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Study on zero-emission desalination system based on mechanical vapor recompression technology

机译:基于机械蒸汽再压缩技术的零排放海水淡化系统研究

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A large amount of energy is consumed during the conventional large-scale evaporation desalination system. Especially for the large seawater desalination process for generating freshwater, a large amount of rich-salt water is generated, and there exists a big risk to break the ecological balance of the surrounding waters due to the high salinity of discharged seawater. In this paper, the conventional evaporation desalination technologies are examined, and two zero-emission desalination systems based Mechanical vapor compression (MVR) technology, including a single-stage and a double-state zero-emission MVR desalination system are proposed. Via integrating the components models of the zero-emission desalination system, energy saving of the two proposed systems is investigated through comparing with the conventional evaporation desalination system under the same conditions, and then the key operation parameter of the proposed system is optimized via the pinch analysis method. Finally an energy and an exergy analysis are conducted for the proposed system to study its thermodynamic energy saving potential.
机译:在传统的大型蒸发脱盐系统期间消耗大量能量。特别是对于发电淡水的大型海水淡化过程,产生大量富含盐水,由于出院海水的高盐度,打破周围水的生态平衡存在巨大风险。在本文中,提出了传统的蒸发脱盐技术,提出了两个基于零排放脱盐系统的机械蒸汽压缩(MVR)技术,包括单级和双态零发射MVR脱盐系统。通过集成零排放脱水系统的组件模型,通过与在相同条件下的传统蒸发海水淡化系统的比较来研究两个所提出的系统的节能,然后通过夹切优化所提出的系统的关键操作参数分析方法。最后,为提出的系统进行了能量和漏洞分析,以研究其热力学节能潜力。

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