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            Scaling Propensity of Water

            New Predictive Parameters

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            Author(s)
            van Raalte-Drewes, M.
            Brink, H.
            Feij, L.
            Slaats, P.
            van Soest, E.
            Vaal, P.
            Veenendaal, G.
            Language
            English
            Show full item record
            Abstract
            The commonly used Saturation Index calculated at 10°C (SI10) is not suitable for practical situations. New parameters have been developed for simple and rapid analysis of calcium carbonate precipitation (scaling) phenomena which occur during the heating of drinking water: TPCC90 (Theoretically Precipitable Calcium Carbonate at 90°C) SI90 (Saturation Index at 90°C) NI (Nucleation Index) PPCC (Practically Precipitable Calcium Carbonate) Both TPCC90 and SI90 describe the hydrodynamic driven force for the scaling reaction. The nucleation index indicates at what rate calcium carbonate precipitation is accelerated by nuclei present in the water. Finally, the PPCC is a measurement under practical conditions, determining the rate of scaling. The suitability of these parameters for predicting scaling was assessed and detailed results are presented in this publication.
            URI
            https://doab-dev.siscern.org/handle/20.500.12854/178932
            Keywords
            scaling propensity water; thema EDItEUR::P Mathematics and Science::PD Science: general issues::PDG Industrial applications of scientific research and technological innovation; thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TQ Environmental science, engineering and technology::TQS Sanitary and municipal engineering::TQSW Water supply and treatment
            DOI
            10.2166/9781780402567
            Publisher
            IWA Publishing
            Publisher website
            http://www.iwapublishing.com
            Publication date and place
            2004
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            • logo Investir l'avenirInvestir l'avenir
            • logo MESRIMESRI
            • logo EUEuropean Union
              This project received funding from the European Union’s Horizon 2020 research and innovation programme under grant agreement No 871069.

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