Sustainable process design for heat exchanger network considering inherent safety and process economics

Author:

Athar Muhammad123ORCID,Shariff Azmi Mohd23,Rashid Muhammad Imran4ORCID,Aadil Mahboob Ahmed1,Umer Asim1,Irfan Muhammad5

Affiliation:

1. Department of Chemical Engineering Muhammad Nawaz Sharif University of Engineering and Technology Multan Pakistan

2. Centre for Advanced Process Safety (CAPS), Universiti Teknologi PETRONAS Seri Iskandar Perak Malaysia

3. Chemical Engineering Department Universiti Teknologi PETRONAS Seri Iskandar Perak Malaysia

4. Department of Chemical, Polymer and Composite Material Engineering University of Engineering and Technology (New Campus) Lahore Pakistan

5. Centre for Environmental Protection Studies (CEPS), Pakistan Council of Scientific and Industrial Research (PCSIR) Laboratories Complex Lahore Pakistan

Abstract

AbstractProcess lifecycle has several stages, including process design covered in multiple stages. Process economics is a vital factor in finalizing the process design. Besides economics, inherent safety is an important concept contributing to sustainable process design generation. The inherent safety concept has been applied via equipment characteristics for individual equipment. Since a method considering inherent safety with equipment aspects and process economics has not been available, therefore, a new method has been proposed, namely sustainable process design for heat exchanger network (SPDHEN), to integrate inherent safety, equipment aspects, and process economics. SPDHEN uses indexing to identify the critical heat exchanger, which is then examined via hazard analysis for an explosion. For unacceptable hazards, inherent safety principles are engaged to generate design alternatives for which process economics is examined too. The final design would be inherently safer with the best profit margin. The proposed method has been studied for the ammonia synthesis loop. It is concluded that the explosion hazard has been reduced to a tolerable level by using inherent guide words with a marginal compromise on quantity of ammonia produced, that is, 0.32%. This method is straightforward and can be useful for process engineers to generate sustainable process designs for heat exchanger networks considering safety and process economics simultaneously.

Publisher

Wiley

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