reinventing the toilet

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Reinventing the toilet

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Reinventing the toilet. Gates Foundation challenge. Condensing nanobeads. Waterless flush system. Nano -sprayer. Hollow fibre membrane. Pathogen free water. Action. Hollow fibre membrane. The membrane. Membrane data highlight. Condensing nanobeads. Pathogen free water. Condensing. - PowerPoint PPT Presentation

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Page 1: Reinventing the toilet

Reinventing the toilet

Page 2: Reinventing the toilet

Gates Foundation challenge

Page 3: Reinventing the toilet

Condensing nanobeads

Hollow fibre membranePathogen

free water

Waterless flush

system

Nano-sprayer

Page 4: Reinventing the toilet

Action

Page 5: Reinventing the toilet

Hollow fibre membrane

Page 7: Reinventing the toilet

7

Page 8: Reinventing the toilet

0.150.50.95000000000000110

0.1

0.2

0.3

0.4

0.5

0.6

Absolute pressure (bar)

Using constant sweep gas at 10 L.min -1 and varying vacuum

Water flux across dense

membrane (L.m-2.h-1)

Highest energy requirement, highest flux

Membrane data highlight

Page 9: Reinventing the toilet

Condensing nanobeads

Pathogen free water

Page 11: Reinventing the toilet

11

Page 12: Reinventing the toilet

Condensing results

Initial data sets benchmarking standard glass media have shown

~ 40 % water capture from the vapour stream

Page 13: Reinventing the toilet

Drainage rate (or passive collection)

Roughened glass beads TGA beads 1DT beads Silica gel0

20

40

60

80

100

Drained Retained in media

Rem

oval

effi

cien

cy (

%)

32˚ 67.7˚ 78.7˚

Synthetic urine vapour. Flow rate (4 LPM), BV (0.13 L), v (2.9 m/min), EBCT (1.95 s), temperature differential (<

2°C)

32.0°

Increased hydrophilicity apparently enhances moisture retentionDoes hydrophobicity govern drainage efficiency?

Page 14: Reinventing the toilet

Nano-sprayer

Page 15: Reinventing the toilet

Weetabix challenge

After 2 months at room temperature: dewatered and mould free