Preparation of biological sustained-release nanocapsules and explore on algae-killing properties

The novel bio-based sustained-release nanocapsules was prepared by microcapsule technology. Comprehensive characterization and analysis were carried out to measure the sustained release and algae-killing properties of the new nanocapsules. [Display omitted] Green algae seriously affect the quality a...

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Veröffentlicht in:Journal of advanced research 2021-07, Vol.31, p.87-96
Hauptverfasser: Li, Jinyun, Guo, Ming, Wang, Yiping, Ye, Bihuan, Chen, Youwu, Yang, Xuejuan
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Sprache:eng
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Zusammenfassung:The novel bio-based sustained-release nanocapsules was prepared by microcapsule technology. Comprehensive characterization and analysis were carried out to measure the sustained release and algae-killing properties of the new nanocapsules. [Display omitted] Green algae seriously affect the quality and yield of Torreya grandis, it is important to explore new, environmentally friendly ways to control it. The present study aimed at preparing sustained-release algae-killing nanocapsules without pollution to the environment. In this work, sodium carboxymethylcellulose (CMC), sodium alginate (SA), and chitosan (CTS) were used as raw materials in acylation reaction with the photosensitive catalytic material iron octaaminophthalocyanine (T) to generate the photoactive bio-based materials T-CMC, T-SA, and T-CMCS. Cinnamaldehyde and 2-aminobenzimidazole were combined using chemical grafting to produce a new algicide, and then formed nanocapsules by phase separation. The molecular structure of products was characterized by UV–Vis, FTIR, and NMR (1H NMR, 13C NMR). The particle size of the nanocapsules was determined by Zeta particle size analysis and TEM; DSC was used to investigate the thermal stability; The encapsulation efficiency and sustained-release performance were determined by HPLC. Then the phytotoxic of the new algicide was measured. The bio-based nanocapsules was successfully synthesized, which had a particle size of 10–30 nm and was stable at 40 °C. The encapsulation efficiency of the nanocapsules was 48.77%, the cumulative release rate was 83%, and the new algicide killed the green algae in a dose-dependent way. The bio-based nano capsule is a new and valuable Sustained-release capsule, which is the method of green algae.
ISSN:2090-1232
2090-1224
DOI:10.1016/j.jare.2020.12.006