Please use this identifier to cite or link to this item: http://oaps.umac.mo/handle/10692.1/339
Title: Exploring The Enhanced Antifoulingefficacy Of Synthetic Membranes Embeddedwith Scale Inhibitor Material
Authors: LI, YU CHONG(李羽翀)
Department: Department of Civil and Environmental Engineering
Faculty: Faculty of Science and Technology
Issue Date: 2024
Citation: LI, Y. C. (2024). Exploring The Enhanced Antifoulingefficacy Of Synthetic Membranes Embeddedwith Scale Inhibitor Material (Outstanding Academic Papers by Students (OAPS)). Retrieved from University of Macau, Outstanding Academic Papers by Students Repository.
Abstract: Given the increasing scarcity of freshwater resources, researchers are devoting efforts into developing seawater desalination devices with improved performance and lower energy consumption. This study primarily focuses on the synthesis of a novel anti-scaling filter membrane, aiming to create a new type of membrane for application in the membrane water treatment industry. The objective of this membrane creation is to manage surface scaling, extend its lifespan, reduce maintenance expenses, and optimize economic benefits. The experiment investigates and compares the impacts of integrating various components of scale inhibitors on membrane performance. In the initial phase of the experiment, the surface characteristics of the membrane were investigated through multiple sets of water flux tests. Subsequently, a double-layered structure membrane, comprising a 200-micron thick polysulfone resin layer coated on qualitative filter paper, was selected as the base membrane for incorporating scale inhibitors. In the second phase of the experiment, which focused on determining the membrane's anti-scaling properties, both the calcium-inhibitor group and the stand-alone inhibitor group exhibited desirable anti-scaling characteristics as expected. The development of this novel anti-scaling membrane holds considerable potential for further exploration and bears long-term significance for the water quality optimization industry.
Instructor: Prof. PING ZHANG
Programme: Bachelor of Science in Civil Engineering
URI: http://oaps.umac.mo/handle/10692.1/339
Appears in Collections:FST OAPS 2024



Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.