51 FORMACIÓN DE NANOHIDRÓXIDOS BASADOS EN BRUCITA Y LIMONENO: CARACTERIZACIÓN Y EVALUACIÓN ANTIMICROBIANA Toro, Silva, Velázquez, Castorena, Macías. 18. Boev B, Jovanovski G, Makreski P. Minerals from Macedonia. XX. Geological seng, lithologies, and idenficaon of the minerals from Rzanovo Fe-Ni deposit. Turkish Journal of Earth Sciences. 2009; 18(4), 631-652. 19. Liu X, Sato T, Opiso E, Yoneda T. Adsorpon and co-precipitaon behavior of fluoride onto Mg- bearing minerals in Si-Al-Mg mineral system at hyperalkaline condions. Clay Science. 2012; 16(2), 49-57. 20. Carré C, Zanibellato A, Jeannin M, Sabot R, Gunkel-Grillon P, Serres A. Electrochemical calcareous deposion in seawater. A review. Environmental Chemistry Leers. 2020; 18(4), 1193-1208. 21. Moore DE, Lockner DA. Comparave deformaon behavior of minerals in serpennized ultramafic rock: Applicaon to the slab-mantle interface in subducon zones. Internaonal Geology Review. 2007; 49(5), 401-415. 22. Pan X, Wang Y, Chen Z, Pan D, Cheng Y, Liu Z, et al. Invesgaon of anbacterial acvity and related mechanism of a series of nano-Mg(OH)2. ACS applied materials & interfaces. 2013; 5(3), 1137-1142. 23. Wang Y, Zhao J, Sha L, Zhu Y, Li X. Design of broad-spectrum anmicrobial polyethylene terephthalate fabrics by coang composited natural brucites. Journal of Materials Science. 2018; 53(3), 1610-1622. 24. Wang Y, Sha L, Zhao J, Li Q, Zhu Y, Wang N. Anbacterial property of fabrics coated by magnesium- based brucites. Applied Surface Science. 2017; 400(1), 413-419. 25. Zhu Y, Tang Y, Ruan Z, Dai Y, Li Z, Lin Z, et al. Mg(OH)2 nanoparcles enhance the anbacterial acvies of macrophages by acvang the reacve oxygen species. Journal of Biomedical Materials Research Part A. 2021; 109(11), 2369-2380.