Literature DB >> 31014935

Nanoengineered cellulosic biohydrogen production via dark fermentation: A novel approach.

Neha Srivastava1, Manish Srivastava2, Bansi D Malhotra3, Vijai K Gupta4, P W Ramteke5, Roberto N Silva6, Pratyoosh Shukla7, Kashyap Kumar Dubey8, P K Mishra9.   

Abstract

The insights of nanotechnology for cellulosic biohydrogen production through dark fermentation are reviewed. Lignocellulosic biomass to sugar generation is a complex process and covers the most expensive part of cellulose to sugar production technology. In this context, the impacts of nanomaterial on lignocellulosic biomass to biohydrogen production process have been reviewed. In addition, the feasibility of nanomaterials for implementation in each step of the cellulosic biohydrogen production is discussed for economic viability of the process. Numerous aspects such as possible replacement of chemical pretreatment method using nanostructured materials, use of immobilized enzyme for a fast rate of reaction and its reusability along with long viability of microbial cells and hydrogenase enzyme for improving the productivity are the highlights of this review. It is found that various types of nanostructured materials e.g. metallic nanoparticles (Fe°, Ni, Cu, Au, Pd, Au), metal oxide nanoparticles (Fe2O3, F3O4, NiCo2O4, CuO, NiO, CoO, ZnO), nanocomposites (Si@CoFe2O4, Fe3O4/alginate) and graphene-based nanomaterials can influence different parameters of the process and therefore may perhaps be utilized for cellulosic biohydrogen production. The emphasis has been given on the cost issue and synthesis sustainability of nanomaterials for making the biohydrogen technology cost effective. Finally, recent advancements and feasibility of nanomaterials as the potential solution for improved cellulose conversion to the biohydrogen production process have been discussed, and this is likely to assist in developing an efficient, economical and sustainable biohydrogen production technology.
Copyright © 2019 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Biohydrogen production; Cellulolytic enzymes; Dark fermentation; Immobilization; Lignocellulosic biomass; Nanomaterials

Mesh:

Substances:

Year:  2019        PMID: 31014935     DOI: 10.1016/j.biotechadv.2019.04.006

Source DB:  PubMed          Journal:  Biotechnol Adv        ISSN: 0734-9750            Impact factor:   14.227


  3 in total

1.  Enhancement of pH values stability and photo-fermentation biohydrogen production by phosphate buffer.

Authors:  Siyi Guo; Chaoyang Lu; Kaixin Wang; Jian Wang; Zhiping Zhang; Yanyan Jing; Quanguo Zhang
Journal:  Bioengineered       Date:  2020-12       Impact factor: 3.269

2.  Waste-Derived Fuels and Renewable Chemicals for Bioeconomy Promotion: A Sustainable Approach.

Authors:  Vivek Narisetty; Reshmy R; Shraddha Maitra; Ayon Tarafdar; Maria Paul Alphy; A Naresh Kumar; Aravind Madhavan; Ranjna Sirohi; Mukesh Kumar Awasthi; Raveendran Sindhu; Sunita Varjani; Parameswaran Binod
Journal:  Bioenergy Res       Date:  2022-03-25       Impact factor: 2.814

Review 3.  Debottlenecking the biological hydrogen production pathway of dark fermentation: insight into the impact of strain improvement.

Authors:  Yujin Cao; Hui Liu; Wei Liu; Jing Guo; Mo Xian
Journal:  Microb Cell Fact       Date:  2022-08-19       Impact factor: 6.352

  3 in total

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