Inherent Safety Assessment Technique for Separation Equipment in Preliminary Engineering Stage

This paper highlights the development of new numerical approach for inherent safety assessment for separation process during the preliminary engineering stage of a typical petrochemical process lifecycle. Currently, existing inherent safety assessment technique for preliminary engineering phase did...

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Main Authors: S.I. Ahmad, H. Hashim, M.H. Hassim, Z.A. Muis
Format: Article
Language:English
Published: AIDIC Servizi S.r.l. 2015-09-01
Series:Chemical Engineering Transactions
Online Access:https://www.cetjournal.it/index.php/cet/article/view/4595
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spelling doaj-1a58a850b45e4bfdba813f909157a97b2021-02-20T21:04:19ZengAIDIC Servizi S.r.l.Chemical Engineering Transactions2283-92162015-09-014510.3303/CET1545188Inherent Safety Assessment Technique for Separation Equipment in Preliminary Engineering StageS.I. AhmadH. HashimM.H. HassimZ.A. MuisThis paper highlights the development of new numerical approach for inherent safety assessment for separation process during the preliminary engineering stage of a typical petrochemical process lifecycle. Currently, existing inherent safety assessment technique for preliminary engineering phase did not specify the type of equipment they are applicable to as most of the methods can be used for any types of equipment generally. Aside from that, their assessment parameters are not exclusive to a certain type of unit operations. This new technique offers an inherent safety assessment focusing on chemicals safety during separation process. Parameters related to chemicals involved in separation process such as volatility, toxicity, flammability as well as explosiveness will be discussed. This technique will be constructed using logistic function which offers not only hazard assessment numerically but also graphically visualizes the effect of inherent safety parameters in designing an inherently safer process. The proposed technique can be used to effectively identify the level of hazards involved in process equipment besides highlighting the potential source of hazards in the process through numerical and graphical approach.https://www.cetjournal.it/index.php/cet/article/view/4595
collection DOAJ
language English
format Article
sources DOAJ
author S.I. Ahmad
H. Hashim
M.H. Hassim
Z.A. Muis
spellingShingle S.I. Ahmad
H. Hashim
M.H. Hassim
Z.A. Muis
Inherent Safety Assessment Technique for Separation Equipment in Preliminary Engineering Stage
Chemical Engineering Transactions
author_facet S.I. Ahmad
H. Hashim
M.H. Hassim
Z.A. Muis
author_sort S.I. Ahmad
title Inherent Safety Assessment Technique for Separation Equipment in Preliminary Engineering Stage
title_short Inherent Safety Assessment Technique for Separation Equipment in Preliminary Engineering Stage
title_full Inherent Safety Assessment Technique for Separation Equipment in Preliminary Engineering Stage
title_fullStr Inherent Safety Assessment Technique for Separation Equipment in Preliminary Engineering Stage
title_full_unstemmed Inherent Safety Assessment Technique for Separation Equipment in Preliminary Engineering Stage
title_sort inherent safety assessment technique for separation equipment in preliminary engineering stage
publisher AIDIC Servizi S.r.l.
series Chemical Engineering Transactions
issn 2283-9216
publishDate 2015-09-01
description This paper highlights the development of new numerical approach for inherent safety assessment for separation process during the preliminary engineering stage of a typical petrochemical process lifecycle. Currently, existing inherent safety assessment technique for preliminary engineering phase did not specify the type of equipment they are applicable to as most of the methods can be used for any types of equipment generally. Aside from that, their assessment parameters are not exclusive to a certain type of unit operations. This new technique offers an inherent safety assessment focusing on chemicals safety during separation process. Parameters related to chemicals involved in separation process such as volatility, toxicity, flammability as well as explosiveness will be discussed. This technique will be constructed using logistic function which offers not only hazard assessment numerically but also graphically visualizes the effect of inherent safety parameters in designing an inherently safer process. The proposed technique can be used to effectively identify the level of hazards involved in process equipment besides highlighting the potential source of hazards in the process through numerical and graphical approach.
url https://www.cetjournal.it/index.php/cet/article/view/4595
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AT zamuis inherentsafetyassessmenttechniqueforseparationequipmentinpreliminaryengineeringstage
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