A novel design of reactive distillation configuration for 2-methoxy-2-methylheptane process
The study aims to reveal the possibility of reactive distillation (RD) in the 2-methoxy-2-methylheptane (MMH) production process. MMH is getting more industrial and academic interests as a gasoline additive to replace methyl tert-butyl ether. Traditionally, MMH is obtained by carrying out the reacti...
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Online Access: | https://doi.org/10.1051/e3sconf/20172200067 |
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doaj-6c4c2c9f8b21450e8152f6025ec45fd42021-08-11T14:28:28ZengEDP SciencesE3S Web of Conferences2267-12422017-01-01220006710.1051/e3sconf/20172200067e3sconf_asee2017_00067A novel design of reactive distillation configuration for 2-methoxy-2-methylheptane processHussain ArifAbdul Qyyum MuhammadMinh Le QuangJimin HongLee MoonyongThe study aims to reveal the possibility of reactive distillation (RD) in the 2-methoxy-2-methylheptane (MMH) production process. MMH is getting more industrial and academic interests as a gasoline additive to replace methyl tert-butyl ether. Traditionally, MMH is obtained by carrying out the reaction in the reactor followed by three distillation columns. The high yield of MMH could be achieved by keeping the large reactor size or by using the large excess of 2-methyl-1-heptene (MH). Both former and latter strategies are associated with the high capital and operating costs. To solve these problems, this study proposed an innovative RD configuration to take synergistic benefits of reaction and separation involved. This innovative RD configuration allows the production of MMH with significantly lower capital, operating and total annual costs. For desired MMH yield, the result demonstrates that the proposed RD configuration can reduce energy, capital, and total annual costs up to 7.7, 31.3, and 17.1%, respectively, compared to a conventional process. Furthermore, the influence of some important design parameters on the RD column performance was also explored to overcome the temperature limitation of acid resin catalyst inside the reactive zone of the RD column.https://doi.org/10.1051/e3sconf/20172200067 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Hussain Arif Abdul Qyyum Muhammad Minh Le Quang Jimin Hong Lee Moonyong |
spellingShingle |
Hussain Arif Abdul Qyyum Muhammad Minh Le Quang Jimin Hong Lee Moonyong A novel design of reactive distillation configuration for 2-methoxy-2-methylheptane process E3S Web of Conferences |
author_facet |
Hussain Arif Abdul Qyyum Muhammad Minh Le Quang Jimin Hong Lee Moonyong |
author_sort |
Hussain Arif |
title |
A novel design of reactive distillation configuration for 2-methoxy-2-methylheptane process |
title_short |
A novel design of reactive distillation configuration for 2-methoxy-2-methylheptane process |
title_full |
A novel design of reactive distillation configuration for 2-methoxy-2-methylheptane process |
title_fullStr |
A novel design of reactive distillation configuration for 2-methoxy-2-methylheptane process |
title_full_unstemmed |
A novel design of reactive distillation configuration for 2-methoxy-2-methylheptane process |
title_sort |
novel design of reactive distillation configuration for 2-methoxy-2-methylheptane process |
publisher |
EDP Sciences |
series |
E3S Web of Conferences |
issn |
2267-1242 |
publishDate |
2017-01-01 |
description |
The study aims to reveal the possibility of reactive distillation (RD) in the 2-methoxy-2-methylheptane (MMH) production process. MMH is getting more industrial and academic interests as a gasoline additive to replace methyl tert-butyl ether. Traditionally, MMH is obtained by carrying out the reaction in the reactor followed by three distillation columns. The high yield of MMH could be achieved by keeping the large reactor size or by using the large excess of 2-methyl-1-heptene (MH). Both former and latter strategies are associated with the high capital and operating costs. To solve these problems, this study proposed an innovative RD configuration to take synergistic benefits of reaction and separation involved. This innovative RD configuration allows the production of MMH with significantly lower capital, operating and total annual costs. For desired MMH yield, the result demonstrates that the proposed RD configuration can reduce energy, capital, and total annual costs up to 7.7, 31.3, and 17.1%, respectively, compared to a conventional process. Furthermore, the influence of some important design parameters on the RD column performance was also explored to overcome the temperature limitation of acid resin catalyst inside the reactive zone of the RD column. |
url |
https://doi.org/10.1051/e3sconf/20172200067 |
work_keys_str_mv |
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