Improving slurry dewatering performance of basket centrifuge: discharge of supernatant using bypass filter medium
In order to improve the performance of the centrifuge, a new design of dewatering of slurry which forms less permeable cake is proposed. In the proposed design, the filter media is placed not only on the circuit, but also at the bottom of the filter chamber. The additional bottom filter medium is ex...
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The Society of Chemical Engineers, Japan
2015
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iium-470922016-05-13T02:39:44Z http://irep.iium.edu.my/47092/ Improving slurry dewatering performance of basket centrifuge: discharge of supernatant using bypass filter medium Ginting, Alvin Najmuddin Fukuyama, Ryo Jami, Mohammed Saedi Tanaka, Takanori Iwata, Masashi TP155 Chemical engineering In order to improve the performance of the centrifuge, a new design of dewatering of slurry which forms less permeable cake is proposed. In the proposed design, the filter media is placed not only on the circuit, but also at the bottom of the filter chamber. The additional bottom filter medium is expected to work as a bypass. The comparison of the conventional and new designs is made in this study. The supernatant is completely discharged in much shorter time when the new method is used; hence the filter medium at the bottom of the filter chamber works as a bypass and improved the dewatering performance. The Society of Chemical Engineers, Japan 2015-12 Article PeerReviewed application/pdf en http://irep.iium.edu.my/47092/1/J_Chem__Eng_Japan__Vol48No12__966-969_%282015_Dec%29.pdf Ginting, Alvin Najmuddin and Fukuyama, Ryo and Jami, Mohammed Saedi and Tanaka, Takanori and Iwata, Masashi (2015) Improving slurry dewatering performance of basket centrifuge: discharge of supernatant using bypass filter medium. Journal of Chemical Engineering of Japan, 48 (12). pp. 966-969. ISSN 0021-9592 http://www.scej.org/jcej/ |
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TP155 Chemical engineering |
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TP155 Chemical engineering Ginting, Alvin Najmuddin Fukuyama, Ryo Jami, Mohammed Saedi Tanaka, Takanori Iwata, Masashi Improving slurry dewatering performance of basket centrifuge: discharge of supernatant using bypass filter medium |
description |
In order to improve the performance of the centrifuge, a new design of dewatering of slurry which forms less permeable cake is proposed. In the proposed design, the filter media is placed not only on the circuit, but also at the bottom of the filter chamber. The additional bottom filter medium is expected to work as a bypass. The comparison of the conventional and new designs is made in this study. The supernatant is completely discharged in much shorter time when the new method is used; hence the filter medium at the bottom of the filter chamber works as a bypass and improved the dewatering performance. |
format |
Article |
author |
Ginting, Alvin Najmuddin Fukuyama, Ryo Jami, Mohammed Saedi Tanaka, Takanori Iwata, Masashi |
author_facet |
Ginting, Alvin Najmuddin Fukuyama, Ryo Jami, Mohammed Saedi Tanaka, Takanori Iwata, Masashi |
author_sort |
Ginting, Alvin Najmuddin |
title |
Improving slurry dewatering performance of basket centrifuge: discharge of supernatant using bypass filter medium |
title_short |
Improving slurry dewatering performance of basket centrifuge: discharge of supernatant using bypass filter medium |
title_full |
Improving slurry dewatering performance of basket centrifuge: discharge of supernatant using bypass filter medium |
title_fullStr |
Improving slurry dewatering performance of basket centrifuge: discharge of supernatant using bypass filter medium |
title_full_unstemmed |
Improving slurry dewatering performance of basket centrifuge: discharge of supernatant using bypass filter medium |
title_sort |
improving slurry dewatering performance of basket centrifuge: discharge of supernatant using bypass filter medium |
publisher |
The Society of Chemical Engineers, Japan |
publishDate |
2015 |
url |
http://irep.iium.edu.my/47092/ http://irep.iium.edu.my/47092/ http://irep.iium.edu.my/47092/1/J_Chem__Eng_Japan__Vol48No12__966-969_%282015_Dec%29.pdf |
first_indexed |
2023-09-18T21:07:02Z |
last_indexed |
2023-09-18T21:07:02Z |
_version_ |
1777411002033242112 |