Open Access
Issue |
E3S Web Conf.
Volume 516, 2024
10th Conference on Emerging Energy and Process Technology (CONCEPT 2023)
|
|
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Article Number | 02006 | |
Number of page(s) | 5 | |
Section | Material Science | |
DOI | https://doi.org/10.1051/e3sconf/202451602006 | |
Published online | 15 April 2024 |
- W. Bedale, J. J. Sindelar, & A. L. Milkowski, Dietary nitrate and nitrite: Benefits, risks, and evolving perceptions. Meat Sci. 120, 85–92 (2016) [CrossRef] [PubMed] [Google Scholar]
- P. Singh, M. K. Singh, Y. R. Beg, & G. R. Nishad, A review on spectroscopic methods for determination of nitrite and nitrate in environmental samples. Talanta 191, 364–381 (2019) [CrossRef] [PubMed] [Google Scholar]
- E. Weitzberg, & J. O. Lundberg, Novel aspects of dietary nitrate and human health. Annu. Rev. Nutr. 33, 129–159 (2013) [CrossRef] [PubMed] [Google Scholar]
- Q. Fang, Q. Yu, E. Wang, Y. Chen, G. Zhang, J. Wang, & L. Li, Soil nitrate accumulation, leaching and crop nitrogen use as influenced by fertilization and irrigation in an intensive wheat–maize double cropping system in the North China Plain. Plant and Soil, 284, 1-2, 335–350 (2006) [CrossRef] [Google Scholar]
- D. Li, T. Wang, Z. Li, X. Xu, C. Wang, & Y. Duan, Application of Graphene-Based Materials for Detection of Nitrate and Nitrite in Water-A Review. Sensors (Basel), 20, 1 (2019) [CrossRef] [PubMed] [Google Scholar]
- R. K. A. Amali, H. N. Lim, I. Ibrahim, N. M. Huang, Z. Zainal, & S. A. A. Ahmad, Significance of nanomaterials in electrochemical sensors for nitrate detection: A review. Trends Environ. Anal. Chem. 31, e00135 (2021) [CrossRef] [Google Scholar]
- N. Ahmetovic, H. Keran, M. Djakovic, E. Karic, S. Brekalo-Lazarevic, V. Hadzic-Hasanovic, & E. Imširović, Risk Assesment of Nitrite Intake to Health. 4, 112–119 (2017) [Google Scholar]
- M. Laad, & B. Ghule, Removal of toxic contaminants from drinking water using biosensors: A systematic review. Groundw. Sustain. Dev. 20, 100888 (2022) [Google Scholar]
- K. Badgar, & J. Prokisch, Testing Toxicity and Antidote Effect of Selenium Nanoparticles with Paramecium caudatum. Open J. Anim. Sci. 11, 532–542 (2021) [CrossRef] [Google Scholar]
- M. Khatun, Z. Khatun, M. R. Karim, M. R. Habib, M. H. Rahman, & M. A. Aziz, Green synthesis of silver nanoparticles using extracts of Mikania cordata leaves and evaluation of their antioxidant, antimicrobial and cytotoxic properties. Food Chem. Adv. 3, 100386 (2023) [CrossRef] [Google Scholar]
- K. Kalishwaralal, S. Jeyabharathi, K. Sundar, S. Selvamani, M. Prasanna, & A. Muthukumaran, A novel biocompatible chitosan-Selenium nanoparticles (SeNPs) film with electrical conductivity for cardiac tissue engineering application. Mater. Sci. Eng. C Mater. Biol. Appl. 92, 151–160 (2018) [CrossRef] [Google Scholar]
- A. Hussain, M. N. Lakhan, A. Hanan, I. A. Soomro, M. Ahmed, F. Bibi, & I. Zehra, Recent progress on green synthesis of selenium nanoparticles – a review. Mater. Today Sustain. 23, 100420 (2023) [CrossRef] [Google Scholar]
- M. Vahdati, & T. Tohidi Moghadam, Synthesis and Characterization of Selenium Nanoparticles-Lysozyme Nanohybrid System with Synergistic Antibacterial Properties. Sci. Rep. 10, 510 (2020). [CrossRef] [Google Scholar]
- S. Cavalu, E. Kamel, L. Vasile, F. Luminita, T. Costea, I. Antoniac, S. Vicaş, Eco-friendly, Facile and Rapid Way for Synthesis of Selenium Nanoparticles Production, structural and morphological characterisation. Revista de Chimie, 12, (2017) [Google Scholar]
- L. Fritea, V. Laslo, S. Cavalu, T. Costea, & S. I Vicas, Green Biosynthesis of Selenium Nanoparticles using Parsley (Petroselinum crispum) Leaves Extract. Studia Universitatis “Vasile Goldis” Arad. Seria Stiintele Vietii (Life Sciences Series), 27(3), 203–208 (2017) [Google Scholar]
- M. I. Quirós-Fallas, F. Vargas-Huertas, S. Quesada-Mora, G. Azofeifa-Cordero, K. Wilhelm-Romero, F. Vásquez-Castro, M. Navarro-Hoyos, Polyphenolic HRMS Characterization, Contents and Antioxidant Activity of Curcuma longa Rhizomes from Costa Rica. Antioxidants (Basel), 11(4), 620 (2022) [CrossRef] [PubMed] [Google Scholar]
- S. J. Hewlings, & D. S. Kalman, Curcumin: A Review of Its Effects on Human Health. Foods, 6(10), 92 (2017) [CrossRef] [PubMed] [Google Scholar]
- R. Hassanien, A. A. I. Abed-Elmageed, & D. Z. Husein, Eco-Friendly Approach to Synthesize Selenium Nanoparticles: Photocatalytic Degradation of Sunset Yellow Azo Dye and Anticancer Activity. ChemistrySelect, 4(31), 9018–9026 (2019) [CrossRef] [Google Scholar]
- N. A. Mulla, S. V. Otari, R. A. Bohara, H. M. Yadav, & S. H. Pawar, Rapid and size-controlled biosynthesis of cytocompatible selenium nanoparticles by Azadirachta indica leaves extract for antibacterial activity. Mater. Lett., 264, 127353 (2020). [CrossRef] [Google Scholar]
- M. Ilangovan, V. Guna, C. Hu, G. S. Nagananda, & N. Reddy, Curcuma longa L. plant residue as a source for natural cellulose fibers with antimicrobial activity. Ind. Crops Prod. 112, 556–560 (2018) [CrossRef] [Google Scholar]
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