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Vacuum desalination for water purification using waste heat

机译:真空脱盐,利用余热净化水

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Vacuum desalination is a process by which water is vaporized at a lower temperature when subjected to vacuum pressure. The heat energy requirement for desalination using a distillation process can be brought down by reducing the boiling temperature. The boiling temperature of seawater can be lowered to as low as 400℃ by the creation of a vacuum. Using waste heat from a steam turbine, a pilot study was conducted in the laboratory to investigate the feasibility of using a vacuum desalination process for water supply. The treatment system is designed to minimize the heat requirement. Initially, the seawater is converted to a wet steam in a saturated vapour heater. This vapour heater receives heat from the superheated steam which is due for condensation. The dry component of the wet steam is heated to superheated condition by a superheated vapour heater. This superheated vapour heater receives heat from the waste heat from a steam turbine. Superheated vapour is used to covert incoming seawater to wet steam and then be condensed as the product of the system for potable use. The investigation shows that a vacuum desalination system using turbine exhaust waste steam is possible and has several advantages. Seawater can be boiled at a lower temperature and thus save in energy consumption. Based on experimental results, water boils at 40-90℃ at the corresponding vacuum pressure of 0.1-0.7 bar, respectively. The consumption of heat from the waste steam is minimized as the superheated vapour is used to heat the influent seawater. Most of the heat from the waste heat is required to compensate for the heat losses in the system. The energy efficiency of the system depends very much on decreasing the heat losses from the system. It is possible to use nonconventional energy sources such as lower pressure waste steam for vacuum desalination. Hard scale formation in the system can be minimized as scale forming is the major problem in a high temperature distillation process. The qualities of distillates are excellent.
机译:真空脱盐是在受到真空压力时使水在较低温度下蒸发的过程。通过降低沸腾温度可以降低使用蒸馏方法进行脱盐的热能需求。产生真空可以使海水的沸腾温度降低到400℃。利用蒸汽轮机的余热,在实验室中进行了一项初步研究,以研究使用真空脱盐工艺供水的可行性。该处理系统旨在最大程度地降低热量需求。最初,海水在饱和蒸汽加热器中转化为湿蒸汽。该蒸气加热器从过热蒸汽接收由于冷凝而产生的热量。湿蒸汽的干燥成分被过热蒸汽加热器加热到过热状态。该过热蒸汽加热器从蒸汽轮机的废热中吸收热量。过热蒸汽用于将进入的海水转化成湿蒸汽,然后冷凝为系统的产品,以供饮用。研究表明,使用涡轮机排出的废蒸汽的真空脱盐系统是可能的,并且具有多个优点。海水可以在较低的温度下煮沸,从而节省能源消耗。根据实验结果,水分别在40-90℃和0.1-0.7 bar的相应真空压力下沸腾。由于将过热蒸汽用于加热流入的海水,因此将废蒸汽中的热量消耗降至最低。废热中的大部分热量都需要补偿系统中的热量损失。系统的能源效率在很大程度上取决于减少系统的热损失。可以使用非常规能源,例如低压废蒸汽进行真空脱盐。由于在高温蒸馏过程中结垢是主要问题,因此可以使系统中的硬结垢最小化。馏出物的品质极好。

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