Simulation and investigation of bioethanol production considering energetic and economic considerations

Author:

Alaiwi Yaser1ORCID,Abed Azher M2,Smaisim Ghassan Fadhil34ORCID,Aly Mohamed Aly Saad5ORCID,Hadrawi Salema K6,Morovati Reza7ORCID

Affiliation:

1. Altinbas University Department of Mechanical Engineering, , Istanbul 34217, Turkey

2. Al-Mustaqbal University College Department of Air Conditioning and Refrigeration, , Babylon 51001, Iraq

3. University of Kufa Department of Mechanical Engineering, Faculty of Engineering, , 54001, Iraq

4. University of Kufa Nanotechnology and Advanced Materials Research Unit (NAMRU), Faculty of Engineering, , 54001, Iraq

5. Tianjin University Department of Electrical and Computer Engineering at Georgia Tech Shenzhen Institute (GTSI), , Shenzhen, Guangdong, 518055, China

6. The Islamic University Refrigeration and Air-conditioning Technical Engineering Department, College of Technical Engineering, , Najaf 54001, Iraq

7. Balkh University Department of Engineering, , Mazar-i-Sharif 1702, Afghanistan

Abstract

AbstractToday, the use of alternative fuels that have plant origin has attracted the attention of most countries because these fuels emit less pollution. In this research, bioethanol production has been evaluated considering solar energy sources. In the present study, the possibility of developing net-zero energy concepts in a bioethanol production plant as one of the most consumed energy industries in the field of bio-systems of the country from a technical and economic perspective was investigated. The purpose of this research is to model the bioethanol production plant with the aim of achieving zero net energy using a photovoltaic system. In addition, technical and economic analyses have been used in different approaches for a more detailed investigation. According to the modeling done, in the zero net energy approach, the results showed that the maximum production of electrical energy by the photovoltaic cell is 76.6 GWh/y. For this approach, the return on investment is 10.7 years. The area required to install photovoltaic modules in this approach is very large and equal to 88 334 m2.

Publisher

Oxford University Press (OUP)

Subject

General Environmental Science,Architecture,Civil and Structural Engineering

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