Mass Transfer Analysis of Diffusion-gap Distillation
P Wang*, B C Yu, S M Xu and L Xu
Key Laboratory of Ocean Energy Utilization and Energy Conservation of Ministry of
Education, School of Energy and Power Engineering, Dalian University of
Technology, Dalian 116024, China
Corresponding author and e-mail: P Wang, wp2006@dlut.edu.cn
Abstract. Diffusion-Gap Distillation is a new type of thermal seawater desalination process,
the operation and structure are very simple. A physical model of single-stage Diffusion-Gap
desalination plant was established using MATLAB based on the theory of conservation of
heat and mass. The sensitivity of hot material temperature, cold material temperature and
flow rate were analysed. Computational results have an important influence in the design of
the model and the setting of operating conditions.
1. Introduction
There are many methods for seawater desalination, they can be divided into two categories according
to the principle of brine separation [1]. One is the thermal method, the separation is achieved by
heating or cooling to promote the mass transfer of the vapor phase, including: MED, MSF, VC,
freezing-melting, HDH etc. The other is the membrane method, by using a porous membrane to
block the passage of brine and produce fresh water, including RO and ED. Diffusion-Gap Distillation
(DGD) is a separation method developed from the air-gap membrane distillation, it can be used
widely, such as seawater desalination [2], treatment of high saltwater [3], recycle of waste water [4,
5] and so on. In the low-grade thermal power plant studied by G Han [6] and L Rui [7], membrane
distillation separation takes advantage of temperature difference to produce fresh water and provides
power for the cycle, the MD process can be completely replaced by DGD. The liquid desiccant air
conditioning system (LDAC) studied by Andrew Lowenstein [8, 9]
uses the falling film of desiccant
on the plate to absorb the water vapor in the air and the desiccant diluted regenerated by the falling
film evaporation process, It is essentially the same as the DGD separation process. In this paper,
mass and heat transfer simulation of Diffusion-Gap Distillation process was carried out according to
the principle of energy conservation. The influence of feed and coolant temperature and mass flux on
freshwater yield was analyzed.
2. Mathematical model
2.1. Physical model
Figure 1 shows a physical model of a Diffusion-Gap Distillation device. The Diffusion-Gap
Distillation device is mainly composed of two plates, they are close to each other and are placed
parallel. One of the plates is a layer of porous media and constitutes an evaporator. The other has a
Wang, P., Yu, B., Xu, S. and Xu, L.
Mass Transfer Analysis of Diffusion-gap Distillation.
In Proceedings of the International Workshop on Environmental Management, Science and Engineering (IWEMSE 2018), pages 119-124
ISBN: 978-989-758-344-5
Copyright © 2018 by SCITEPRESS – Science and Technology Publications, Lda. All rights reserved
119