4.7 Article

Development of bioplastics from a microalgae consortium from wastewater

期刊

JOURNAL OF ENVIRONMENTAL MANAGEMENT
卷 263, 期 -, 页码 -

出版社

ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1016/j.jenvman.2020.110353

关键词

Microalgae; Wastewater; Bioplastic; Injection moulding

资金

  1. Posgrado en Ingenieria of the UNAM [220704, CTQ 2015-71164-P, RTI 2018-097 100-B-C21]
  2. Spanish Ministerio de Economia y Competitividad (MINECO) [220704, CTQ 2015-71164-P, RTI 2018-097 100-B-C21]
  3. Ministerio de Ciencia e Innovacion - Agencia Estatal de Investigacion (MICINN) [220704, CTQ 2015-71164-P, RTI 2018-097 100-B-C21]
  4. FEDER programme [220704, CTQ 2015-71164-P, RTI 2018-097 100-B-C21]

向作者/读者索取更多资源

Nowadays, as the world population is in need of creating alternative materials that can replace conventional plastics, microalgae biomass may be identified as a viable source for producing more environmentally friendly materials. Scenedesmus sp and Desmodesmus sp are the main components (similar to 80%) of a microalgae consortium (MC) that first has been used to remove Nitrogen and Phosphorus from wastewater. The potential to develop bioplastic materials from MC considering its relatively high protein content (similar to 48%) has been assessed in the present manuscript, using as a reference a commercial biomass rich an Arthrospira specie (AM) also present in the studied consortium. Bioplastics were obtained through injection moulding of blends obtained after mixing with different amounts of glycerol, and eventually characterized using Dynamic Mechanical Thermal Analysis (DMTA), water immersion and tensile tests. All bioplastics displayed a glass transition temperature around 60 degrees C, showing a thermoplastic behavior which is less pronounced in the CM based bioplastics. This would imply a greater thermal resistance of bioplastics produced from the biomass harvested in wastewater. Moreover, these bioplastics showed a lower ability to absorb water when immersed, due to the lower deformability displayed in the tensile tests. The mechanical properties of all samples, independently of the nature of the biomass, were improved when the presence of the biomass was higher. Therefore, results here presented prove the potential of valorisation of microalgae consortia used in the effective treatment of wastewater through the development of bioplastic materials.

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