Feasibility of bioplastic production using micro- and macroalgae- A review

Author:

Sudhakar Muthiyal Prabakaran,Maurya Rahulkumar,Mehariya Sanjeet,Karthikeyan Obulisamy Parthiba,Dharani Gopal,Arunkumar Kulanthiyesu,Pereda Sandra V.,Hernández-González María C.,Buschmann Alejandro H.ORCID,Pugazhendhi ArivalaganORCID

Publisher

Elsevier BV

Subject

General Environmental Science,Biochemistry

Reference157 articles.

1. Biopolymer composites: a review;Aaliya;International Journal of Biobased Plastics,2021

2. Microbial-induced CaCO3 filled seaweed-based film for green plasticulture application;Abdul Khalil;J. Clean. Prod.,2018

3. Biodegradable polymer films from seaweed polysaccharides: a review on cellulose as a reinforcement material;Abdul Khalil;Express Polym. Lett.,2017

4. Degradation of bioplastics in soil and their degradation effects on environmental microorganisms;Adhikari;J. Agric. Chem. Environ.,2016

5. Biobased building blocks and polymers in the world: capacities, production, and applications–status quo and trends towards 2020;Aeschelmann;Ind. Biotechnol.,2015

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