Role of zinc in bulk precipitation from the steaming process of potable water

Author:

Al-Gailani AmthalORCID,Taylor Martin J.,Barker Richard

Abstract

AbstractWater chemistry plays an important role in fouling kinetics and morphology. This work investigates the influence of zinc cations in potable water, specifically the kinetics of crystallisation and their effect on the fouling layer during the operation of a batch steam generator system and a once-through flow system. The kinetics of precipitation in the batch crystalliser were examined based on the change in concentration of the foulants, while the fouling resistance approach was used in the flow system. In addition, morphological testing was carried out using Scanning Electron Microscopy, Powder X-ray Diffraction, and Energy dispersive X-ray. The findings showed that the precipitation rate of calcium carbonate decreases with the increase in zinc ions until reaching the zinc carbonate supersaturation in the water due to water evaporation. Regarding morphology, co-precipitation of zinc carbonate was observed at high zinc concentrations. As a result, a double effect was observed where zinc both retarded and enhanced fouling over time. The fouling rate in the flow system decreased as the zinc concentration increased. Zinc ions were found to influence the morphology of deposit minerals significantly. Moreover, the surface deposition of zinc salts increased with the solution content of zinc.

Publisher

Springer Science and Business Media LLC

Subject

Fluid Flow and Transfer Processes,Condensed Matter Physics

Reference17 articles.

1. Meyer H (1984) The influence of impurities on the growth rate of calcite. J Cryst Growth 66(3):639–646 (Art no)

2. Organization WH (2003) Zinc in Drinking-Water: Background Document for Development of WHO Guidelines for Drinking-Water Quality. 2003, ed

3. Coetzee P, Yacoby M, Howell S (1996) The role of zinc in magnetic and other physical water treatment methods for the prevention of scale. Water SA 22(4):319–326. https://hdl.handle.net/10520/AJA03784738_1096

4. Zachara JM, Kittrick JA, Harsh JB (1988) The mechanism of Zn2 + adsorption on calcite. Geochimica et Cosmochimica Acta 52(9):2281–2291. https://doi.org/10.1016/0016-7037(88)90130-5

5. Zeppenfeld K (2010) Prevention of CaCO3 scale formation by trace amounts of copper (II) in comparison to zinc (II). Desalination 252(1–3):60–65. https://doi.org/10.1016/j.desal.2009.10.025

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