rural areas of the Lower Silesian region (Poland), Archives of Environmental Protection, 41, pp. 21-27. DOI: 10.1515/aep-2015-0014Gerke, T.L., Maynard, J.B., Schock, M.R. & Lytle, D.L. (2008). Physiochemical characterization of five iron tubercles from a single drinking water distribution system: possible new insights on their formation and growth, Corrosion Science, 50, pp. 2030-2039.Gorka, A., Papciak, D., Zamorska, J. & Antos, D. (2008). The influence of biofilm on the effectiveness of ion exchange process, Industrial & Engineering Chemistry Research, 47, pp. 7456-7464.Haibo, W., Chun, H. & Xiaoxiao, L. (2015). Characterization of biofi lm bacterial communities and cast iron corrosion in bench- -scale reactors with chloraminated drinking water, Engineering Failure Analysis, 57, pp. 423-433.Husband, P.S. & Boxall, J.B. (2011). Asset deterioration and discolouration in water distribution systems, Water Resources, 45, pp. 113-124.Kaźmierczak, B. & Wdowikowski, M. (2016). Maximum rainfall model based on archival pluviographic records - case study for Legnica (Poland), Periodica Polytechnica Civil Engineering, 60(2), pp. 305-312. DOI: 10.3311/PPci.8341Królikowska, J. (2011). Application of PHA method for assessing risk of failure on the example of sewage system in the city of Krakow, Rocznik Ochrona Srodowiska, 13, pp. 693-710.Kutylowska, M. & Orlowska-Szostak, M. (2016). Comparative analysis of water-pipe network deterioration-case study, Water Practice and Technology, 11(1), pp. 148-156.Kiedryńska, L., Papciak, D. & Granops, M. (2006). Sanitary Chemistry, Warsaw University of Life Sciences - SGGW (WULS-SGGW), Warsaw 2006. (in Polish) Lia, X., Wanga, H., Hua, C., Yanga, M., Hub, H. & Niuc, J. (2014). Characteristics of biofilms and iron corrosion scales with ground and surface waters in drinking water distribution systems, Corrosion Science, 90, pp. 331-339.McNeill, L.S. & Edwards, M. (2001). Iron pipe corrosion in distribution systems, Journal of American Water Works Association, 93, pp. 88-100.Langelier, W.F. (1936). The analytical control of anti-corrosion water treatment, Journal of the American Water Works Association, 28, pp. 1500-1521.Nowacka, A., Wlodarczyk-Makula, M., Tchorzewska-Cieslak, B. & Rak, J. (2016). The ability to remove the priority PAHs from water during coagulation process including risk assessment, Desalination Water Treatment, 57, pp. 1297-1309.Nowak, A.S. & Collins, K.R. (2013). Reliability of Structures, Taylor & Francis Group, New York 2013.Ondrejka-Harbulakova, V., Purcz, P., Estokova, A., Luptakova, A. & Repka, M. (2015). Using a statistical method for the concrete deterioration assessment in sulphate environment, Chemical Engineering Transaction, 43, pp. 2221-2226.Pietrzyk, A. & Papciak, D. (2016). Organic Matter in Natural Water - Forms of Occurring and Methods of Purifying, Czasopismo Inżynierii Lądowej, Środowiska i Architektury - Journal of Civil Engineering, Environment and Architecture, JCEEA, 63 (2/I), pp. 241-252. DOI: 10.7862/rb.2016.126Radzka, E., Rymuza, K. & Jankowska, J. (2015). The assessment of drinking water quality using zero unitarization method, Archives of Environmental Protection, 41, pp. 91-95. DOI: 10.1515/aep-2015-0043Ryznar, J. (1944). A new index for determining the amount of calcium carbonate scale formed by a water, Journal of the American Water Works Association, 36, pp. 472-486.Strohecker, R. (1936). A New Way to Determine the Aggressiveness of Water, Zeitschrift für Analytische Chemie, 107, pp. 321-328. (in Deutsch)Studziński, A. & Pietrucha-Urbanik, K. (2015). Preventive maintenance and reliability of water supply system elements, Czasopismo Inżynierii Lądowej, Środowiska i Architektury - Journal of Civil Engineering, Environment and Architecture, JCEEA, 62(3), pp. 429-436. DOI: 10.7862/rb.2015.126Suna, H. & Wanga, X. (2016). NH4 + adsorption and adsorption kinetics by sediments in a drinking water reservoir, Archives of Environmental Protection, 42, pp. 90-95. DOI: 10.1515/aep-2016-0039Tchórzewska-Cieslak, B. & Szpak, D. (2015). Proposed method of analysis and assessment of water supply safety, Ochrona Środowiska, 37(3), pp. 43-47. (in Polish)Tchorzewska-Cieslak, B. & Rak, J. (2009). Method of identification of operational states of water supply system, Conf. Proc. of 3rd Congress Environmental Engineering, Lublin, Poland, pp. 521-526.Tchorzewska-Cieslak, B., Boryczko, K. & Eid, M. (2012). Failure scenarios in water supply system by means of fault tree analysis, Advances in Safety, Reliability and Risk Management - Proceedings of the European Safety and Reliability Conference, ESREL 2011, pp. 2492-2499.Volk, C., Dundore, E., Schiermann, J. & Lechevallier, M. (2000). Practical evaluation of iron corrosion control in a drinking water distribution system, Water Resources, 34, pp. 1967-1974.Zhang, H., Tian, Y., Wan, J. & Zhao, P. (2015). Study of biofilm influenced corrosion on cast iron pipes in reclaimed water, Applied Surface Science, 357, pp. 236-247.Zhang, Y., Griffi n, A. & Edwards, M. (2010). Effect of nitrification on corrosion of galvanized iron, copper, and concrete, Journal of American Water Works Association, 102, pp. 83-93.

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Archives of Environmental Protectionde Gruyter

Published: Dec 1, 2017

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