A study on pilot-scale degassing by polypropylene (PP) hollow fiber membrane contactors

Desalination ◽  
2008 ◽  
Vol 234 (1-3) ◽  
pp. 316-322 ◽  
Author(s):  
Zan-Guo Peng ◽  
Swin-Hui Lee ◽  
Tong Zhou ◽  
Jyh-Jeng Shieh ◽  
Tai-Shung Chung
Fibers ◽  
2018 ◽  
Vol 6 (4) ◽  
pp. 76 ◽  
Author(s):  
Stepan D. Bazhenov ◽  
Alexandr V. Bildyukevich ◽  
Alexey V. Volkov

Gas-liquid membrane contactors that were based on hollow fiber membranes are the example of highly effective hybrid separation processes in the field of membrane technology. Membranes provide a fixed and well-determined interface for gas/liquid mass transfer without dispensing one phase into another while their structure (hollow fiber) offers very large surface area per apparatus volume resulted in the compactness and modularity of separation equipment. In many cases, stated benefits are complemented with high separation selectivity typical for absorption technology. Since hollow fiber membrane contactors are agreed to be one of the most perspective methods for CO2 capture technologies, the major reviews are devoted to research activities within this field. This review is focused on the research works carried out so far on the applications of membrane contactors for other gas-liquid separation tasks, such as water deoxygenation/ozonation, air humidity control, ethylene/ethane separation, etc. A wide range of materials, membranes, and liquid solvents for membrane contactor processes are considered. Special attention is given to current studies on the capture of acid gases (H2S, SO2) from different mixtures. The examples of pilot-scale and semi-industrial implementation of membrane contactors are given.


Membranes ◽  
2021 ◽  
Vol 11 (7) ◽  
pp. 496
Author(s):  
Sayali Ramdas Chavan ◽  
Patrick Perré ◽  
Victor Pozzobon ◽  
Julien Lemaire

Recently, membrane contactors have gained more popularity in the field of CO2 removal; however, achieving high purity and competitive recovery for poor soluble gas (H2, N2, or CH4) remains elusive. Hence, a novel process for CO2 removal from a mixture of gases using hollow fiber membrane contactors is investigated theoretically and experimentally. A theoretical model is constructed to show that the dissolved residual CO2 hinders the capacity of the absorbent when it is regenerated. This model, backed up by experimental investigation, proves that achieving a purity > 99% without consuming excessive chemicals or energy remains challenging in a closed-loop system. As a solution, a novel strategy is proposed: the pH Swing Absorption which consists of manipulating the acido–basic equilibrium of CO2 in the absorption and desorption stages by injecting moderate acid and base amount. It aims at decreasing CO2 residual content in the regenerated absorbent, by converting CO2 into its ionic counterparts (HCO3− or CO32−) before absorption and improving CO2 degassing before desorption. Therefore, this strategy unlocks the theoretical limitation due to equilibrium with CO2 residual content in the absorbent and increases considerably the maximum achievable purity. Results also show the dependency of the performance on operating conditions such as total gas pressure and liquid flowrate. For N2/CO2 mixture, this process achieved a nitrogen purity of 99.97% with a N2 recovery rate of 94.13%. Similarly, for H2/CO2 mixture, a maximum H2 purity of 99.96% and recovery rate of 93.96% was obtained using this process. Moreover, the proposed patented process could potentially reduce energy or chemicals consumption.


2012 ◽  
Vol 44 ◽  
pp. 662-665 ◽  
Author(s):  
R. Faiz ◽  
M. Fallanza ◽  
I. Ortiz ◽  
K. Li

Desalination ◽  
2011 ◽  
Vol 275 (1-3) ◽  
pp. 126-132 ◽  
Author(s):  
Farzad Fadaei ◽  
Saeed Shirazian ◽  
Seyed Nezameddin Ashrafizadeh

2017 ◽  
Vol 114 ◽  
pp. 1334-1341 ◽  
Author(s):  
David Albarracin-Zaidiza ◽  
Bouchra Belaissaoui ◽  
Denis Roizard ◽  
Eric Favre ◽  
Sabine Rode

2013 ◽  
Vol 430 ◽  
pp. 79-86 ◽  
Author(s):  
Shiguang Li ◽  
Dennis J. Rocha ◽  
S. James Zhou ◽  
Howard S. Meyer ◽  
Benjamin Bikson ◽  
...  

AIChE Journal ◽  
2011 ◽  
Vol 58 (9) ◽  
pp. 2843-2855 ◽  
Author(s):  
Noureddine Boucif ◽  
Jean Pierre Corriou ◽  
Denis Roizard ◽  
Eric Favre

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