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Water desalination by solar powered electrodialysis process

机译:太阳能电渗析工艺对水进行脱盐

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Solar energy is a clean source of energy that is available in all regions of the world. Bahrain, where the present research was conducted, is rich in solar energy expressed as hours of sunshine which ranges between 13 h per day in the summer months to 10 h per day in the winter months. Water desalination by solar energy can be effectively achieved by using an electrodialysis process operated with photovoltaic cells. This method is attractive because electrodialysis requires a D.C. power supply as the driving force for removing the salt ions. This experimental work involved a small-scale commercial-type electrodialysis stack powered by photovoltaic cells. The stack consisted of 24 cell pairs, arranged in four hydraulic stages and two electrical stages. The feed water was fed from two sources, the first being sodium chloride solutions prepared in the laboratory and the second was groundwater of medium salinity. The experiments were done at temperatures ranging from 10 to 40℃ and product flow rates ranging from 50 to 300 gallons/day. Increasing the flow rate resulted in lower product quality given in terms of percent salt removal. Increasing the temperature generally resulted in better product quality.
机译:太阳能是一种清洁的能源,可在世界各地使用。进行本研究的巴林拥有丰富的太阳能,以日照时数表示,日照时间从夏季的每天13小时到冬季的每天10小时。通过使用对光伏电池进行操作的电渗析工艺,可以有效地实现太阳能对水的脱盐。该方法之所以具有吸引力,是因为电渗析需要直流电源作为去除盐离子的驱动力。这项实验工作涉及由光伏电池供电的小型商业型电渗析堆。该电池堆由24个电池对组成,分为四个液压级和两个电气级。进料水有两种来源,第一种是实验室制备的氯化钠溶液,第二种是中等盐度的地下水。实验是在10至40℃的温度和50至300加仑/天的产品流量范围内进行的。以除盐百分数表示,增加流速会导致产品质量下降。温度升高通常导致更好的产品质量。

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