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Multi-stage air gap membrane distillation reversal for hot impaired quality water treatment: Concept and simulation study

机译:多级气隙膜蒸馏逆转热损害质量水处理:概念与仿真研究

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摘要

The major challenge of membrane distillation (MD) is the low gain output ratio (GOR) resulting from the high thermal energy requirement and the low water production. Here, the use of hot streams such as geothermal groundwater or produced water that are suitable to be treated by MD without the need for thermal energy input is discussed. Hot groundwater from the Northwest of Himalaya, India, is used as a case study. In this paper, we propose a novel multi stage air gap MD reversal design coupled with natural/forced cooling system. A 1-D rigorous simulation model is developed to estimate the performance of the proposed system. Water production capacity and GOR of various scenarios were estimated and reported. Based on our results, the increase in temperature difference between feed and brine discharge cooled down temperature can have a positive effect to improve both water production capacity and GOR. The increase of inlet feed flow rate increases the water production but not the GOR. The influence of increasing module width on water production and GOR is negligibly small. Results showed that the maximum GOR was about 3.89 without natural (passive) cooling system. Meanwhile, when natural (90%)/forced (10%) combined cooling system was applied, a GOR as high as 24.4 could be achieved.
机译:膜蒸馏(MD)的主要挑战是由高热能要求和低水量产生的低增益输出比(GOR)。这里,讨论了使用诸如地热地下水或产生的水的热流,其适合于MD处理而不需要热能输入。来自印度喜马拉雅西北部的热门地下水被用作案例研究。在本文中,我们提出了一种新型多级气隙MD逆转设计,与天然/强制冷却系统相结合。开发了一个1-D严格的仿真模型来估计所提出的系统的性能。估计和报告了各种情景的水产能和GOR。基于我们的结果,饲料和盐水排放之间的温差的增加可以具有积极的效果,以改善水产能和GOR。入口进料流量的增加增加了水生产但不是GOR。增加模块宽度对水生产和GOR的影响是可忽略的小。结果表明,最大GOR约为3.89,没有天然(无源)冷却系统。同时,当施加天然(90%)/强制(10%)组合冷却系统时,可以实现高达24.4的GOR。

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