Effect of contaminated filtration sand on performance of household biosand filters

Household biosand filters are one point-of-use water treatment technology that can be used to provide clean drinking water to people living in communities without access to improved water supplies. There have been several studies investigating the importance of design variables on biosand filter performance, and biosand filters have been demonstrated to improve health outcomes in communities were they have been deployed. In constructing the biosand filter, it is recommended that sand from a rock quarry or gravel pit be used as filtration sand, as it is likely to be uncontaminated by waterborne pathogens. However, due to the cost or availability of sand from these sources, river sand may be used for filtration sand in a biosand filter. If the river water is contaminated with pathogens, it is likely that the sand will also be contaminated. In this study, we investigated the use of contaminated river sand on removal efficiencies of E. Coli and total coliforms from a biosand filter in the laboratory and installed in a community in Madagascar. We found that in the laboratory, the biosand filter constructed with contaminated sand had lower removal efficiencies than a filter constructed with clean sand over a 26 day period. In the field, we found that a biosand filter loaded with filtration sand obtained from a contaminated river performed well with removal efficiencies greater than 95%.

[1]  M. Sobsey,et al.  Evaluation of the Impact of the Plastic BioSand Filter on Health and Drinking Water Quality in Rural Tamale, Ghana , 2012, International journal of environmental research and public health.

[2]  T. Anderson,et al.  Hydraulic Loading Rate Effect on Removal Rates in a BioSand Filter: A Pilot Study of Three Conditions , 2012, Water, Air, & Soil Pollution.

[3]  Marion W. Jenkins,et al.  Bacterial, viral and turbidity removal by intermittent slow sand filtration for household use in developing countries: experimental investigation and modeling. , 2011, Water research.

[4]  Mark D Sobsey,et al.  A randomized controlled trial of the concrete biosand filter and its impact on diarrheal disease in Bonao, Dominican Republic. , 2009, The American journal of tropical medicine and hygiene.

[5]  Mark Elliott,et al.  Point of Use Household Drinking Water Filtration: A Practical, Effective Solution for Providing Sustained Access to Safe Drinking Water in the Developing World , 2008 .

[6]  D. Manz,et al.  Toxicant and parasite challenge of Manz intermittent slow sand filter , 1999 .

[7]  Susan Murcott,et al.  Reconsidering ‘appropriate technology’: the effects of operating conditions on the bacterial removal performance of two household drinking-water filter systems , 2007 .

[8]  M. Sobsey,et al.  Characterisation of the biosand filter for E. coli reductions from household drinking water under controlled laboratory and field use conditions. , 2006, Water science and technology : a journal of the International Association on Water Pollution Research.