References

  1. A.B. Md Gulzar, P. Behari Mazumder, Use of Nanoparticles for Environmental Remediation, R. Garg, R. Garg, N.O. Eddy, Eds., Handbook of Research on Green Synthesis and Applications of Nanomaterials, IGI Global Engineering Science, United States of America, 2022, pp. 223–246.
  2. N. Noah, Chapter 6 – Green Synthesis: Characterization and Application of Silver and Gold Nanoparticles, A.K. Shukla, S. Iravani, Eds., Green Synthesis, Characterization and Applications of Nanoparticles: Micro and Nano Technologies, Elsevier, 2019, pp. 111–135.
  3. S. Kr. Sharmaa, N. Mumtaz, T. Izhar, Adsorption of chromium from tannery effluent by using neem (Azadirachta indica) leaves as a low-cost adsorbent, Int. J. Emerging Technol. Eng. Res. (IJETER), 4 (2016) 236–239.
  4. R. Dhruva, B. Sursh, An investigation of effect of natural coagulant (Tulsi) for reduction of pH, turbidity, and COD from sewage water, Res. J. Eng. Technol., 3 (2016) 69–72.
  5. T. Wang, X. Jin, Z. Chen, M. Megharaj, R. Naidu, Green synthesis of Fe nanoparticles using Eucalyptus leaf extracts for treatment of eutrophic wastewater, Sci. Total Environ., 466–467 (2014) 210–213.
  6. K.O. Shittu, O. Ihebunna, Purification of simulated wastewater using green synthesized silver nanoparticles of Piliostigma thonningii aqueous leave extract, Adv. Nat. Sci.: Nanosci. Nanotechnol., 8 (2017) 045003, doi: 10.1088/2043-6254/aa8536.
  7. S. Jain, M. Singh Mehata, Medicinal plant leaf extract and pure flavonoid mediated green synthesis of silver nanoparticles and their enhanced antibacterial property, Sci. Rep., 7 (2017) 15867,
    doi: 10.1038/s41598-017-15724-8.
  8. E. Rosales, M. Ángeles Sanromán, C. Dias-Ferreira, Green zerovalent iron nanoparticles synthesized using herbal extracts for degradation of dyes from wastewater, Desal. Water Treat., 91 (2017) 159–167.
  9. M. Mukhtar, F. Khawar, M. Imran Din, A. Aihetasham, Z. Hussain, R. Khalid, R. Rehan, Bio-reduction potentials of Gentiana kurroo Royle for single-step bio-genic production of silver nanoparticles, Desal. Water Treat., 183 (2020) 248–252.
  10. C. Vanlalveni, S. Lallianrawna, A. Biswas, M. Selvaraj, B. Changmai, S.L. Rokhum, Green synthesis of silver nanoparticles using plant extracts and their antimicrobial activities: a review of recent literature, RSC Adv., 11 (2021) 2804–2837.
  11. A. Ghaffar, S. Kiran, M. Asim Rafique, S. Iqbal, S. Nosheen, Y. Hou, G. Afzal, M. Bashir, U. Aimun, Citrus paradisi fruit peel extract mediated green synthesis of copper nanoparticles for remediation of Disperse Yellow 125 dye, Desal. Water Treat., 212 (2021) 368–375.
  12. A. Rautela, J. Rani, M Debnath (Das), Green synthesis of silver nanoparticles from Tectona grandis seeds extract: characterization and mechanism of antimicrobial action on different microorganisms, J. Anal. Sci. Technol., 10 (2019) 5, doi: 10.1186/s40543-018-0163-z.
  13. A. Yan, Y. Wang, S. Ngin Tan, M. Lokman Mohd Yusof, S. Ghosh, Z. Chen, Phytoremediation: a promising approach for revegetation of heavy metal-polluted land, Front. Plant Sci., 11 (2020), doi: 10.3389/fpls.2020.00359.
  14. K.C. Sekhar, C.T. Kamala, N.S. Chary, Y. Anjaneyulu, Removal of heavy metals using a plant biomass with reference to environmental control, Int. J. Miner. Process., 68 (2003) 37–45.
  15. U.B. Oğütveren, M. Öğütveren, Green synthesis of iron nanomaterials by plants and their use in removal of pollutants from wastewaters – a review, Desal. Water Treat., 78 (2017) 141–154.