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Optimization of Membrane Elements' Array in Industrial Reverse Osmosis Units

机译:工业反渗透装置中膜元件阵列的优化

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It is stated that membrane elements, due to axial concentration and flow exhaustion during filtration, work in different operation conditions that differ according to various characteristics. Designing of multistage units is based on technical characteristics' identity of all membrane elements. It is explored that the difference in individual characteristics of membrane elements can take place. This can essentially affect the operation characteristics of a whole industrial unit. Particularly, it could lead to degradation of the permeate quality and the unit performance. Research on packaging the membrane elements in reverse osmosis units has shown that a simple replacement of membrane elements without the consideration of the individual characteristics can degrade the performance characteristics and affect the constancy of the unit operation. An optimization system of membrane elements' array was suggested to solve these problems and to upgrade the performance of reverse osmosis plants. The first step of the system is determination of individual characteristics of membrane elements. For the calculations using the individualized data, it is suggested to use the method of approximate calculation and the balance equations for water flows (source water, permeate, and retentate), and for the concentrations of the dissolved solids. The suggested optimization system of a membrane elements' array allowed the configuration of the membrane elements in the housings of one stage in such a way that the symmetry of the flows and of the pressure difference was achieved. The optimum value of the performance and the selectivity was achieved considering the hydraulic characteristics in one stage.
机译:据称,膜元件由于在过滤期间的轴向集中和流排出而在根据各种特性而不同的不同操作条件下工作。多级单元的设计基于所有膜元件的技术特征标识。已探索出膜元件的各个特性的差异会发生。这实际上会影响整个工业部门的运行特性。特别是,这可能导致渗透质量和单元性能下降。将膜元件包装在反渗透装置中的研究表明,在不考虑单个特性的情况下简单更换膜元件会降低性能,并影响装置运行的稳定性。为了解决这些问题并提高反渗透设备的性能,建议采用膜元件阵列的优化系统。该系统的第一步是确定膜元件的各个特性。对于使用个性化数据的计算,建议使用近似计算方法和水流(源水,渗透液和截留液)以及溶解固体浓度的平衡方程。所建议的膜元件阵列的优化系统允许将膜元件配置在一级壳体中,从而实现流动和压力差的对称性。考虑到水力特性,可以在一阶段中获得性能和选择性的最佳值。

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