Universiti Teknologi Malaysia Institutional Repository

Study on the performance of cellulose triacetate hollow fiber mixed matrix membrane incorporated with amine-functionalized NH2-MIL-125(Ti) for CO2 and CH4 separation

Sunder, Naveen and Fong, Yeong Yin and Bustam, Mohamad Azmi and Lau, Woei Jye (2023) Study on the performance of cellulose triacetate hollow fiber mixed matrix membrane incorporated with amine-functionalized NH2-MIL-125(Ti) for CO2 and CH4 separation. Separations, 10 (1). pp. 1-13. ISSN 2297-8739

[img] PDF
308kB

Official URL: http://dx.doi.org/10.3390/separations10010041

Abstract

The increase in the global population has caused an increment in energy demand, and therefore, energy production has to be maximized through various means including the burning of natural gas. However, the purification of natural gas has caused CO2 levels to increase. Hollow fiber membranes offer advantages over other carbon capture technologies mainly due to their large surface-to-volume ratio, smaller footprint, and higher energy efficiency. In this work, hollow fiber mixed matrix membranes (HFMMMs) were fabricated by utilizing cellulose triacetate (CTA) as the polymer and amine-functionalized metal-organic framework (NH2-MIL-125(Ti)) as the filler for CO2 and CH4 gas permeation. CTA and NH2-MIL-125(Ti) are known for exhibiting a high affinity towards CO2. In addition, the utilization of these components as membrane materials for CO2 and CH4 gas permeation is hardly found in the literature. In this work, NH2-MIL-125(Ti)/CTA HFMMMs were spun by varying the air gap ranging from 1 cm to 7 cm. The filler dispersion, crystallinity, and functional groups of the fabricated HFMMMs were examined using EDX mapping, SEM, XRD, and FTIR. From the gas permeation testing, it was found that the NH2-MIL-125(Ti)/CTA HFMMM spun at an air gap of 1 cm demonstrated a CO2/CH4 ideal gas selectivity of 6.87 and a CO2 permeability of 26.46 GPU.

Item Type:Article
Uncontrolled Keywords:cellulose triacetate, CO2/CH4 separation, hollow fiber mixed matrix membranes, metal-organic frameworks (MOFs), NH2-MIL-125(Ti)
Subjects:Q Science > Q Science (General)
Divisions:Chemical and Energy Engineering
ID Code:106944
Deposited By: Yanti Mohd Shah
Deposited On:21 Aug 2024 08:09
Last Modified:21 Aug 2024 08:09

Repository Staff Only: item control page