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Adsorption assisted double stage cooling and desalination employing silica gel plus water and AQSOA-Z02+water systems

机译:采用硅胶加水和AQSOA-Z02 +水系统的吸附辅助双级冷却和脱盐

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摘要

We have presented adsorption assisted cooling and desalination employing zeolites and silica gel as adsorbents and water as adsorbate for useful cooling effects at the evaporator and the desalination effects at the condenser. Since the conventional adsorption cooling system works at low evaporator pressure, only a small portion of the adsorption capacity is used for water production. To overcome these limitations, we have modelled and simulated a cooling cum desalination system, where the adsorption cooling system (stage-1) is amalgamated with the adsorption desalination system (stage-2). Therefore, the overall performance is improved by heat recovery between the condenser and the evaporators of both cycles. The simulation results are presented in terms of specific cooling power (SCP), specific daily water production (SDWP), coefficient of performance (COP), performance ratio (PR) and overall conversion ratio (OCR). These results are also compared with experimental data. It is found that the adsorption beds of cooling cycle should be housed with AQSOA-Z02 zeolites for more cooling capacity, whereas the sorption elements of desalination cycle are fabricated with silica gels for more SDWP. The proposed system produces 26% more water and 45% more cooling capacity as compared with conventional equivalent adsorption cooling and desalination systems. (c) 2016 Elsevier Ltd. All rights reserved.
机译:我们已经提出了使用沸石和硅胶作为吸附剂,以水作为被吸附物的吸附辅助的冷却和脱盐方法,以实现在蒸发器上的有用冷却效果和在冷凝器上的脱盐效果。由于常规的吸附冷却系统在较低的蒸发器压力下工作,因此仅一小部分吸附能力用于水生产。为了克服这些限制,我们对冷却兼脱盐系统进行了建模和仿真,在该系统中,吸附冷却系统(阶段1)与吸附脱盐系统(阶段2)合并在一起。因此,通过两个循环的冷凝器和蒸发器之间的热回收来改善整体性能。以比冷却功率(SCP),比每日生产水量(SDWP),性能系数(COP),性能比(PR)和总转化率(OCR)的形式给出了模拟结果。这些结果也与实验数据进行了比较。发现冷却循环的吸附床应装有AQSOA-Z02沸石以提高冷却能力,而脱盐循环的吸附元件应由硅胶制成以提高SDWP。与传统的等效吸附式冷却和脱盐系统相比,拟议的系统产生的水量增加了26%,冷却能力增加了45%。 (c)2016 Elsevier Ltd.保留所有权利。

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