Smart Water Purifier using TDS Sensing

S.R. Keethi, C.Karthick Raja, V.Janani Swetha, S. Sundar

Abstract


ABSTRACT

The objective of our device is to purify water in RO water purifier based on the total dissolved solids present in the water, A massive part of our population has no gain access to clean and drinkable water. Even though. There are many assets of clean water are available in most parts of the arena, many of such sources are Infected with natural as well as human sports. This paper puts the slight at the device that may clear up this Water infection problem by purifying the water as well as by means of monitoring the quality of the purified water. This Water purifier has a TDS sensor which senses the TDS level continuously. Another supplementary device that is fully operated on the solar power that notifies the user about the TDS level before purification and the water level of the source for water purifier. The sensor will Locate the change and could straight away generate a message about it. This message will be dispatched to the retailer as well As to the user to alert them. The process we're using for the Purification of water is reverse osmosis. Together with this module, smart cleaner has temperature sensor to monitor the temperature of the water popping out of the cleanser and fuel sensor for you to sense the LPG leakage within the Kitchen.

 

Keywords: TDS Sensing, PH Sensing, Water Level Indication, RO Water Purifier, sedimentation filters, RO filter, water treatment plant, web portal.

Cite this Article: S.R. Keethi, C. Karthick Raja, V. Janani Swetha, S. Sundar. Smart Water Purifier using TDS Sensing. International Journal Radio Frequency Design. 2019; 5(2): 33–36p.


References


Hybrid Membrane for Water Purification by Rajindar Singh Technology, Systems Design and Operations, ISBN: 9781856174428, eBook ISBN: 9780080458984, Elsevier Science, Page Count: 384.

Geoffrey M. Geise, Hae ‐ Seung Lee, Daniel J. Miller, Benny D. Freeman, James E. McGrath, Donald R. Paul, Water purification by membranes: The role of polymer science, Journal of polymer science, Wiley online library, https://doi.org/10.1002/polb.

Gryta, M. (2008). Chemical pretreatment of feed water for membrane distillation. Chemical Papers, 62(1),PP 100–105.

Gryta, M., 2010. Application of membrane distillation process for tap water purification. Membrane Water Treatment, 1(1), pp.1–12.

Ju, Hao, Alyson C. Sagle, Benny D. Freeman, James I. Mardel, and Anita J. Hill. "Characterization of sodium chloride and water transport in crosslinked poly (ethylene oxide) hydrogels." Journal of Membrane Science 358, no. 1–2 (2010): 131–141.

Geise, G. M., Paul, D. R., & Freeman, B. D. (2014). Fundamental water and salt transport properties of polymeric materials. Progress in Polymer Science, 39(1), 1–42.

Pendergast, MaryTheresa M., and Eric MV Hoek. "A review of water treatment membrane nanotechnologies." Energy & Environmental Science 4, no. 6 (2011): 1946–1971.

Corry, B., 2008. Designing carbon nanotube membranes for efficient water desalination. The Journal of Physical Chemistry B, 112(5), pp.1427–1434.

Fane, A. G., Wang, R., & Hu, M. X. (2015). Synthetic membranes for water purification: status and future. Angewandte Chemie International Edition, 54(11), 3368–3386.

Humplik, T., Lee, J., O’hern, S.C., Fellman, B.A., Baig, M.A., Hassan, S.F., Atieh, M.A., Rahman, F., Laoui, T., Karnik, R. and Wang, E.N., 2011. Nanostructured materials for water desalination. Nanotechnology, 22(29), p.292001.




DOI: https://doi.org/10.37628/jrfd.v5i2.1190

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