4.6 Article

Valorization of Cladophora glomerata Biomass and Obtained Bioproducts into Biostimulants of Plant Growth and as Sorbents (Biosorbents) of Metal Ions

Journal

MOLECULES
Volume 26, Issue 22, Pages -

Publisher

MDPI
DOI: 10.3390/molecules26226917

Keywords

macroalga; Cladophora glomerata; ultrasound assisted extraction; algal extract; nanoparticles biosynthesis; ZnO nanoparticles; germination tests; biostimulants of plant growth; Raphanus sativus; sorption of Cr(III) ions

Funding

  1. National Science Centre in Poland [2019/33/B/NZ9/01844]

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This study experimentally confirmed the effects of macroalgal extracts and zinc oxide nanoparticles on the germination and growth of radishes, as well as the ability of macroalgae and post-extraction residues to adsorb Cr(III) ions. The results demonstrated that macroalgae and products derived from them can be effectively utilized in both sustainable agriculture and wastewater treatment.
The aim of this study was to propose a complete approach for macroalgae biomass valorization into products useful for sustainable agriculture and environmental protection. In the first stage, the effects of macroalgal extracts and ZnO NPs (zinc oxide nanoparticles) on the germination and growth of radish were examined. Macroalgal extract was produced from freshwater macroalga, i.e., Cladophora glomerata by ultrasound assisted extraction (UAE). The extract was used to biosynthesize zinc oxide nanoparticles. In germination tests, extracts and solutions of ZnO NPs were applied on paper substrate before sowing. In the second stage, sorption properties of macroalga, post-extraction residue, and ZnO NPs to absorb Cr(III) ions were examined. In the germination tests, the highest values of hypocotyl length (the edible part of radish), i.e., 3.3 and 2.6 cm were obtained for 60 and 80% extract (among the tested concentrations 20, 40, 60, 80, and 100%) and 10 and 50 mg/L NPs, respectively. The highest sorption capacity of Cr(III) ions (344.8 mg/g) was obtained by both macroalga and post-extraction residue at a pH of 5 and initial Cr(III) ions concentration of 200 mg/L. This study proves that macroalgae and products based on them can be applied in both sustainable agriculture and wastewater treatment.

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