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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Assessment of tap water resources quality and its potential of scale formation and corrosivity in Tafila Province,South Jordan
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Assessment of tap water resources quality and its potential of scale formation and corrosivity in Tafila Province,South Jordan

机译:南约旦塔菲拉省自来水质量评估及其规模形成和腐蚀性的潜力

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摘要

This paper discusses the concept of water quality and stability,describes various indices available to assess the scale formation (protective layer) and corrosivity of water and the methods of their calculation for different tap water resources in Tafila City,south Jordan.The saturation levels are calculated by Langelier saturation index (LSI),Ryznar stability index (RSI) and the calcium carbonate precipitation potential (CCPP).LSI values are negative and range from -0.39 to -1.5 while RSI values range from 8.7 to 9.8.CCPP values are negative and range from -1.77 to -16.76.Although these results indicate corrosion conditions,this image changes upon heating and evaporation of water with the release of CO2.Water samples exhibit high concentrations of Cl-,SO2- and HCO_3~- as the major anions and Ca2+ and Mg2+ as the major cations.Magnesium has a threshold limit of maximum CaCO3 solubility at about 0.00424 M.Microbiological tests indicate that three of the water samples (the three springs) are polluted with total and faecal coliform bacteria.Moreover,high concentration of nitrate has been detected in one of the springs.Most of the water samples have SO2-/ HCO_3~- ratio of less than 1.At least 94% of the scale composition is CaCO3 (aragonite).
机译:本文讨论了水质和稳定性的概念,描述了可用于评估约旦南部塔菲拉市不同水源水的水垢形成(保护层)和腐蚀性的各种指标及其计算方法。饱和度为由Langelier饱和指数(LSI),Ryznar稳定性指数(RSI)和碳酸钙沉淀电位(CCPP)计算得出.LSI值为负,范围为-0.39至-1.5,RSI值范围为8.7至9.8.CCPP值为负范围从-1.77到-16.76。尽管这些结果表明了腐蚀条件,但是该图像随着水的加热和蒸发随CO2的释放而变化。水样品中高浓度的Cl-,SO2-和HCO_3〜-为主要阴离子镁具有最大CaCO3溶解度的阈值极限,约为0.00424M。微生物测试表明,其中三个水样(三个泉水)粪便中的总细菌和粪便大肠菌被污染。此外,在其中一个温泉中检测到高浓度的硝酸盐。大多数水样中SO2- / HCO_3〜-的比例小于1.至少为水垢成分的94%是CaCO3(文石)。

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