Assessment of calculation methods for calcium carbonate saturation in drinking water for DIN 38404-10 compliance

P. D. de Moel, A. van der Helm, M. van Rijn, J. C. van Dijk, W. G. J. van der Meer
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引用次数: 29

Abstract

The new German standard on the calculation of calcite saturation in drinking water, DIN 38404-10, 2012 (DIN), marks a change in drinking water standardization from using simplified equations applicable for nomographs and simple calculators to using extensive chemical modeling requiring computer programs. The standard outlines the chemical modeling and presents a dataset with 10 water samples for validating used computer programs. The DIN standard, as well as the Standard Methods 2330 (SM) and NEN 6533 (NEN) for calculation of calcium carbonate saturation in drinking water were translated into chemical databases for use in PHREEQC (USGS, 2013). This novel approach gave the possibility to compare the calculations as defined in the standards with calculations using widely used chemical databases provided with PHREEQC. From this research it is concluded that the computer program PHREEQC with the developed chemical database din38404-10_2012.dat complies with the DIN standard for calculating Saturation Index (SI) and Calcite Dissolution Capacity (Calcitlosekapazitat) or Calcium Carbonate Precipitation Potential (CCPP). This compliance is achieved by assuming equal values for molarity as used in DIN (obsolete) and molality as used in PHREEQC. From comparison with widely used chemical databases it is concluded that the use of molarity limits the use of DIN to a maximum temperature of 45 °C. For current practical applications in water treatment and drinking water applications, the PHREEQC database stimela.dat was developed within the Stimela platform of Delft University of Technology. This database is an extension of the chemical database phreeqc.dat and thus in compliance with SM. The database stimela.dat is also applicable for hot and boiling water, which is important in drinking water supply with regard to scaling of calcium carbonate in in-house drinking water practices. SM and NEN proved to be not accurate enough to comply with DIN, because of their simplifications. The differences in calculation results for DIN, SM and NEN illustrate the need for international unification of the standard for calcium carbonate saturation in drinking water.
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饮用水中碳酸钙饱和度计算方法的评估符合DIN 38404-10
关于饮用水中方解石饱和度计算的新德国标准DIN 38404- 10,2012 (DIN)标志着饮用水标准化的变化,从使用适用于nomographs和简单计算器的简化方程到使用需要计算机程序的广泛化学建模。该标准概述了化学建模,并提供了一个包含10个水样的数据集,用于验证使用过的计算机程序。DIN标准以及用于计算饮用水中碳酸钙饱和度的标准方法2330 (SM)和NEN 6533 (NEN)被翻译成PHREEQC中使用的化学数据库(USGS, 2013)。这种新颖的方法可以将标准中定义的计算与PHREEQC提供的广泛使用的化学数据库的计算进行比较。研究结果表明,PHREEQC计算机程序与开发的化学数据库din38404-10_2012.dat符合DIN计算饱和指数(SI)和方解石溶解容量(Calcitlosekapazitat)或碳酸钙沉淀电位(CCPP)的标准。通过假设DIN(已过时)中使用的摩尔浓度与PHREEQC中使用的摩尔浓度相等,可以实现这一一致性。通过与广泛使用的化学数据库的比较,得出结论,使用摩尔浓度限制了DIN的使用,最高温度为45°C。针对目前在水处理和饮用水应用中的实际应用,PHREEQC数据库Stimela .dat是在代尔夫特理工大学的Stimela平台上开发的。该数据库是化学数据库phreeqc.dat的扩展,因此符合SM。数据库stimela.dat也适用于热水和沸水,这在饮用水供应中很重要,因为在室内饮用水实践中碳酸钙结垢。SM和NEN被证明不够精确,不能符合DIN,因为它们简化了。DIN、SM和NEN计算结果的差异说明了饮用水中碳酸钙饱和度的国际统一标准的必要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Drinking Water Engineering and Science
Drinking Water Engineering and Science Environmental Science-Water Science and Technology
CiteScore
3.90
自引率
0.00%
发文量
3
审稿时长
40 weeks
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