Figure 5. Cost comparison of the different technologies developed versus piped water supply and water tanker trucks. REFERENCES: [1] https://cdn.who.int/media/docs/default-source/wash-documents/washcoverage/jmp/jmp-2025-wash-households-lowreslaunch.pdf?sfvrsn=12ccab42_3&download=true [2] A. Franco, S. Ponce, J. Rodriguez, Actividad hidrogeológica del sur del Peru, una evaluación situacional de las cuencas de Sama y Locumba, Tecnia 22, 1(2012) 43-54. [3]C.M.C. de Meyer, J. M. Rodríguez, E. A. Carpio, P. A. García, C. Stengel, M. Berg, Arsenic, manganese and aluminum contamination in groundwater resources of Western Amazonia (Peru), Science of the Total Environment 607–608 (2017) 1437–1450. [4] Caroline M.C. de Meyer, Ingo Wahnfried, Juan M. Rodriguez Rodriguez, Rolf Kipfer, Pilar A. García Avelino, Edward A. Carpio Deza, Michael Berg Hotspots of geogenic arsenic and manganese contamination in groundwater of the floodplains in lowland Amazonia (South America) Sci Total Environ. 2023 Feb 20;860:160407. doi: 10.1016/j.scitotenv.2022.160407. Epub 2022 Nov 24. PMID: 36427729 [5] A. E. Gürel, Ü. Ağbulut, H. Bakır, A. Ergün, G. Yıldız, A state of art review on estimation of solar radiation with various models 9 (2023) e13167. [6] J. Diaz, J. Rodríguez , S. Ponce, J. Solís and W. Estrada, Solar Photocatalytic Decontamination of Phenol Using Pyrolytic TiO2 Films Deposited Inside Glass Tubing,. Solar Journal of Solar Energy Engineering, 129 (2007) 94-99. [7] A. Acevedo, E.A. Carpio, J. Rodríguez and M.A. Manzano, Disinfection of Natural Water by Heterogeneous Solar Photo-catalysis with immobilised TiO2: Efficacy in eliminating indicated bacteria and operating life of the systemL, J. Sol. Energy Eng. 134 (2012) 011008-011017. [8] J. Rodríguez, C. Jorge, P. Zúñiga, J. Palomino, P. Zanabria, J. L. Solís and W. Estrada, Solar water disinfection studies with supported TiO2 and polymer-supported Ru(II) sensitizers in a compound parabolic collector, J. Solar Energy Engineering, 132 (2010)1-5. [9] E. Gastelo, J. Montes de Oca, E. Carpio, J. Espinoza, P. García, S. Ponce, and J. Rodriguez, Elimination of Escherichia coli in Water Using Cobalt Ferrite Nanoparticles: Laboratory and Pilot Plant Experiments, Materials 12-13, 2103 (2019)1-12. [10] E. Gastello, D. Estrada, W. Estrada, C. Luyo, J. Espinoza, Silvia Ponce, J. Montes de Oca, D. Acosta, J. M. Rodriguez, "TiO2 films on CoFe2O4 nanoparticles for the Photocatalytic oxidation of Rhodamine B: Influence of the alcoholic solutions," Proc. SPIE 11371, International Workshop on Thin Films for Electronics, Electro-Optics, Energy, and Sensors 2019, 113710C [11] J. Martinez; M. Colán; R. Catillón; J. Huamán; R. Paria; L. Sánchez; Juan M. Rodríguez, Desalination Using the Capacitive Deionization Technology with Graphite/AC Electrodes: Effect of the Flow Rate and Electrode Thickness, Membranes, 12 (2022)717. [12]Jhonatan Martinez, Martín Colán, Ronald Castillón, Pierre Ramos, Robert Paria, Luis Sánchez and Juan M. Rodríguez, Fabrication of Activated Carbon Decorated with ZnO Nanorod-Based Electrodes for Desalination of Brackish Water Using Capacitive Deionization Technology, Int. J. Mol. Sci. 24(2) (2023) 1409. [13] E. Carpio, P. Zúñiga, S. Ponce, J. Solis, J. Rodriguez and W. Estrada, Photocatalytic degradation of phenol using TiO2 nanocrystals supported on activated carbon, J. Molecular catalysis A: Chemical, 228 (2005) 293-298
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