Research Article

Optimization of Green Synthesis Parameters of Silver Nanoparticles with Factorial Design for Dye Removal

Volume: 10 Number: 3 September 29, 2023
EN

Optimization of Green Synthesis Parameters of Silver Nanoparticles with Factorial Design for Dye Removal

Abstract

In this study production of silver nanoparticles (AgNPs) from collard greens were optimized by the design of experiments (DOE). A 24 full factorial design was employed to evaluate the effects on two responses. The optimized values for AgNP production were 1:7 leaf to water, 1:4 extract to AgNO3, 5 molar AgNO3, and a leaf size of <1 mm. For dye removal efficiency, the optimized values were changed to 1:15 of leaf to water and 1:10 of extract to AgNO3, while the other two parameters remained the same. SEM (scanning electron microscopy) showed that optimizing the process for dye removal led to smaller AgNP production with increased surface area, resulting in higher absorbency. ANOVA (analysis of variance) tables were used to interpret each parameter's main and effects on interaction. Additionally, reaction rate kinetics were estimated, and dye removal showed a slightly higher R-square of pseudo second-order than NP production, which fits the pseudo first-order reaction model.

Keywords

Supporting Institution

Zonguldak Bulent Ecevit University

Project Number

2021-77047330-01

References

  1. Abdelghany, T. M., Al-Rajhi, A. M. H., Al Abboud, M. A., Alawlaqi, M. M., Ganash Magdah, A., Helmy, E. A. M., & Mabrouk, A. S. (2018). Recent Advances in Green Synthesis of Silver Nanoparticles and Their Applications: About Future Directions. A Review. BioNanoScience, 8(1), 5-16. doi:10.1007/s12668-017-0413-3
  2. Akter, M., Rahman, Md. M., Ullah, A. K. M. A., Sikder, Md. T., Hosokawa, T., Saito, T., & Kurasaki, M. (2018). Brassica rapa var. japonica Leaf Extract Mediated Green Synthesis of Crystalline Silver Nanoparticles and Evaluation of Their Stability, Cytotoxicity and Antibacterial Activity. Journal of Inorganic and Organometallic Polymers and Materials, 28(4), 1483-1493. doi:10.1007/s10904-018-0818-7
  3. Bala, A., & Rani, G. (2020). A review on phytosynthesis, affecting factors and characterization techniques of silver nanoparticles designed by green approach. International Nano Letters, 10(3), 159-176. doi:10.1007/s40089-020-00309-7
  4. Bhargavi, R. J., Maheshwari, U., & Gupta, S. (2015). Synthesis and use of alumina nanoparticles as an adsorbent for the removal of Zn(II) and CBG dye from wastewater. International Journal of Industrial Chemistry, 6(1), 31-41. doi:10.1007/s40090-014-0029-1
  5. Çimen, B., Şengül, S., Ergüt, M., & Özer, A. (2019). Green Synthesis and Characterization of CuO Nanoparticles: Telon Blue AGLF and Methylene Blue Adsorption. Sinop University Journal of Natural Sciences, 4(1), 1-20. doi:10.33484/sinopfbd.315643
  6. David, L., & Moldovan, B. (2020). Green Synthesis of Biogenic Silver Nanoparticles for Efficient Catalytic Removal of Harmful Organic Dyes. Nanomaterials, 10(2), 202. doi:10.3390/nano10020202
  7. Golli, R., Thummaneni, C., Pabbathi, D. D., Srungarapu, T., Jayasri, G., & Vangalapati, M. (2023). Silver nanoparticles synthesized by Brassica oleracea (Broccoli) acting as antifungal agent against Candida albicans. In: M. Seenuvasan, & D. M. Sangeetha (Eds.), Proceedings of the Second Global Conference on Recent Advances in Sustainable Materials 2022. Materials Today: Proceedings, (vol. 80, part 2, pp. 1495-1500). doi:10.1016/j.matpr.2023.01.284
  8. Imanzadeh, G., & Hadi, R. (2018). Brassica Oleraceae, A Versatile Plant For Green Synthesis of Silver Nanoparticles. Iranian Chemical Communication, 6(1), 70-77.

Details

Primary Language

English

Subjects

Environmental Nanotechnology and Nanometrology, Applied Statistics

Journal Section

Research Article

Early Pub Date

September 26, 2023

Publication Date

September 29, 2023

Submission Date

May 9, 2023

Acceptance Date

August 7, 2023

Published in Issue

Year 2023 Volume: 10 Number: 3

APA
Demirel Bayık, G., & Baykal, B. (2023). Optimization of Green Synthesis Parameters of Silver Nanoparticles with Factorial Design for Dye Removal. Gazi University Journal of Science Part A: Engineering and Innovation, 10(3), 327-340. https://doi.org/10.54287/gujsa.1294774
AMA
1.Demirel Bayık G, Baykal B. Optimization of Green Synthesis Parameters of Silver Nanoparticles with Factorial Design for Dye Removal. GU J Sci, Part A. 2023;10(3):327-340. doi:10.54287/gujsa.1294774
Chicago
Demirel Bayık, Gülçin, and Busenur Baykal. 2023. “Optimization of Green Synthesis Parameters of Silver Nanoparticles With Factorial Design for Dye Removal”. Gazi University Journal of Science Part A: Engineering and Innovation 10 (3): 327-40. https://doi.org/10.54287/gujsa.1294774.
EndNote
Demirel Bayık G, Baykal B (September 1, 2023) Optimization of Green Synthesis Parameters of Silver Nanoparticles with Factorial Design for Dye Removal. Gazi University Journal of Science Part A: Engineering and Innovation 10 3 327–340.
IEEE
[1]G. Demirel Bayık and B. Baykal, “Optimization of Green Synthesis Parameters of Silver Nanoparticles with Factorial Design for Dye Removal”, GU J Sci, Part A, vol. 10, no. 3, pp. 327–340, Sept. 2023, doi: 10.54287/gujsa.1294774.
ISNAD
Demirel Bayık, Gülçin - Baykal, Busenur. “Optimization of Green Synthesis Parameters of Silver Nanoparticles With Factorial Design for Dye Removal”. Gazi University Journal of Science Part A: Engineering and Innovation 10/3 (September 1, 2023): 327-340. https://doi.org/10.54287/gujsa.1294774.
JAMA
1.Demirel Bayık G, Baykal B. Optimization of Green Synthesis Parameters of Silver Nanoparticles with Factorial Design for Dye Removal. GU J Sci, Part A. 2023;10:327–340.
MLA
Demirel Bayık, Gülçin, and Busenur Baykal. “Optimization of Green Synthesis Parameters of Silver Nanoparticles With Factorial Design for Dye Removal”. Gazi University Journal of Science Part A: Engineering and Innovation, vol. 10, no. 3, Sept. 2023, pp. 327-40, doi:10.54287/gujsa.1294774.
Vancouver
1.Gülçin Demirel Bayık, Busenur Baykal. Optimization of Green Synthesis Parameters of Silver Nanoparticles with Factorial Design for Dye Removal. GU J Sci, Part A. 2023 Sep. 1;10(3):327-40. doi:10.54287/gujsa.1294774

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