Sustainable Greywater Treatment and Reuse for Irrigation in Rural Tanzania - A Case Study of Tumaini Open School
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Publicerad
Författare
Typ
Examensarbete för masterexamen
Master's Thesis
Master's Thesis
Modellbyggare
Tidskriftstitel
ISSN
Volymtitel
Utgivare
Sammanfattning
Climate change is expected to intensify water scarcity and increase pressure on water
and food security, highlighting the need for alternative water sources for agricultural
irrigation. Tumaini Open School in Tabora, Tanzania, experiences water scarcity and
unreliable water supply, while greywater is currently discharged directly into the envi
ronment. This project investigated the potential for treating and reusing greywater for
irrigation at the school through a system adapted to the local context.
The total weekly greywater generation was estimated to be 6000 L/week in Area I
(student area) and 3400 L/week in Area III (staff area) based on questionnaires and
volumetric measurements. Laundry and shower greywater contributed the largest share
of the total greywater generation. Water quality assessment showed that laundry grey
water was the most contaminated source in both areas particularly with respect to tur
bidity and electrical conductivity (EC). A prototype was constructed and operated for
15 consecutive days in order to evaluate the feasibility of a sand filter in terms of treat
ment performance. The prototype reduced average turbidity of kitchen greywater from
261 to 19 FNU, indicating effective removal of suspended particles. However, EC in
creased from 494 to 796 µS/cm after treatment, suggesting that dissolved salts were
not removed by the filter. A social acceptance questionnaire indicated positive attitudes
towards greywater reuse, especially with sufficient information and training prior to
implementation.
Based on the results from the volumetric measurements, prototype performance and
water quality assessment, a treatment system was proposed. A septic tank followed by
an intermittent sand filter (ISF) was dimensioned for Area I and Area III. The treat
ment system was estimated to provide sufficient treatment with regards to E. coli and
human health risks based on quantitative microbial risk assessment (QMRA). Overall,
the study indicates that greywater reuse has the potential to completely replace munic
ipal water for irrigation during the wet season and reduce municipal water demand by
approximately 85% during the dry season.
Beskrivning
Ämne/nyckelord
Water scarity; Rural; Greywater treatment; Greywater reuse; Irrigation; Quantitative microbial risk assessment; Intermittent sand filter
