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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Pilot studies on synergetic impacts of energy utilization in hybrid desalination system: Multi-effect distillation and adsorption cycle (MED-AD)
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Pilot studies on synergetic impacts of energy utilization in hybrid desalination system: Multi-effect distillation and adsorption cycle (MED-AD)

机译:杂交脱盐系统能源利用协同影响的试验研究:多效蒸馏和吸附循环(MED-AD)

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The hybridization of desalination processes is one of the most promising technologies to overcome the current limitations of desalination technologies while maximizing the advantages of individual processes in practice. Multi-effect distillation (MED) and adsorption desalination (AD) hybrid desalination process has been investigated in this study to maximize the utilization of energy input in desalination. Two different thermal desalination technologies have been integrated, and the synergetic impact of utilizing energy enhanced the performance of the hybrid system. The synergetic thermodynamic model has been developed in this study and the experimental results from the pilot unit, with a nominal production capacity of 10 m(3)/day, installed at KAUST, KSA have been affirmed the proposed model. Both the water production and the universal performance ratio (UPR) have been improved 2-5 times in different quality of the heat source (40-60 degrees C) to the MED. Moreover, the MED-AD hybrid process is enabled to scavenge the energy from the ambient temperature below 30 degrees C for the desalination. The utilized energy of both thermal and flash evaporation in all operation conditions, and individual effects has been inventoried to analyze the thermodynamic synergy of the hybridization. In the sole MED operations, the energy input in the first effect is carried over to the following effects, and part of it is used for thermal evaporation. However, due to the AD driven flash evaporation, the energy used in evaporation of the following effect is shown greater than the previous effect. The developed synergetic model of MED-AD hybrid system and its experiment with 4-effects MED pilot have demonstrated the potential of the hybrid system and its application to the industrial processes.
机译:脱盐过程的杂交是最有希望的技术之一,克服了脱盐技术的当前限制,同时在实践中最大化各个过程的优势。在该研究中研究了多效蒸馏(MED)和吸附脱盐(AD)杂化脱盐过程,以最大限度地利用脱盐中的能量输入。已经整合了两种不同的热脱盐技术,利用能量的协同影响提高了混合系统的性能。在本研究中开发了协同热力学模型,试点单元的实验结果,标称生产能力为10米(3)/天,安装在KAURY,KSA已肯定了拟议的模型。水产量和普遍的绩效比(UPR)均以热源(40-60摄氏度)的不同质量提高2-5倍。此外,可以使MED-AD杂交过程能够从低于30摄氏度的环境温度下释放能量以进行脱盐。在所有操作条件下,热和闪光蒸发的利用能量,以及各个效果已经清除了分析杂交的热力学协同作用。在唯一的MUD操作中,第一效果中的能量输入被携带到以下效果,并且其一部分用于热蒸发。然而,由于AD驱动的闪光蒸发,蒸发的能量显示出以下效果大于先前的效果。 MED-AD混合系统的发达的协同模型及其4次效果MUD PEROT的实验表明了混合动力系统的潜力及其在工业过程中的应用。

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