Bioconversion of apple peels (Malus domestica) to polyhydroxybutyrate using statistical design to optimize process parameters through Bacillus thuringiensis via solid-state fermentation
Author:
Publisher
Springer Science and Business Media LLC
Subject
Renewable Energy, Sustainability and the Environment
Link
https://link.springer.com/content/pdf/10.1007/s13399-022-02762-0.pdf
Reference34 articles.
1. Rhodes CJ (2018) Plastic pollution and potential solutions. Sci Prog 101(3):207–260
2. Sayyed R, Wani S, Alarfaj AA, Syed A, El-Enshasy HA (2020) Production, purification and evaluation of biodegradation potential of PHB depolymerase of Stenotrophomonas sp. RZS7. PLoS One 15(1):e0220095
3. Getachew A, Woldesenbet F (2016) Production of biodegradable plastic by polyhydroxybutyrate (PHB) accumulating bacteria using low cost agricultural waste material. BMC Res Notes 9(1):1–9
4. Sayyed R, Wani S, Alyousef AA, Alqasim A, Syed A, El-Enshasy HA (2019) Purification and kinetics of the PHB depolymerase of Microbacterium paraoxydans RZS6 isolated from a dumping yard. PLoS ONE 14(6):e0212324
5. Abd El-malek F, Khairy H, Farag A, Omar S (2020) The sustainability of microbial bioplastics, production and applications. Int J Biol Macromol 157:319–328
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