Lignocellulosic bioethanol production: prospects of emerging membrane technologies to improve the process – a critical review

Author:

Dey Pinaki1,Pal Parimal2,Kevin Joseph Dilip3,Das Diganta Bhusan4

Affiliation:

1. Department of Biotechnology , Karunya Institute of Technology and Sciences , Karunya Nagar Coimbatore 641114 , India

2. Department of Chemical Engineering , National Institute of Technology , Durgapur , India

3. Department of Biotechnology , Karunya Institute of Technology and Sciences , Coimbatore , India

4. Department of Chemical Engineering, School of AACME , Loughborough University , Loughborough, Leicestershire , UK

Abstract

Abstract To meet the worldwide rapid growth of industrialization and population, the demand for the production of bioethanol as an alternative green biofuel is gaining significant prominence. The bioethanol production process is still considered one of the largest energy-consuming processes and is challenging due to the limited effectiveness of conventional pretreatment processes, saccharification processes, and extreme use of electricity in common fermentation and purification processes. Thus, it became necessary to improve the bioethanol production process through reduced energy requirements. Membrane-based separation technologies have already gained attention due to their reduced energy requirements, investment in lower labor costs, lower space requirements, and wide flexibility in operations. For the selective conversion of biomasses to bioethanol, membrane bioreactors are specifically well suited. Advanced membrane-integrated processes can effectively contribute to different stages of bioethanol production processes, including enzymatic saccharification, concentrating feed solutions for fermentation, improving pretreatment processes, and finally purification processes. Advanced membrane-integrated simultaneous saccharification, filtration, and fermentation strategies consisting of ultrafiltration-based enzyme recycle system with nanofiltration-based high-density cell recycle fermentation system or the combination of high-density cell recycle fermentation system with membrane pervaporation or distillation can definitely contribute to the development of the most efficient and economically sustainable second-generation bioethanol production process.

Publisher

Walter de Gruyter GmbH

Subject

General Chemical Engineering

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