Mathematical modeling and steady states multiplicity analysis of methyl tert-butyl ether reactive distillation synthesis

Bibliografiska uppgifter
Parent link:Petroleum and Coal
Vol. 58, iss. 4.— 2016.— [P. 490-498]
Huvudupphovsman: Mityanina O. E. Olga Evgenyevna
Institutionell upphovsman: Национальный исследовательский Томский политехнический университет (ТПУ) Институт природных ресурсов (ИПР) Кафедра химической технологии топлива и химической кибернетики (ХТТ)
Övriga upphovsmän: Samborskaya M. A. Marina Anatolievna, Sabiev A. N. Ayan Nurlanovich
Sammanfattning:Title screen
The paper is devoted to a new approach to steady state multiplicity analysis of methyl tert-butyl ether (MTBE) production by means of reactive distillation. Reactive distillation systems are characterized by input and output multiplicities, which may cause complex and unpredictable behavior of the process. The fundamental mathematical model, which enables to reveal potential sources of nonlinearity of the process, is proposed. As the result of input multiplicity analysis, intervals of one steady state were found for vapor and reflux ratio. Output multiplicity analysis showed three possible steady states in the reactive section of the column, one of which is corresponded to the maximal product yield. The advantage of the method is the ability to find “input-output” multiplicities on every stage of the column by using control parameters of the feed, reboiler and condenser only.
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Språk:engelska
Publicerad: 2016
Ämnen:
Länkar:http://www.vurup.sk/wp-content/uploads/dlm_uploads/2017/07/pc_4_2016_mytyanina_452.pdf
Materialtyp: Elektronisk Bokavsnitt
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=652443
Beskrivning
Sammanfattning:Title screen
The paper is devoted to a new approach to steady state multiplicity analysis of methyl tert-butyl ether (MTBE) production by means of reactive distillation. Reactive distillation systems are characterized by input and output multiplicities, which may cause complex and unpredictable behavior of the process. The fundamental mathematical model, which enables to reveal potential sources of nonlinearity of the process, is proposed. As the result of input multiplicity analysis, intervals of one steady state were found for vapor and reflux ratio. Output multiplicity analysis showed three possible steady states in the reactive section of the column, one of which is corresponded to the maximal product yield. The advantage of the method is the ability to find “input-output” multiplicities on every stage of the column by using control parameters of the feed, reboiler and condenser only.
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