Design of Slow Sand Filter using Waste Material

Authors

  • Mohit Sharma  Department of Civil engineering, Tula’s Institute, Dehradun, Uttarakhand, India
  • Amandeep  Department of Civil engineering, Tula’s Institute, Dehradun, Uttarakhand, India
  • Manish Kr  Department of Civil engineering, Tula’s Institute, Dehradun, Uttarakhand, India
  • Nirmal Singh  Department of Civil engineering, Tula’s Institute, Dehradun, Uttarakhand, India
  • Ehsan  Department of Civil engineering, Tula’s Institute, Dehradun, Uttarakhand, India
  • Salahuddin  Department of Civil engineering, Tula’s Institute, Dehradun, Uttarakhand, India

Keywords:

Slow Sand Filter, Waste Material

Abstract

The improvement of water quality is closely associated with man-environment relationships. There should be a dialogue between all actors and the community when undertaking water and sanitation activities. For positive results and better sustainability, the community should be involved and participate at all stages of water development and environmental sanitation schemes. A combination of safe drinking water, adequate sanitation and hygiene practices like hand washing is a pre-requisite for morbidity and mortality rate reduction, especially among under five years old children in developing countries. To reduce the incidence and prevalence of diarrheal diseases, improvements in the availability, quantity, and quality of water, improved sanitation, and general personal and environmental hygiene are required. The majority of people in developing countries do not have access to piped drinking water and must carry; transport and store water within their homes and in the process the quality of water may deteriorate. Therefore, slow sand filtration has been recognized as an appropriate technology for drinking water treatment in rural areas, and is recognized as a suitable filtration technology for removing water borne pathogens and reducing turbidity. It is capable of improving the physical, chemical, and microbiological quality of water in a single treatment process without the addition of chemicals, and can produce an effluent low in turbidity and free of bacteria, parasites and viruses.

References

  1. Aluminum concentrations of sand filter and polymeric membrane filtrates: A comparative study Yoshihiko Matsui, Tairyo B. Ishikawa, Masaoki Kimura, Kaori Machida, Nobutaka Shirasaki, Taku Matsushita. 119 (2013) 58–65
  2. Baumann, R. E. 1975. Diatomite Filters for Asbestiform Fiber Removal from Water (Paper No 10-2c). Proceedings AWWA 95th Annual Conference; Research-Key to Quality Water Service in the 80’s.
  3. Lange, K. P., Bellamy, W. D., Hendricks, D. W., Logsdon, G.
  4. 1986. Diatomaceous Earth Filtration of Giardia Cysts and Other Substances. Journal American Water Works Association. 78(1): 76-84.
  5. Ongerth, J. E. 1990. Evaluation of Treatment for Removing Giardia Cysts. Journal American Water Works Association. 83(6): 85-96.
  6. Ongerth, J. E., Hutton, P. E. 2001. Testing of Diatomaceous Earth Filtration for removal of Cryptosporidium Oocysts. Journal American Water Works Association. 93(12): 54-63.
  7. Oram, B. F., Ghosh, M. M. 1987. Removal of Giardia Cysts and Other Contaminants Using Uncoated and Alum-Coated Diatomaceous Earth. 1987 Annual Conference Proceedings; American Water Works Association; Our Water Makes the Difference.
  8. Schuler, P. F., Ghosh, M. M. 1990. Diatomaceous Earth Filtration of Cysts and OtherParticulates Using Chemical Additives. Journal American Water Works Association. 82(12): 67-75.
  9. Spencer, C. M., Collins, M. R. 1990. Modifications of Precoat Filters with Crushed Granular Activated Carbon and Anionic Resin Improves Organic Precursor Removal.1990 Annual Conference Proceedings; American Water Works Association.

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Published

2023-06-30

Issue

Section

Research Articles

How to Cite

[1]
Mohit Sharma, Amandeep, Manish Kr, Nirmal Singh, Ehsan, Salahuddin "Design of Slow Sand Filter using Waste Material" International Journal of Scientific Research in Science, Engineering and Technology (IJSRSET), Print ISSN : 2395-1990, Online ISSN : 2394-4099, Volume 10, Issue 3, pp.529-532, May-June-2023.