PRODUCTION OF SILVER NANOPARTICLE FROM CHLORELLA VULGARIS AND DUNALIELLA SALINA

Green microalgae have advantages as they are easily available, grow rapidly and produce various secondary metabolites including carotenoids, fatty acids, proteins and lipids. Synthesis of nanosilver microalgae C. vulgaris and D. salina offers environmental antimicrobial and biomedical agent. The obj...

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Main Authors: Hermin P. Kusumaningrum, Muhammad Zainuri, Indras Marhaendrajaya
Format: Article
Language:English
Published: Alma Mater Publishing House "Vasile Alecsandri" University of Bacau 2018-12-01
Series:Scientific Study & Research: Chemistry & Chemical Engineering, Biotechnology, Food Industry
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Online Access:http://pubs.ub.ro/?pg=revues&rev=cscc6&num=201804&vol=4&aid=4794
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author Hermin P. Kusumaningrum
Muhammad Zainuri
Indras Marhaendrajaya
author_facet Hermin P. Kusumaningrum
Muhammad Zainuri
Indras Marhaendrajaya
author_sort Hermin P. Kusumaningrum
collection DOAJ
description Green microalgae have advantages as they are easily available, grow rapidly and produce various secondary metabolites including carotenoids, fatty acids, proteins and lipids. Synthesis of nanosilver microalgae C. vulgaris and D. salina offers environmental antimicrobial and biomedical agent. The objective of this study was to produce silver nanoparticle (SNP) microalgae using C. vulgaris and D. salina as an eco-friendly antimicrobial agent. This research method was conducted by synthesizing silver nanoparticle microalgae using C. vulgaris and D. salina along with characterization under UV–visible spectroscopy, transmission electron microscopy (TEM), and scanning electron microscope (SEM) and Energy-dispersive X-ray spectroscopy (EDX). The results showed that SNP of C. vulgaris and D. salina microalgae could be produced using agitation treatments. The synthesized AgNPs C. vulgaris and D. salina exhibited maximum absorption at 398 nm, and EDX analysis had determined that the abundance of chemical elements presented in the sample is carbon (53 %) and silver (32 %). TEM analysis revealed that they had spherical form with a size of 9.3 nm. The spot of EDX analysis shows the presence of silver atoms in both microalgae. SEM analysis shows a spherical shape with an average size of 50 nm with several silver particles in the cell. These results indicate that the formation of SNP using C. vulgaris and D. salina microalgae has been successfully obtained under agitation treatment.
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publishDate 2018-12-01
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spelling doaj-art-f59d9ad855f04d67939e06ff0dbdcd5a2025-08-20T02:13:36ZengAlma Mater Publishing House "Vasile Alecsandri" University of BacauScientific Study & Research: Chemistry & Chemical Engineering, Biotechnology, Food Industry1582-540X1582-540X2018-12-01194385394PRODUCTION OF SILVER NANOPARTICLE FROM CHLORELLA VULGARIS AND DUNALIELLA SALINAHermin P. Kusumaningrum0Muhammad Zainuri1Indras Marhaendrajaya2University Diponegoro, Faculty of Sciences and Mathematics/Department of Biology, Jl. Prof Sudharto SH Tembalang 50275, Semarang, Indonesia University Diponegoro, Faculty of Fisheries and Marine Sciences/Department of Oceanography, Jl. Prof Sudharto SH Tembalang 50275, Semarang, IndonesiaUniversity Diponegoro, Faculty of Sciences and Mathematics/Department of Physics, Jl. Prof Sudharto SH Tembalang 50275, Semarang, IndonesiaGreen microalgae have advantages as they are easily available, grow rapidly and produce various secondary metabolites including carotenoids, fatty acids, proteins and lipids. Synthesis of nanosilver microalgae C. vulgaris and D. salina offers environmental antimicrobial and biomedical agent. The objective of this study was to produce silver nanoparticle (SNP) microalgae using C. vulgaris and D. salina as an eco-friendly antimicrobial agent. This research method was conducted by synthesizing silver nanoparticle microalgae using C. vulgaris and D. salina along with characterization under UV–visible spectroscopy, transmission electron microscopy (TEM), and scanning electron microscope (SEM) and Energy-dispersive X-ray spectroscopy (EDX). The results showed that SNP of C. vulgaris and D. salina microalgae could be produced using agitation treatments. The synthesized AgNPs C. vulgaris and D. salina exhibited maximum absorption at 398 nm, and EDX analysis had determined that the abundance of chemical elements presented in the sample is carbon (53 %) and silver (32 %). TEM analysis revealed that they had spherical form with a size of 9.3 nm. The spot of EDX analysis shows the presence of silver atoms in both microalgae. SEM analysis shows a spherical shape with an average size of 50 nm with several silver particles in the cell. These results indicate that the formation of SNP using C. vulgaris and D. salina microalgae has been successfully obtained under agitation treatment.http://pubs.ub.ro/?pg=revues&rev=cscc6&num=201804&vol=4&aid=4794EDXmicroalgaeSEMSNPTEM
spellingShingle Hermin P. Kusumaningrum
Muhammad Zainuri
Indras Marhaendrajaya
PRODUCTION OF SILVER NANOPARTICLE FROM CHLORELLA VULGARIS AND DUNALIELLA SALINA
Scientific Study & Research: Chemistry & Chemical Engineering, Biotechnology, Food Industry
EDX
microalgae
SEM
SNP
TEM
title PRODUCTION OF SILVER NANOPARTICLE FROM CHLORELLA VULGARIS AND DUNALIELLA SALINA
title_full PRODUCTION OF SILVER NANOPARTICLE FROM CHLORELLA VULGARIS AND DUNALIELLA SALINA
title_fullStr PRODUCTION OF SILVER NANOPARTICLE FROM CHLORELLA VULGARIS AND DUNALIELLA SALINA
title_full_unstemmed PRODUCTION OF SILVER NANOPARTICLE FROM CHLORELLA VULGARIS AND DUNALIELLA SALINA
title_short PRODUCTION OF SILVER NANOPARTICLE FROM CHLORELLA VULGARIS AND DUNALIELLA SALINA
title_sort production of silver nanoparticle from chlorella vulgaris and dunaliella salina
topic EDX
microalgae
SEM
SNP
TEM
url http://pubs.ub.ro/?pg=revues&rev=cscc6&num=201804&vol=4&aid=4794
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AT indrasmarhaendrajaya productionofsilvernanoparticlefromchlorellavulgarisanddunaliellasalina