Literature DB >> 28629109

Biological methanol production by immobilized Methylocella tundrae using simulated biohythane as a feed.

Sanjay K S Patel1, Raushan K Singh1, Ashok Kumar1, Jae-Hoon Jeong1, Seong Hun Jeong1, Vipin C Kalia2, In-Won Kim1, Jung-Kul Lee3.   

Abstract

Biohythane may be used as an alternative feed for methanol production instead of costly pure methane. In this study, methanol production potential of Methylocella tundrae immobilized through covalent immobilization, adsorption, and encapsulation was evaluated. Cells covalently immobilized on groundnut shells and chitosan showed a relative methanol production potential of 83.9 and 91.6%, respectively, compared to that of free cells. The maximum methanol production by free cells and cells covalently immobilized on groundnut shells and chitosan was 6.73, 6.20, and 7.23mM, respectively, using simulated biohythane as a feed. Under repeated batch conditions of eight cycles, cells covalently immobilized on chitosan and groundnut shells, and cells encapsulated in sodium-alginate resulted in significantly higher cumulative methanol production of 37.76, 31.80, and 25.58mM, respectively, than free cells (18.57mM). This is the first report on immobilization of methanotrophs on groundnut shells and its application in methanol production using biohythane as a feed.
Copyright © 2017 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Chitosan; Immobilization; Methanol; Methylocella tundrae; Simulated biohythane

Mesh:

Substances:

Year:  2017        PMID: 28629109     DOI: 10.1016/j.biortech.2017.05.160

Source DB:  PubMed          Journal:  Bioresour Technol        ISSN: 0960-8524            Impact factor:   9.642


  10 in total

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4.  Nanoparticles in Biological Hydrogen Production: An Overview.

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8.  Antimicrobial Activity of Amino-Derivatized Cationic Polysaccharides.

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Review 9.  Removal of Petroleum Contaminants Through Bioremediation with Integrated Concepts of Resource Recovery: A Review.

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10.  Biosynthesis of Lactobionic Acid in Whey-Containing Medium by Microencapsulated and Free Bacteria of Pseudomonas taetrolens.

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