Implementation of a collection and chlorination system for automated purification

Authors

DOI:

https://doi.org/10.35381/r.k.v5i9.677

Keywords:

Drinking wáter, water treatment, public utilities, automation

Abstract

The general objective was to design and implement a collection and chlorination system for automated purification in Mollepamba, Ambato – Tungurahua. It was worked by the chlorination method. The chlorination system must adjust to the needs required by the inhabitants, for which reason three systems were proposed, considering for the village the most representative aspects for selection such as cost, mode of operation, number of inhabitants, according to the existing systems in the market. Being a system developed for human consumption, functionality tests were carried out on all the elements, subjecting them to field tests before their final installation, to ensure their correct operation, the elements were mounted on phenolic bakelite plates. Once the field tests were covered, the final installation was carried out.

Downloads

Download data is not yet available.

References

Academia Nacional de Ciencias (2018). El agua potable apta para el consumo es esencial. [Safe drinking water is essential]. Recuperado de https://n9.cl/6al9

Briñez K,Guarnizo J, Arias S. (2012). Calidad del agua para consumo humano en el departamento del Tolima. [Quality of water for human consumption in the department of Tolima].Rev. Fac. Nac. Salud Pública; 30(2): 175-182. Recuperado de https://n9.cl/06rt

Cárdenas, D, & Patiño, F. (2011). Sistema de Abastecimiento de Agua Potable. [Drinking Water Supply System]. Tesis de grado. Facultad de Ingeniería de la Universidad de Cuenca, Ecuador. Recuperado de https://n9.cl/gi71

Guillemes Peira, Á. (2015). Desarrollo de un sistema para la desinfección de agua de consumo mediante tratamiento electroquímico. [Development of a system for the disinfection of drinking water by electrochemical treatment]. Universidad, Ciencia y Tecnología, 19(75), 75-81. Recuperado de https://n9.cl/uzq0

HIDRITEC (2016). Sistemas de Cloración. [Chlorination Systems]. Recuperado de https://n9.cl/fv08

Instituto Ecuatoriano de Normalización (2011). NTE INEN 1108:2011. Cuarta revisión. [NTE INEN 1108: 2011. Fourth revision]. Recuperado de https://n9.cl/wvfd

Mercado Dávila, R., Márquez Rosano, C., Noriero Escalante, L., & Cervantes Herrera, J. (2019). Sistemas normativos locales sobre los derechos de uso y acceso al agua. [Local regulatory systems on water use and access rights]. Revista Arbitrada Interdisciplinaria Koinonía, 4(8), 489-522. http://dx.doi.org/10.35381/r.k.v4i8.296

Llamas, L. (2016). Detector de gases con Arduino y la familia de sensores MQ. [Gas detector with Arduino and the MQ family of sensors]. Recuperado de https://n9.cl/pzcf

Molina, E, Quesada, F, Calle, A, Ortiz, J, & Orellana, D. (2018). Consumo sustentable de agua en viviendas de la ciudad de Cuenca. [Sustainable water consumption in homes in the city of Cuenca]. Ingenius. Revista de Ciencia y Tecnología, (20), 28-37.

https://dx.doi.org/10.17163/ings.n20.2018.03

Pérez-Vidal, A., Díaz-Gómez, J., Salamanca-Rojas, K., & Rojas Torres, L. (2016). Evaluación del tratamiento de agua para consumo humano mediante filtros Lifestraw® y Olla Cerámica. [Evaluation of water treatment for human consumption using Lifestraw® filters and Ceramic Pot]. Revista de Salud Pública, 18(2), 275-289. https://doi.org/10.15446/rsap.v18n2.48712

Pérez de Diego, D. (2015). Sensores de distancia por ultrasonidos. [Ultrasonic distance sensors]. Recuperado de https://n9.cl/ak54l

Revista ARQHYS (2012). Sistema de agua potable. [Drinking water system]. Recuperado de https://n9.cl/j8ki

Published

2020-04-29

How to Cite

Orozco-Ramos, J. M., Cayán-Martínez, J. C., García-Cabezas, E. F., & Pilataxi-Contreras, G. (2020). Implementation of a collection and chlorination system for automated purification. Revista Arbitrada Interdisciplinaria Koinonía, 5(9), 508–527. https://doi.org/10.35381/r.k.v5i9.677

Issue

Section

De Investigación