MATHEMATICAL OPTIMIZATION METHODS TO ESTABLISH ACTIVE PHASES ON HETEROGENEOUS CATALYSIS: CASE OF BULK TRANSITION METAL SULPHIDES
This paper presents a set of procedures based on mathematical optimization methods to establish optimal active sulphide phases with higher HDS activity. This paper proposes a list of active phases as a guide for orienting the experimental work in the search of new catalysts that permit optimize the...
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Executive Business School
2015-03-01
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doaj-12f6ad23939d4473a9c16a378e680b852020-11-25T01:52:02ZspaExecutive Business SchoolAvances en Ciencias e Ingeniería0718-87060718-87062015-03-01613147MATHEMATICAL OPTIMIZATION METHODS TO ESTABLISH ACTIVE PHASES ON HETEROGENEOUS CATALYSIS: CASE OF BULK TRANSITION METAL SULPHIDESIván Machín0Susana Martínez1Universidad Simón Bolívar, Departamento de Termodinámica y Fenómenos de Transferencia, A.P. 89000, Caracas 1080 - VenezuelaPDVSA/INTEVEP, Gerencia de Producción y Extracción, El Tambor, Los Teques - VenezuelaThis paper presents a set of procedures based on mathematical optimization methods to establish optimal active sulphide phases with higher HDS activity. This paper proposes a list of active phases as a guide for orienting the experimental work in the search of new catalysts that permit optimize the HDS process. Studies in this paper establish Co-S, Cr-S, Nb-S and Ni-S systems have the greatest potential to improve HDS activity.http://www.exeedu.com/publishing.cl/inicio.php?lnk=ctnd&id=326active phasetransition metalcatalyst designHDS |
collection |
DOAJ |
language |
Spanish |
format |
Article |
sources |
DOAJ |
author |
Iván Machín Susana Martínez |
spellingShingle |
Iván Machín Susana Martínez MATHEMATICAL OPTIMIZATION METHODS TO ESTABLISH ACTIVE PHASES ON HETEROGENEOUS CATALYSIS: CASE OF BULK TRANSITION METAL SULPHIDES Avances en Ciencias e Ingeniería active phase transition metal catalyst design HDS |
author_facet |
Iván Machín Susana Martínez |
author_sort |
Iván Machín |
title |
MATHEMATICAL OPTIMIZATION METHODS TO ESTABLISH ACTIVE PHASES ON HETEROGENEOUS CATALYSIS: CASE OF BULK TRANSITION METAL SULPHIDES |
title_short |
MATHEMATICAL OPTIMIZATION METHODS TO ESTABLISH ACTIVE PHASES ON HETEROGENEOUS CATALYSIS: CASE OF BULK TRANSITION METAL SULPHIDES |
title_full |
MATHEMATICAL OPTIMIZATION METHODS TO ESTABLISH ACTIVE PHASES ON HETEROGENEOUS CATALYSIS: CASE OF BULK TRANSITION METAL SULPHIDES |
title_fullStr |
MATHEMATICAL OPTIMIZATION METHODS TO ESTABLISH ACTIVE PHASES ON HETEROGENEOUS CATALYSIS: CASE OF BULK TRANSITION METAL SULPHIDES |
title_full_unstemmed |
MATHEMATICAL OPTIMIZATION METHODS TO ESTABLISH ACTIVE PHASES ON HETEROGENEOUS CATALYSIS: CASE OF BULK TRANSITION METAL SULPHIDES |
title_sort |
mathematical optimization methods to establish active phases on heterogeneous catalysis: case of bulk transition metal sulphides |
publisher |
Executive Business School |
series |
Avances en Ciencias e Ingeniería |
issn |
0718-8706 0718-8706 |
publishDate |
2015-03-01 |
description |
This paper presents a set of procedures based on mathematical optimization methods to establish optimal active sulphide phases with higher HDS activity. This paper proposes a list of active phases as a guide for orienting the experimental work in the search of new catalysts that permit optimize the HDS process. Studies in this paper establish Co-S, Cr-S, Nb-S and Ni-S systems have the greatest potential to improve HDS activity. |
topic |
active phase transition metal catalyst design HDS |
url |
http://www.exeedu.com/publishing.cl/inicio.php?lnk=ctnd&id=326 |
work_keys_str_mv |
AT ivanmachin mathematicaloptimizationmethodstoestablishactivephasesonheterogeneouscatalysiscaseofbulktransitionmetalsulphides AT susanamartinez mathematicaloptimizationmethodstoestablishactivephasesonheterogeneouscatalysiscaseofbulktransitionmetalsulphides |
_version_ |
1724995178944528384 |