Wang Jiaying, Tao Tao, Yan Hexiang
College of Environmental Science and Engineering, Tongji University, Shanghai 200092, China.
Int J Environ Res Public Health. 2017 Jun 19;14(6):660. doi: 10.3390/ijerph14060660.
In order to describe iron stability in plastic pipes and to ensure the drinking water security, the influence factors and rules for iron adsorption and release were studied, dependent on the Unplasticized poly (vinyl chloride) (PVC-U) drinking pipes employed in this research. In this paper, sulfate, chloride, and bicarbonate, as well as synthesized models, were chosen to investigate the iron stability on the inner wall of PVC-U drinking pipes. The existence of the three kinds of anions could significantly affect the process of iron adsorption, and a positive association was found between the level of anion concentration and the adsorption rate. However, the scaling formed on the inner surface of the pipes would be released into the water under certain conditions. The Larson Index (LI), used for a synthetic consideration of anion effects on iron stability, was selected to investigate the iron release under multi-factor conditions. Moreover, a well fitted linear model was established to gain a better understanding of iron release under multi-factor conditions. The simulation results demonstrated that the linear model was better fitted than the LI model for the prediction of iron release.
为了描述塑料管道中铁的稳定性并确保饮用水安全,本研究以未增塑聚氯乙烯(PVC-U)饮用水管为研究对象,研究了铁吸附和释放的影响因素及规律。本文选择硫酸根、氯离子、碳酸氢根以及合成模型来研究PVC-U饮用水管内壁上铁的稳定性。这三种阴离子的存在会显著影响铁的吸附过程,且发现阴离子浓度水平与吸附速率呈正相关。然而,管道内表面形成的水垢在一定条件下会释放到水中。选用用于综合考虑阴离子对铁稳定性影响的拉森指数(LI)来研究多因素条件下的铁释放情况。此外,建立了拟合良好的线性模型,以便更好地理解多因素条件下的铁释放情况。模拟结果表明,对于铁释放的预测,线性模型比LI模型拟合得更好。