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Sustainable sanitation, improved use of composting latrines through mixing and moisturizing: case study in Paraguay

Abstract

Providing sanitation for water-starved areas is crucial to environmental sustainability. Composting latrines are a sustainable sanitation method since they do not require water. However, little analysis has been done on the decomposition process occurring inside the latrine, including what temperatures are reached and what variables most affect the composting process. Having better knowledge of how outside variables affect composting latrines can aid designers and users on the choice, design, and use. Detailed field measurements of pit temperature in a latrine for several months were taken with the compost being frequently mixed and moistened. Ambient temperatures and the mixing of liquid to the compost resulted in temperature increases 100 % of the time, with seasonal ambient temperatures determining the rate and duration of the temperature increases. However, compost only reached total pathogen destruction levels in 10 % of the measurements. Storage time recommendation outlined by the World Health Organization should be complied with. If these storage durations are obtainable, the use of composting latrines is an economical and sustainable solution to sanitation while conserving water resources.

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References

  • Castro, C. J., Goodwill, J. E., Rogers, B., Henderson, M., & Butler, C. S. (2014). Deployment of the microbial fuel cell latrine in Ghana for decentralized sanitation. Journal of Water, Sanitation and Hygiene for Development, 4(4), 663–671.

    Article  Google Scholar 

  • CCME. (2005). Guidelines for compost quality. PN1340, Canadian Council of Ministers of the Environment, Winnipeg, Manitoba. R3C 1A3.

  • Cheng, T. C. (2012). General parasitology. Amsterdam: Elsevier.

    Google Scholar 

  • Clasen, T., Fabini, D., Boisson, S., Taneja, J., Song, J., Aichinger, E., et al. (2012). Making sanitation count, developing and testing a device for assessing latrine use in low-income settings. Environmental Science and Technology, 46(6), 3295–3303.

    Article  CAS  Google Scholar 

  • EPA. (2004). Report to congress, impacts and control of CSOs and SSOs. EPA 833-R-04-001, pp. 4–29, http://cfpub.epa.gov/npdes/cso/cpolicy_report2004.cfm.

  • Exley, J. L. R., Liseka, B., Cumming, O., & Ensink, J. H. J. (2015). The sanitation ladder, what constitutes an improved form of sanitation? Environmental Science and Technology, 49(2), 1086–1094.

    Article  CAS  Google Scholar 

  • Feachem, R. G., Bradley, D. J., & Garelick, H. (1980). Appropriate technology for water supply and sanitation. Washington, DC: The World Bank. (20433).

    Google Scholar 

  • Gonzalez, F. (2014). Personal conversation with Fernando Gonzalez the Agriculture Project Specialist for Peace Corps Paraguay. https://www.peacecorps.gov/contact/. Accessed 22 March 2016.

  • Haug, R. T. (1993). The practical handbook of compost engineering. Boca Raton, FL: Lewis Publishers.

    Google Scholar 

  • Jenkins, J. C. (2005). The humanure handbook. Grove City, PA: Joseph Jenkins Inc.

    Google Scholar 

  • Jenkins, M. W., & Cairncross, S. (2010). Modelling latrine diffusion in Benin: Towards a community typology of demand for improved sanitation in developing countries. Journal of Water and Health, 8(1), 166–183.

    Article  Google Scholar 

  • Knappett, P. S. K., McKay, L. D., Layton, A., Williams, D. E., Alam, M. J., Huq, M. R., et al. (2012). Implications of fecal bacteria input from latrine-polluted ponds for wells in sandy aquifers. Environmental Science and Technology, 46(3), 1361–1370.

    Article  CAS  Google Scholar 

  • Lin, J., Aoll, J., Niclass, Y., Velazco, M. I., Wünsche, L., Pika, J., & Starkenmann, C. (2013). Qualitative and quantitative analysis of volatile constituents from latrines. Environmental Science and Technology, 47(14), 7876–7882.

    Article  CAS  Google Scholar 

  • Mehl, J., Kaiser, J., Hurtado, D., Gibson, D. A., Izurieta, R., & Mihelcic, J. M. (2011). Pathogen destruction and solids decomposition in composting latrines, study of fundamental mechanisms and user operation in rural Panama. Journal of Water and Health, 9(1), 187–199.

    Article  Google Scholar 

  • Nayono, S., Singer, M., Lehn, H., & Kopfmüller, J. (2010). Sustainable sanitation as a part of an IWRM in the Karst Area of Gunung Kidul: Community acceptance and opinion. Water Practice & Technology,. doi:10.2166/wpt.2010.104.

    Google Scholar 

  • Pebler, P. (2015). Double vault composting latrines in rural Paraguay, feasible construction and optimal use. M.S. Thesis, Michigan Technological University, Houghton, MI.

  • Pickering, A. J., Julian, T. R., Marks, S. J., Mattioli, M. C., Boehm, A. B., Schwab, K. J., & Davis, J. (2012). Fecal contamination and diarrheal pathogens on surfaces and in soils among Tanzanian households with and without improved sanitation. Environmental Science and Technology, 46(11), 5736–5743.

    Article  CAS  Google Scholar 

  • Postel, S. L. (2000). Entering an era of water scarcity, the challenges ahead. Ecological Applications, 10(4), 941–948.

    Article  Google Scholar 

  • Reid, M. C., Guan, K., Wagner, F., & Mauzerall, D. L. (2014). Global methane emissions from pit latrines. Environmental Science and Technology, 48(15), 8727–8734.

    Article  CAS  Google Scholar 

  • Rodale, J. I. (1975). The complete book of composting. Emmaus, PA: Rodale Books Inc.

    Google Scholar 

  • Seckler, D., Barker, R., & Amarasainghe, U. (1999). Water scarcity in the twenty-first century. International Journal of Water Resources Development, 15(1–2), 29–42.

    Article  Google Scholar 

  • UNICEF. (2015) Access to water and sanitation, a few definitions; http://www.unicef.org/wcaro/french/4493_4620.html.

  • WHO. (2006). WHO guidelines for the safe use of wastewater, excreta and greywater. v. 4. Excreta and greywater use in agriculture. http://www.who.int/water_sanitation_health/publications/gsuweg4/en/. Accessed 22 March 2016.

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Correspondence to Brian D. Barkdoll.

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Pebler, P.T., Barkdoll, B.D. Sustainable sanitation, improved use of composting latrines through mixing and moisturizing: case study in Paraguay. Environ Dev Sustain 19, 1055–1066 (2017). https://doi.org/10.1007/s10668-016-9780-0

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  • DOI: https://doi.org/10.1007/s10668-016-9780-0

Keywords

  • Developing country
  • World Health Organization
  • Sanitation
  • Agriculture
  • Global climate change