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A time-dependent model of pressure drop in reverse osmosis spiral wound membrane modules

机译:反渗透螺旋卷绕膜模块中的时间依赖性压降模型

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Reverse osmosis (RO) is the leading technology in desalination for both, brackish and seawater. Modeling RO process is a complex task as there are a high dependence on the operating conditions and feedwater characteristics. One of the main drawbacks of this technology is the performance decay due to fouling impact. Usually, fouling make the pressure drop to increase. This increase has not been reflected in the proposed models in RO process. The aim of this work was to proposed a time-dependent model for the pressure drop in RO process. For this purposes long-term experimental data of two full-scale brackish water RO desalination plants with two stages each were used. The first desalination plant was operating along 11 years in continuous regime while the second desalination plant was in operation during 14 years in intermittent regime. In the first desalination plant, the pressure drop ranges were 75-250 kPa and 25-150 kPa in the first and second stage respectively while in the second desalination plant were 50-200 kPa and 20-125 kPa. The behavior of the experimental data in both cases was close to an exponential function. The mentioned function was fitted in time domain using the standard deviation as error function.
机译:反渗透(RO)是咸水和海水淡淡的领先技术。建模RO过程是一个复杂的任务,因为对操作条件和给水特性有很高的依赖性。这项技术的主要缺点之一是由于污垢的影响,性能衰变。通常,污垢使压降增加增加。这种增加尚未反映在RO过程中的拟议模型中。这项工作的目的是提出了一个时间依赖的RO过程压力下降模型。为此目的,使用两个全级咸水水Ro脱盐植物的长期实验数据,每个阶段都被使用。第一次海水淡化厂在连续政权中运作11年,而第二脱水厂在14年间歇性制度下运作。在第一种脱盐厂中,在第二淀粉厂分别分别在第一和第二阶段为75-250kPa和25-150kPa,分别为50-200kPa和20-125kPa。两种情况下的实验数据的行为接近指数函数。使用标准偏差作为误差函数,在时域中安装了所提到的函数。

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