Study and Proposal for a Hyperfluorinated Brackish Water Treatment System in the Fatick Region, Case of Diouroup (Senegal)

A. Ly, D. Gassama, B. Ngom, Famara Seydi Ba, S. Tamba
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Abstract

Groundwater is the main resource for human consumption in many countries, especially in developing countries. This groundwater is often brackish and hyperfluorinated, which leads to diseases such as dental and bone fluoro-sis, etc. The water from the Diouroup water drainage facilities, like those from many other water drainage facilities in the regions of Fatick, Kaolack, Diourbel and the area of Touba, is facing this problem. To solve these problems, several physicochemical and membrane methods have been imple-mented. In this work we have briefly outlined some of these methods and we have chosen one of them, low pressure reverse osmosis. In addition, this technique is very simple to operate and maintain. Reverse osmosis provides good quality water in a single step, without the need for additional steriliza-tion or remineralization treatments. We then carried out simulations with the Reverse Osmosis System Analysis (ROSA) software. For reasonable operating parameters, we have noticed a low feed pressure of 11.58 bars, a good average flow of raw water of 27.79 L/m 2 /h and a recovery rate of the first pass of 75.01%. The results obtained also showed a good quality of the permeate which respects the recommendations of the World Health Organiza-tion (WHO) on drinking water. The fluorides of 0.59 mg/L have a recovery rate of 90.8% while the chlorides of 59.09 mg/L have a recovery rate of 92.12% as for the Total Dissolved Solids of 184.90 mg/L for an abatement of 92%. Fi-nally, the low energy consumption of the process makes it possible to consid-er it in coupling with an electric supply by photovoltaic solar collectors for isolated sites.
法蒂克地区高氟咸淡水处理系统的研究与建议,以塞内加尔迪乌鲁为例
在许多国家,特别是在发展中国家,地下水是人类消费的主要资源。这种地下水往往是微咸和高氟化的,从而导致诸如牙齿和骨骼氟中毒等疾病。来自Diouroup排水设施的水,就像来自Fatick、Kaolack、Diourbel和Touba地区的许多其他排水设施的水一样,面临着这个问题。为了解决这些问题,采用了几种物理化学和膜法。在这项工作中,我们简要概述了其中的一些方法,我们选择了其中的一种,低压反渗透。此外,该技术操作和维护非常简单。反渗透在一个步骤中提供高质量的水,而不需要额外的灭菌或再矿化处理。然后我们用反渗透系统分析(ROSA)软件进行了模拟。通过合理的操作参数,我们注意到进料压力较低,为11.58 bar,原水平均流量为27.79 L/ m2 /h,一次回收率为75.01%。所获得的结果还表明,该渗透液的质量良好,符合世界卫生组织(世卫组织)关于饮用水的建议。总溶解固形物浓度为184.90 mg/L时,氟化物浓度为0.59 mg/L的回收率为90.8%,氯化物浓度为59.09 mg/L的回收率为92.12%,回收率为92%。最后,该过程的低能耗使得可以考虑将其与隔离地点的光伏太阳能集热器的电力供应结合起来。
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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