Correlating Parameters With Hydrogen Purity And Recovery By Psa In Hydrogen Purification From Syngas

The pressure swing adsorption model (PSA) on ASPEN Adsorption platform using Cu-BTC as the adsorbent was used to simulate the hydrogen purification performances (purity and recovery) from binary syngas feed (containing 80% H2 and 20% CO2). Results showed the simulated breakthrough curves from the As...

Full description

Bibliographic Details
Main Author: Zakaria, Nurul Asyiqin
Format: Monograph
Language:English
Published: Universiti Sains Malaysia 2022
Subjects:
Online Access:http://eprints.usm.my/55547/
http://eprints.usm.my/55547/1/Correlating%20Parameters%20With%20Hydrogen%20Purity%20And%20Recovery%20By%20Psa%20In%20Hydrogen%20Purification%20From%20Syngas.pdf
_version_ 1848883111011549184
author Zakaria, Nurul Asyiqin
author_facet Zakaria, Nurul Asyiqin
author_sort Zakaria, Nurul Asyiqin
building USM Institutional Repository
collection Online Access
description The pressure swing adsorption model (PSA) on ASPEN Adsorption platform using Cu-BTC as the adsorbent was used to simulate the hydrogen purification performances (purity and recovery) from binary syngas feed (containing 80% H2 and 20% CO2). Results showed the simulated breakthrough curves from the Aspen simulation fit well with the experiment data from the literature. The results also showed that increasing adsorption pressure and prolonging adsorption time would lead to decrease of both hydrogen purity and recovery. Meanwhile, increasing hydrogen feed concentration, increased the hydrogen purity but reduced its recovery. The optimization was also carried out to find the maximum product purity and recovery. The optimized purity and recovery were recorded at 90.12% and 93.22% respectively when the adsorption pressure of 2 bar, adsorption time of 150s and hydrogen feed concentration of 75% were used. Through a maximisation section, this model was confirmed could meet the standard hydrogen purity for fuel cells by setting the adsorption pressure, adsorption time and hydrogen feed concentration to 2 bar, 102.48s and 80% respectively.
first_indexed 2025-11-15T18:45:36Z
format Monograph
id usm-55547
institution Universiti Sains Malaysia
institution_category Local University
language English
last_indexed 2025-11-15T18:45:36Z
publishDate 2022
publisher Universiti Sains Malaysia
recordtype eprints
repository_type Digital Repository
spelling usm-555472022-11-08T02:40:15Z http://eprints.usm.my/55547/ Correlating Parameters With Hydrogen Purity And Recovery By Psa In Hydrogen Purification From Syngas Zakaria, Nurul Asyiqin T Technology TP155-156 Chemical engineering The pressure swing adsorption model (PSA) on ASPEN Adsorption platform using Cu-BTC as the adsorbent was used to simulate the hydrogen purification performances (purity and recovery) from binary syngas feed (containing 80% H2 and 20% CO2). Results showed the simulated breakthrough curves from the Aspen simulation fit well with the experiment data from the literature. The results also showed that increasing adsorption pressure and prolonging adsorption time would lead to decrease of both hydrogen purity and recovery. Meanwhile, increasing hydrogen feed concentration, increased the hydrogen purity but reduced its recovery. The optimization was also carried out to find the maximum product purity and recovery. The optimized purity and recovery were recorded at 90.12% and 93.22% respectively when the adsorption pressure of 2 bar, adsorption time of 150s and hydrogen feed concentration of 75% were used. Through a maximisation section, this model was confirmed could meet the standard hydrogen purity for fuel cells by setting the adsorption pressure, adsorption time and hydrogen feed concentration to 2 bar, 102.48s and 80% respectively. Universiti Sains Malaysia 2022-07-01 Monograph NonPeerReviewed application/pdf en http://eprints.usm.my/55547/1/Correlating%20Parameters%20With%20Hydrogen%20Purity%20And%20Recovery%20By%20Psa%20In%20Hydrogen%20Purification%20From%20Syngas.pdf Zakaria, Nurul Asyiqin (2022) Correlating Parameters With Hydrogen Purity And Recovery By Psa In Hydrogen Purification From Syngas. Project Report. Universiti Sains Malaysia, Pusat Pengajian Kejuruteraan Kimia. (Submitted)
spellingShingle T Technology
TP155-156 Chemical engineering
Zakaria, Nurul Asyiqin
Correlating Parameters With Hydrogen Purity And Recovery By Psa In Hydrogen Purification From Syngas
title Correlating Parameters With Hydrogen Purity And Recovery By Psa In Hydrogen Purification From Syngas
title_full Correlating Parameters With Hydrogen Purity And Recovery By Psa In Hydrogen Purification From Syngas
title_fullStr Correlating Parameters With Hydrogen Purity And Recovery By Psa In Hydrogen Purification From Syngas
title_full_unstemmed Correlating Parameters With Hydrogen Purity And Recovery By Psa In Hydrogen Purification From Syngas
title_short Correlating Parameters With Hydrogen Purity And Recovery By Psa In Hydrogen Purification From Syngas
title_sort correlating parameters with hydrogen purity and recovery by psa in hydrogen purification from syngas
topic T Technology
TP155-156 Chemical engineering
url http://eprints.usm.my/55547/
http://eprints.usm.my/55547/1/Correlating%20Parameters%20With%20Hydrogen%20Purity%20And%20Recovery%20By%20Psa%20In%20Hydrogen%20Purification%20From%20Syngas.pdf