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Renewable energy powered membrane technology: Experimental investigation of system performance with variable module size and fluctuating energy

机译:可再生能源膜技术:可变模块尺寸和波动能量系统性能的实验研究

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Integration of renewable energy and membrane filtration technologies such as nanofiltration (NF) and reverse osmosis (RO) can provide drinking water in places where freshwater is scarce and grid electrical connections are unavailable. This study investigated a directly-connected photovoltaic-powered membrane system under fluctuating solar conditions. Specifically, two configurations of NF/RO membranes with the same membrane area were investigated: a) 1 x 4 '' module, which contained one 4 '' NF/RO element; and b) 3 x 2.5 '' module, which contained three 2.5 '' NF/RO elements in series. A high fluoride brackish water ([F-] = 56.2 mg/L, total dissolved solids [TDS] = 4076 mg/L) collected from northern Tanzania was treated by different membranes in the two configurations. Performance indicators such as flux, specific energy consumption, and permeate F- concentration were monitored over a 60-min period of energy fluctuation that are part of a typical solar day. The results showed that the overall performance of the 1 x 4 '' module was superior to that of the 3 x 2.5 '' module. This is because the performance of a 3 x 2.5 '' module degraded significantly from the first element to the third element due to the increased feed concentration and the decreased net driving pressure. Three 1 x 4 '' modules (BW30, BW3OLE and NF90) and one 3 x 2.5 '' module (BW30) were able to meet the drinking water guideline for fluoride. During cloud periods, the transient permeate F- concentration exceeded the guideline value due to insufficient power, however the cumulative permeate F- concentration was always well below the guideline. The photovoltaic-powered membrane system equipped with the above modules provides a promising solution for addressing drinking water problems in remote and rural areas.
机译:可再生能源和膜过滤技术(如纳滤(NF)和反渗透(RO)的整合可以在淡水稀缺的地方提供饮用水,并且电网电连接不可用。该研究在波动太阳能条件下调查了一种直接连接的光伏动力膜系统。具体地,研究了具有相同膜面积的NF / RO膜的两种配置:a)1×4'模块,其包含一个4'NF / RO元件; B)3 x 2.5'模块,其中包含三个2.5'NF / RO元素。通过两种配置中的不同膜处理从坦桑尼亚北部收集的高氟化物薄荷([F-] = 56.2mg / L,总溶解固体[TDS] = 4076mg / L)。在60分钟的能量波动期间监测助焊剂,特定能耗和渗透F-浓度等性能指标在典型的太阳日的一部分。结果表明,1×4'模块的总体性能优于3×2.5'模块的整体性能。这是因为3×2.5'模块的性能由于增加的饲料浓度和降低的净驱动压力而从第一元件到第三元件的性能显着降低。三个1 x 4'模块(BW30,BW3OLE和NF90)和一个3 x 2.5'模块(BW30)能够满足氟化物的饮用水指南。在云期间,由于功率不足,瞬态渗透F-浓度超过了准则值,但累积渗透F-浓度总是远低于指南。配备上述模块的光伏动力膜系统为解决遥远和农村地区的饮用水问题提供了有希望的解决方案。

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