VINIF.2023.DA189 – Fabrication of Membrane Distilled Membrane and Development of Smart Seawater Filtration System for Coastal Communities using Integrated Membrane Distillation and Solar Energy

Principle Investigator
Assoc.Prof. Nguyen Cong Nguyen
Host Organization
Dalat University

Currently, climate change is creating many significant impacts on water resources, typically the problem of salty sea water and scarcity of fresh water leading to serious consequences. To solve the shortage of fresh water, Reverse Osmosis – RO technology is considered one of the most widely used solutions because of its high treatment efficiency. However, the biggest disadvantage of this technology is high energy consumption and frequent membrane replacement due to membrane contamination during operation. Meanwhile, the application of membrane distillation (MD) technology in treating seawater into fresh water is still limited because there is no optimal MD membrane and the system design is not highly effective. Therefore, the implementation of the project “Fabrication of Membrane Distilled Membrane and Development of Smart Seawater Filtration System for Coastal Communities using Integrated Membrane Distillation and Solar Energy” is very urgent to solve the problem of lack of fresh water for people in coastal areas, islands and on offshore fishing vessels. The outstanding advantage of this project is integrating membrane distillation technology with solar energy to help minimize energy use and aim for net-zero emission by 2050 (Cop 27, 2022).
The main goal of the research is to synthesize MD membranes that are superhydrophobic, achieve high permeation efficiency, great mechanical endurance and minimal membrane wetting. At the same time, the project focuses on designing and optimizing the parameters of a smart seawater purifier to minimize operating costs. It is hoped that the project will contribute an important part in preparing the Environmental Technology research group at Da Lat University (DLU) in developing and widely applying membrane distillation technology and sea water purifier to convert sea water into fresh water in the future.

Principle Investigator
Assoc.Prof. Nguyen Cong Nguyen
Host Organization
Dalat University

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Expect Progress
01/11/2023
01/11/2024
Phase 1

– 01 Optimal MD membrane synthesis process;
– Optimal operating parameters of the MD system: Temperature, flow rate/pressure, thickness;
– 01 Report at the International Conference;
– 01 Paper submitted to a Q1 journal.

31/12/2025
Phase 2

– Data on operating conditions and achieved water flux of the water filtration system in the laboratory;
– Dataset on design parameters and drawings of the smart seawater filtration system;
– 02 papers accepted for publication in Q1 journals;
– 01 Report at the International Conference;
– 01 Report at the Domestic Conference;
– 01 paper accepted for publication in a national journal;
– 01 Master’s student successfully defended their thesis.

31/10/2026
Phase 3

– Testing of the smart seawater filtration system with post-treatment water quality meeting QCVN 01-1:2018/BYT standards for island residents;
– Testing of the smart seawater filtration system with post-treatment water quality meeting QCVN 01-1:2018/BYT standards for coastal resorts;
– Cost comparison table for operating the smart seawater filtration system versus conventional RO filtration systems;
– 01 Paper accepted for publication in a Q1 journal;
– 01 Patent with a Decision on acceptance of the application;
– 01 Report at the International Conference;
– 01 Report at the Domestic Conference;
– 01 Book chapter published;
– 01 PhD student successfully defended their thesis.

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