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Economic performance of membrane distillation configurations in optimal solar thermal desalination systems

机译:最优太阳能热脱盐系统中膜蒸馏配置的经济性能

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In this study we provide a comprehensive evaluation of the economic performance and viability of solar membrane distillation(MD).To achieve this goal,process models based on mass and energy balances were used to find the minimum cost of water in MD systems.Three MD configurations: direct contact,sweeping gas,and vacuum MD,were compared in terms of economic cost and energy requirements in optimized,solar-driven desalination systems constrained to produce 10 m~3 d~(-1)of distillate from 3.5% or 15% salinity water.Simulation results were used to calculate the water production cost as a function of 13 decision variables,including equipment size and operational variables.Non-linear optimization was performed using the particle swarm algorithm to minimize water production costs and identify optimal values for all decision variables.Results indicate that vacuum MD outperforms alternative MD configurations both economically and energetically,desalting water at a cost of less than $15 per cubic meter of product water(both initial salt levels).The highest fraction of total cost for all configurations at each salinity level was attributed to the solar thermal collectors-approximately 25% of the total present value cost.Storing energy in any form was economically unfavorable; the optimization scheme selected the smallest battery and hot water tank size allowed.Direct contact MD consumed significantly more energy(primarily thermal)than other MD forms,leading to higher system economic costs as well.
机译:在这项研究中,我们提供了对太阳能膜蒸馏(MD)的经济性能和可行性的全面评估。要实现这一目标,基于质量和能量余额的过程模型用于找到MD Systems中的最低水成本.Hthee MD配置:在优化的经济成本和能源要求方面比较直接接触,扫气和真空MD,在优化的太阳能脱盐系统中受到约束,以产生10m〜3 d〜(-1)馏分从3.5%或15产生%盐水。仿效结果用于计算水资源生产成本作为13个决策变量的函数,包括设备尺寸和操作变量。使用粒子群算法进行了NON-LINEAR优化,以最小化水资源生产成本并确定最佳值所有决策变量。结果表明,真空MD优于经济和精力地,脱盐水的替代MD配置,脱盐水的成本低于每立方数15美元产品水米(初始盐水平)。每个盐度级别的所有配置的总成本的最高分数归因于太阳能热收集器 - 大约25%的总价值成本。以任何形式的能量在经济上是不利的;优化方案选择了最小的电池和热水箱尺寸.Direct接触MD比其他MD形式更高的能量(主要是热),导致更高的系统经济成本。

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