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A new vacuum membrane distillation system using an aspirator: concept modeling and optimization

机译:使用抽气机的新型真空膜蒸馏系统:概念建模和优化

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The aim of this study is to validate and optimize a new concept of implementing an aspirator as the vacuum generator for a vacuum membrane distillation (VMD) setup. Numerical models are developed for the aspirator, and its interconnectivity with the VMD chamber is demonstrated. A correlation to estimate the minimum aspirator pump size for a given permeate mass flow is deduced from these models. The dependence of the system's specific power consumption (per unit permeate flow) on the feed flow rate, number of membrane sheets in the VMD module, and vacuum pressure is investigated. The gained output ratio (GOR) of the proposed system is comparable (GOR approximate to 0.8) to conventional single-stage VMD with a vacuum pump, if brine heat is recovered using a regenerator to preheat the incoming feed. The theoretical power requirement for a vacuum pump is lower than that used by the aspirator system, if all vapor is condensed and only non-condensable gasses are removed by the vacuum pump. At lower vapor pressures, when complete condensation is difficult, the vacuum pump power consumption is comparable to that of the aspirator system if about 60% of the vapor produced reaches the vacuum pump.
机译:这项研究的目的是验证和优化将吸气机用作真空膜蒸馏(VMD)装置的真空发生器的新概念。为抽气机开发了数值模型,并演示了其与VMD腔室的互连性。从这些模型推导相关性,以估计给定渗透物质量流量的最小吸气泵尺寸。研究了系统的特定功耗(每单位渗透流量)对进料流速,VMD模块中膜片数和真空压力的依赖性。如果使用再生器来预热进料,则盐水的热量可与采用真空泵的传统单级VMD相比,拟议系统的获得的输出比(GOR)相当(GOR约为0.8)。如果所有蒸汽都被冷凝并且真空泵仅去除了不可冷凝的气体,则真空泵的理论功率要求低于吸气系统所使用的功率。在较低的蒸汽压力下,当很难完全冷凝时,如果产生的蒸汽中约有60%到达真空泵,则真空泵的功耗可与吸气器系统相媲美。

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