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A new process of desalination by air passing through seawater based on humidification-dehumidification process

机译:基于加湿-除湿工艺的海水通过海水淡化的新工艺

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摘要

Experimental and theoretical work investigates the principal operating parameters of a proposed desalination process working with an air humidification-dehumidification method. The main objective of this work was to determine the humid air behavior through single stage of desalination system. The experimental work studied the influence of the operating conditions such as the water temperature, the saline water level and the airflow rate on the desalination performance. The experimental results show that, the productivity of the system increases with the increase of the water temperature and the decrease of the airflow rate. The productivity of the system is moderately affected by the water temperature and airflow rate while, slightly affected by the water level. The humidifier efficiency and the thermal efficiency of the desalination system are higher for m_α = 14kg_α/h at different water temperature and level. Within the studied ranges, the maximum productivity of the system reached to 8.22 kg_w/h at 86 ℃ for water temperature and m_α = 14kg_α/h. A good agreement achieved with productivity calculations. Finally, correlation for productivity of the system deduced as function of water temperature, water level and airflow rate.
机译:实验和理论工作研究了采用空气加湿-除湿方法的脱盐工艺的主要操作参数。这项工作的主要目的是通过单级脱盐系统确定潮湿空气的行为。实验工作研究了诸如水温,盐水水位和气流速率等操作条件对脱盐性能的影响。实验结果表明,该系统的生产率随着水温的升高和气流速率的降低而提高。该系统的生产率受水温和空气流速的影响中等,而受水位的影响较小。在不同水温和水位下,m_α=14kg_α/ h时,脱盐系统的加湿器效率和热效率更高。在研究范围内,在水温为86℃且m_α=14kg_α/ h的情况下,系统的最大生产率达到8.22 kg_w / h。与生产率计算达成了良好的协议。最后,推导出系统生产率与水温,水位和气流速率之间的关系。

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