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首页> 外文期刊>Separation and Purification Technology >Renewable energy powered membrane technology: Case study of St. Dorcas borehole in Tanzania demonstrating fluoride removal via nanofiltration/reverse osmosis
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Renewable energy powered membrane technology: Case study of St. Dorcas borehole in Tanzania demonstrating fluoride removal via nanofiltration/reverse osmosis

机译:可再生能源动力膜技术:坦桑尼亚St. Dorcas钻孔案例研究,展示了通过纳滤/反渗透去除氟

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摘要

A brackish borehole located at a rural school in northern Tanzania contains excessive salinity (TDS = 3632 mg/L) and fluoride concentration (F- = 47.6 mg/L). This field study evaluated the feasibility of a solar-powered nanofiltration/reverse osmosis (NF/RO) system in treating this brackish water to make it potable. Key performance parameters such as permeate productivity, fluoride retention and specific energy consumption (SEC) were compared among four different NF/RO membrane modules (BW30, BW30-LE, NF90, and NF270). The NF90 membrane exhibited the best overall performance, balancing permeate productivity and quality, with 1582 L of clean drinking water being produced with an average SEC of 1.6 kWh/m(3) over a solar day, while the NF270 could not meet the guideline values for fluoride. Further, the impact of fluctuating solar energy on system performance was studied. Very brief periods of heavy cloud cover in the afternoon affected transmembrane pressure and feed flow, and thus caused the permeate quality to temporarily exceed the guideline values. However, when considering that the permeate was stored in a product tank and was produced over the whole solar day, the system equipped with the NF90 membrane was able to produce high-quality drinking water that, on average, easily meets the guideline values despite the energy fluctuations. (C) 2016 Elsevier B.V. All rights reserved.
机译:位于坦桑尼亚北部一所乡村学校的微咸钻孔含盐度过高(TDS = 3632 mg / L)和氟化物浓度过高(F- = 47.6 mg / L)。这项现场研究评估了太阳能纳滤/反渗透(NF / RO)系统在处理微咸水使其可饮用时的可行性。在四个不同的NF / RO膜组件(BW30,BW30-LE,NF90和NF270)之间比较了关键性能参数,例如渗透生产率,氟化物保留量和比能耗(SEC)。 NF90膜表现出最佳的整体性能,在渗透生产力和质量之间取得平衡,在一个太阳日生产了1582 L的纯净饮用水,平均SEC为1.6 kWh / m(3),而NF270无法达到指导值用于氟化物。此外,研究了太阳能波动对系统性能的影响。下午很短的一段时间,厚厚的云层影响跨膜压力和进料流量,从而导致渗透物质量暂时超过指导值。但是,当考虑到渗透液存储在产品罐中并在整个太阳日内生产时,配备NF90膜的系统能够生产出高质量的饮用水,尽管如此,该饮用水平均仍很容易达到指导值。能量波动。 (C)2016 Elsevier B.V.保留所有权利。

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