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A cost-effective steam-driven RO plant for brackish groundwater

机译:具有成本效益的蒸汽驱动反渗透设备,用于处理微咸的地下水

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摘要

Desalination is a costly means of providing freshwater. Most desalination plants use either reverse osmosis (RO) or thermal distillation. Both processes have drawbacks: RO is efficient but uses expensive electrical energy; thermal distillation is inefficient but uses less expensive thermal energy. This work aims to provide an efficient RO plant that uses thermal energy. A steam-Rankine cycle has been designed to drive mechanically a batch-RO system that achieves high recovery, without the high energy penalty typically incurred in a continuous-RO system. The steam may be generated by solar panels, biomass boilers, or as an industrial by-product. A novel mechanical arrangement has been designed for low cost, and a steam-jacketed arrangement has been designed for isothermal expansion and improved thermodynamic efficiency. Based on detailed heat transfer and cost calculations, a gain output ratio of 69-162 is predicted, enabling water to be treated at a cost of 71 Indian Rupees/m(3) at small scale. Costs will reduce with scale-up. Plants may be designed for a wide range of outputs, from 5 m(3)/day, up to commercial versions producing 300 m(3)/day of clean water from brackish groundwater. (C) 2016 Elsevier B.V. All rights reserved.
机译:淡化是提供淡水的昂贵方法。大多数海水淡化厂都使用反渗透(RO)或热蒸馏。两种方法都有缺点:RO效率高,但使用昂贵的电能;热蒸馏效率低下,但消耗的热能便宜。这项工作旨在提供一种利用热能的高效反渗透设备。蒸汽朗肯循环设计用于机械驱动间歇式反渗透系统,该系统可实现高回收率,而不会出现连续反渗透系统通常会产生的高能量损失。蒸汽可以由太阳能电池板,生物质锅炉产生,也可以作为工业副产品产生。设计了一种新颖的机械装置以降低成本,并设计了一种带有蒸汽夹套的装置以实现等温膨胀并提高了热力学效率。根据详细的热传递和成本计算,预测的输出比为69-162,使小规模处理水的成本为71印度卢比/ m(3)。随着规模的扩大,成本将降低。可以将工厂设计为多种输出,从5 m(3)/天,到商业版本,从咸淡的地下水中产生300 m(3)/天的净水。 (C)2016 Elsevier B.V.保留所有权利。

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