Effect of pH, temperature and agitation on thermophilic biohydrogen production using immobilized cells on carbon composites (GAC-NiFe3O4)
Carbon composites-immobilized cell was utilized to enhance biohydrogen production. The initial pH, temperature and agitation effect was studied using the one-factor-at-a-time (OFAT) method. The optimal initial pH obtained was at pH 6.0 with hydrogen yield (HY) of 2.66 +/- 0.09 mol H-2/mol sugar, cor...
Published in: | CHEMICAL ENGINEERING JOURNAL |
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Main Authors: | , , , , , , |
Format: | Article |
Language: | English |
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ELSEVIER SCIENCE SA
2024
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Online Access: | https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001202595700001 |
author |
Jamaludin Nina Farhana Mohd; Engliman Nurul Sakinah; Manaf Shareena Fairuz Abdul; Idrus Syazwani; Abdullah Luqman Chuah; Jamali Nur Syakina |
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spellingShingle |
Jamaludin Nina Farhana Mohd; Engliman Nurul Sakinah; Manaf Shareena Fairuz Abdul; Idrus Syazwani; Abdullah Luqman Chuah; Jamali Nur Syakina Effect of pH, temperature and agitation on thermophilic biohydrogen production using immobilized cells on carbon composites (GAC-NiFe3O4) Engineering |
author_facet |
Jamaludin Nina Farhana Mohd; Engliman Nurul Sakinah; Manaf Shareena Fairuz Abdul; Idrus Syazwani; Abdullah Luqman Chuah; Jamali Nur Syakina |
author_sort |
Jamaludin |
spelling |
Jamaludin, Nina Farhana Mohd; Engliman, Nurul Sakinah; Manaf, Shareena Fairuz Abdul; Idrus, Syazwani; Abdullah, Luqman Chuah; Jamali, Nur Syakina Effect of pH, temperature and agitation on thermophilic biohydrogen production using immobilized cells on carbon composites (GAC-NiFe3O4) CHEMICAL ENGINEERING JOURNAL English Article Carbon composites-immobilized cell was utilized to enhance biohydrogen production. The initial pH, temperature and agitation effect was studied using the one-factor-at-a-time (OFAT) method. The optimal initial pH obtained was at pH 6.0 with hydrogen yield (HY) of 2.66 +/- 0.09 mol H-2/mol sugar, correlating with Gompertz constant of H-m = 974.99 mL, R-m = 17.90 mL/h and lambda = 1.70 h. At 60 degrees C, the highest HY was obtained at 2.75 +/- 0.11 mol H-2/mol sugar. These corresponded to the Gompertz constant of H-m = 934.58 mL, R-m = 18.78 mL/h and lambda = 1.89 h. The optimal agitation obtained was at 120 rpm, attaining the highest HY of 3.44 +/- 0.54 mol H-2/mol sugar, corresponding to the Gompertz constant of H-m = 1054.86 mL, R-m = 24.37 mL/h and lambda = 3.90 h. The rRNA sequencing result revealed that the predominant species in the study was Thermoanaerobacterium. This study provides critical insight into process control conditions on biohydrogen production. ELSEVIER SCIENCE SA 1385-8947 1873-3212 2024 485 10.1016/j.cej.2024.149980 Engineering WOS:001202595700001 https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001202595700001 |
title |
Effect of pH, temperature and agitation on thermophilic biohydrogen production using immobilized cells on carbon composites (GAC-NiFe3O4) |
title_short |
Effect of pH, temperature and agitation on thermophilic biohydrogen production using immobilized cells on carbon composites (GAC-NiFe3O4) |
title_full |
Effect of pH, temperature and agitation on thermophilic biohydrogen production using immobilized cells on carbon composites (GAC-NiFe3O4) |
title_fullStr |
Effect of pH, temperature and agitation on thermophilic biohydrogen production using immobilized cells on carbon composites (GAC-NiFe3O4) |
title_full_unstemmed |
Effect of pH, temperature and agitation on thermophilic biohydrogen production using immobilized cells on carbon composites (GAC-NiFe3O4) |
title_sort |
Effect of pH, temperature and agitation on thermophilic biohydrogen production using immobilized cells on carbon composites (GAC-NiFe3O4) |
container_title |
CHEMICAL ENGINEERING JOURNAL |
language |
English |
format |
Article |
description |
Carbon composites-immobilized cell was utilized to enhance biohydrogen production. The initial pH, temperature and agitation effect was studied using the one-factor-at-a-time (OFAT) method. The optimal initial pH obtained was at pH 6.0 with hydrogen yield (HY) of 2.66 +/- 0.09 mol H-2/mol sugar, correlating with Gompertz constant of H-m = 974.99 mL, R-m = 17.90 mL/h and lambda = 1.70 h. At 60 degrees C, the highest HY was obtained at 2.75 +/- 0.11 mol H-2/mol sugar. These corresponded to the Gompertz constant of H-m = 934.58 mL, R-m = 18.78 mL/h and lambda = 1.89 h. The optimal agitation obtained was at 120 rpm, attaining the highest HY of 3.44 +/- 0.54 mol H-2/mol sugar, corresponding to the Gompertz constant of H-m = 1054.86 mL, R-m = 24.37 mL/h and lambda = 3.90 h. The rRNA sequencing result revealed that the predominant species in the study was Thermoanaerobacterium. This study provides critical insight into process control conditions on biohydrogen production. |
publisher |
ELSEVIER SCIENCE SA |
issn |
1385-8947 1873-3212 |
publishDate |
2024 |
container_volume |
485 |
container_issue |
|
doi_str_mv |
10.1016/j.cej.2024.149980 |
topic |
Engineering |
topic_facet |
Engineering |
accesstype |
|
id |
WOS:001202595700001 |
url |
https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001202595700001 |
record_format |
wos |
collection |
Web of Science (WoS) |
_version_ |
1809678907636449280 |