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Evaluation of a new air water generator based on absorption and reverse osmosis

机译:基于吸收和反渗透的新型空气发电机评估

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摘要

The evaluation of a new air water generator (AWG) based on absorption and reverse osmosis is described. For the evaluation, an aqueous lithium bromide solution has been selected from a wide range of liquids as the absorbent. At high salt mass fractions, the aqueous lithium bromide solution has a low vapour pressure and a high osmotic pressure. The low vapour pressure ensures that the water vapour can be absorbed from the air, but the high osmotic pressure leads to high pressures over the membrane. Due to the high osmotic pressures, several reverse osmosis membrane modules are necessary and salt solution has to be present on both sides of the membrane, which leads to an additional inlet on the permeate side. Models for the absorber, the reverse osmosis membrane module and the complete multi-stage reverse osmosis system have been developed in Python. The model of the complete system has then been used to simulate the performance of the AWG at different boundary conditions. The simulations have shown that based on the defined assumptions, extracting water from the air with absorption and reverse osmosis is possible and that the energy demand per litre of pure water is similar to AWG systems which use condensation.
机译:描述了基于吸收和反渗透的新的空气发生器(AWG)的评估。为了评价,锂溴化锂水溶液已选自宽范围的液体作为吸收剂。在高盐质量级分,溴化锂水溶液具有低蒸气压和高渗透压。低蒸汽压力确保水蒸气可以从空气中吸收,但是高渗透压导致膜上的高压。由于高渗透压,需要几个反渗透膜模块,并且必须在膜的两侧存在盐溶液,这导致渗透物侧的另外的入口。吸收剂的模型,在Python中开发了反渗透膜模块和完整的多级反渗透系统。然后,完整系统的模型已被用于模拟AWG在不同边界条件下的性能。模拟表明,基于定义的假设,可以通过吸收和反渗透从空气中提取水,并且每升纯水的能量需求类似于使用冷凝的AWG系统。

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