Assessment of Bioprocess Development-Based Modeling and Simulation in a Sustainable Environment

Author:

Satish Kumar R.1,Rao B. Nageswara2,Prameela M.3,Pauldoss S. Peniel4,Mangrulkar Amol L.5,Salmen Saleh H.6,Al Obaid Sami6,Sappireamaniyan S.7,Hadish Kibrom Menasbo8ORCID

Affiliation:

1. Department of Medical Electronics, Sengunthar College of Engineering, 637205 Tamilnadu, India

2. Department of Mechanical Engineering, VFSTR Deemed to Be University, Andhra Pradesh, India

3. Department of Electrical and Electronics Engineering, B V Raju Institute of Technology, Narasapur, Telangana, India

4. Department of Mechanical Engineering, Brilliant Group of Technical Institutions, Hyderabad, India

5. Department of Mechanical Engineering, Rajiv Gandhi Institute of Technology, Mumbai, India

6. Department of Botany and Microbiology, College of Science, King Saud University, PO Box-2455, Riyadh-11451, Saudi Arabia

7. Department of Bioenvironmental Energy, College of Natural Resources and Life Science, Pusan National University, Miryang-Si, 50463, Republic of Korea

8. Department of Mechanical Engineering, Faculty of Mechanical Engineering, Arba Minch Institute of Technology (AMIT), Arba Minch University, Ethiopia

Abstract

Modeling and simulation help us gain a better knowledge of chemical systems and develop obstacles and improvement opportunities. In the initial stages of systems integration, the time and money constraints prevent more precise estimates, basic simulation software that provides a reasonable approximation of energy and material usage and procedure exhaust is typically useful. Every next era of technicians will confront a new set of difficulties, including developing new biochemical reactions with high sensitivity and selectivity for pharmaceutical industries and manufacturing lesser chemicals from biomass resources. This job will need the use of operational process systems integration development tools. The existing toolsneed improvement so that they could be used to examine operations against sustainability principles as well as profitability. Eventually, characteristic models for substances that aren’t presently in collections will be necessary. In the field of integrated bioprocesses, there will undoubtedly be a plethora of new prospects for process systems engineering. The financial and environmental evaluations were based on a generic methodology for collecting first-estimate stock levels. The time it takes to do the evaluation may be cut in half, and a wider number of choices could be explored. A valuable commitment to sustainability bioprocess modeling and evaluation can be made by using a first-approximation numerical method as the basis for financial and environmental evaluations.

Funder

King Saud University

Publisher

Hindawi Limited

Subject

General Materials Science,Renewable Energy, Sustainability and the Environment,Atomic and Molecular Physics, and Optics,General Chemistry

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