Organosilica Multichannel Membranes Prepared by Inner Coating Method Applied for Brackish Water Desalination
-
Published:2022-03-31
Issue:
Volume:1057
Page:136-143
-
ISSN:1662-9752
-
Container-title:Materials Science Forum
-
language:
-
Short-container-title:MSF
Author:
Aliah 1, Elma Muthia1ORCID, Nata Iryanti F.1, Maulida Noor Aisya1, Fitriah Siti Humaeroh1, Rampun Erdina Lulu Atika1, Rahma Aulia1
Affiliation:
1. Lambung Mangkurat University
Abstract
A sol-gel method has been widely utilized for membrane fabrication due to low temperatures requirement and high purity. In the application of potable water production, membrane technology also plays an important role applied for brackish water treatment. This study aims to develop a multichannel membrane through an inner coating method and then to demonstrate the membrane performance for brackish water desalination. Two type of organosilica multichannel membranes were fabricated by mixing TEOS as a silica precursor using citric acid catalyst via sol-gel method and pectin as carbon templated. The multichannel membranes were inner-coated up 4 layers and calcined at 175 °C for organosilica multichannel membrane and 300 °C for silica-pectin multichannel membranes in vacuum condition. From FTIR results indicated that organosilica and silica-pectin multichannel membranes show siloxane (Si-O-Si), silanol (Si-OH) and silica-carbon (Si-C) groups. In addition, the organosilica multichannel membrane performed the water flux of 15.74 kg.m-2.h-1and salt rejection of 99.77%, where the silica pectin multichannel membrane performed the lower performance compare to organosilica multichannel membrane (water flux: 11.44 kg.m-2.h-1 and salt rejection: 99.48%). In conclusion, the organosilica multichannel membrane derived from citric acid as catalyst has a better performance compare to organosilica multichannel membrane derived from pectin applied for brackish water treatment. Keywords: organosilica multichannel membrane, inner coating, brackish water treatment
Publisher
Trans Tech Publications, Ltd.
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference37 articles.
1. Y. Zhou et al., Membrane potential modulates plasma membrane phospholipid dynamics and K-Ras signaling,, Science, vol. 349, no. 6250, pp.873-876, (2015). 2. E. Pradhana et al., The Functionalization Study of PVDF/TiO2 Hollow Fibre Membranes Under Vacuum Calcination Exposure,, in Journal of Physics: Conference Series, 2021, vol. 1912, no. 1: IOP Publishing, p.012035. 3. E.L.A. Rampun, M. Elma, A. Rahma, and A.E. Pratiwi, Interlayer-free silica–pectin membrane for sea-water desalination,, Membrane Technology, vol. 2019, no. 12, pp.5-9, 2019/12/01/ (2019). 4. A.E. Pratiwi, M. Elma, A. Rahma, E. L. A. Rampun, and G. S. Saputro, Deconvolution of pectin carbonised template silica thin-film: synthesis and characterisation,, Membrane Technology, vol. 2019, no. 9, pp.5-8, 2019/09/01/ (2019). 5. A. Rahma, M. Elma, E. L. A. Rampun, A. E. Pratiwi, A. Rakhman, and Fitriani, Rapid Thermal Processing and Long Term Stability of Interlayer-free Silica-P123 Membranes for Wetland Saline Water Desalination,, Advanced Research in Fluid Mechanics and Thermal Sciences, vol. 71, no. 2, pp.1-9, July 2020 2020, Art no. 1.
Cited by
4 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
|
|