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Optimization Study of Small-Scale Solar Membrane Distillation Desalination Systems (s-SMDDS)

机译:小型太阳能膜蒸馏淡化系统(s-SMDDS)的优化研究

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Membrane distillation (MD), which can utilize low-grade thermal energy, has been extensively studied for desalination. By incorporating solar thermal energy, the solar membrane distillation desalination system (SMDDS) is a potential technology for resolving energy and water resource problems. Small-scale SMDDS (s-SMDDS) is an attractive and viable option for the production of fresh water for small communities in remote arid areas. The minimum cost design and operation of s-SMDDS are determined by a systematic method, which involves a pseudo-steady-state approach for equipment sizing and dynamic optimization using overall system mathematical models. Two s-SMDDS employing an air gap membrane distillation module with membrane areas of 11.5 m2 and 23 m2 are analyzed. The lowest water production costs are $5.92/m3 and $5.16/m3 for water production rates of 500 kg/day and 1000 kg/day, respectively. For these two optimal cases, the performance ratios are 0.85 and 0.91; the recovery ratios are 4.07% and 4.57%. The effect of membrane characteristics on the production cost is investigated. For the commercial membrane employed in this study, the increase of the membrane mass transfer coefficient up to two times is beneficial for cost reduction.
机译:可以利用低级热能的膜蒸馏(MD)已进行了广泛的脱盐研究。通过整合太阳能,太阳能膜蒸馏淡化系统(SMDDS)是解决能源和水资源问题的一项潜在技术。小型SMDDS(s-SMDDS)是为偏远干旱地区的小型社区生产淡水的一种有吸引力且可行的选择。 s-SMDDS的最低成本设计和操作是通过系统方法确定的,其中涉及使用整体系统数学模型对设备进行尺寸调整和动态优化的伪稳态方法。分析了采用气隙膜蒸馏模块的两个s-SMDDS,膜面积分别为11.5 m2和23 m2。对于500公斤/天和1000公斤/天的水生产率,最低的水生产成本分别为5.92美元/立方米和5.16美元/立方米。对于这两种最佳情况,性能比分别为0.85和0.91;回收率分别为4.07%和4.57%。研究了膜特性对生产成本的影响。对于本研究中使用的商用膜,将膜传质系数提高至两倍是有利于降低成本的。

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