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1 March 27, 2022 1 PURO: reverse osmosis in a well Department of Water Management Section Sanitary engineering Bas Heijman
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120 June 20151 PURO: reverse osmosis in a well Department of Water Management Section Sanitary engineering Bas Heijman.

Dec 20, 2015

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Page 1: 120 June 20151 PURO: reverse osmosis in a well Department of Water Management Section Sanitary engineering Bas Heijman.

1April 18, 2023 1

PURO: reverse osmosis in a well

Department of Water ManagementSection Sanitary engineering

Bas Heijman

Page 2: 120 June 20151 PURO: reverse osmosis in a well Department of Water Management Section Sanitary engineering Bas Heijman.

2

Content

• Introduction reverse osmosis• Brackish water: sustainable source for drinking

water• Energy aspect of reverse osmosis• Is infiltration of concentrate sustainable?• Conclusions

• Other research into sustainable drinking water production

Page 3: 120 June 20151 PURO: reverse osmosis in a well Department of Water Management Section Sanitary engineering Bas Heijman.

3

Introduction reverse osmosis

Page 4: 120 June 20151 PURO: reverse osmosis in a well Department of Water Management Section Sanitary engineering Bas Heijman.

4

Content

• Introduction reverse osmosis• Brackish water: sustainable source for drinking

water• Energy aspect of reverse osmosis• Is infiltration of concentrate sustainable?• Conclusions

• Other research into sustainable drinking water production

Page 5: 120 June 20151 PURO: reverse osmosis in a well Department of Water Management Section Sanitary engineering Bas Heijman.

5

Brackish water: sustainable source for drinking water

Page 6: 120 June 20151 PURO: reverse osmosis in a well Department of Water Management Section Sanitary engineering Bas Heijman.

6

Brackish water: sustainable source for drinking water Nieuwe

Maas

-20

NAP

-10

-30

-40

-50

-60

-70

-80

-90

250m

deklaag

WVP ondiep

scheidende laag

WVP diep

<150 mg/l

150 – 300 mg/l

300 – 500 mg/l

500 – 1.000 mg/l

>1.000 mg/l

huidige RO-puttenReijerpark putten rivierzijde

Page 7: 120 June 20151 PURO: reverse osmosis in a well Department of Water Management Section Sanitary engineering Bas Heijman.

7

Brackish water: sustainable source for drinking water Nieuwe

Maas

-20

NAP

-10

-30

-40

-50

-60

-70

-80

-90

250m

deklaag

WVP ondiep

scheidende laag

WVP diep

<150 mg/l

150 – 300 mg/l

300 – 500 mg/l

500 – 1.000 mg/l

>1.000 mg/l

huidige RO-puttenReijerpark putten rivierzijde

Micropollutants

Water > 100 years in sub surface

Page 8: 120 June 20151 PURO: reverse osmosis in a well Department of Water Management Section Sanitary engineering Bas Heijman.

8

Brackish water: sustainable source for drinking water

Page 9: 120 June 20151 PURO: reverse osmosis in a well Department of Water Management Section Sanitary engineering Bas Heijman.

9

Brackish water: sustainable source for drinking water

• Option 1: discharge to channel

• Option 2: discharge to sea

• Option 3: infiltrate in the subsurface

12

3

Page 10: 120 June 20151 PURO: reverse osmosis in a well Department of Water Management Section Sanitary engineering Bas Heijman.

10

Brackish water: sustainable source for drinking water• RO submerged in a well• Hydrostatic pressure about 7 bar• No feed pump needed• Cross flow pump: about 1 bar• Permeate pump: about 7 bar• Extraction brackish water above RO• Infiltration concentrate (2x) beneath RO

Page 11: 120 June 20151 PURO: reverse osmosis in a well Department of Water Management Section Sanitary engineering Bas Heijman.

11

Energy aspect of reverse osmosis

Feed 50 m³/h8 bar

Permeate 25 m³/h0 bar

Concentrate 25 m³/h7 bar>>0 bar

Normal RO

+8 bar Sub-murged RO

+1 bar + 7 bar

Page 12: 120 June 20151 PURO: reverse osmosis in a well Department of Water Management Section Sanitary engineering Bas Heijman.

12

Energy aspect of reverse osmosis

• PURO 40% energy savings compared to normal brackish water RO

• Both RO’s calculated with 50% recovery• Substantial energy savings!

Page 13: 120 June 20151 PURO: reverse osmosis in a well Department of Water Management Section Sanitary engineering Bas Heijman.

13

Is infiltration of concentrate sustainable?

Page 14: 120 June 20151 PURO: reverse osmosis in a well Department of Water Management Section Sanitary engineering Bas Heijman.

14

Is infiltration of concentrate sustainable?

• In “Westland” about 1000 RO installations for farmers with infiltration of concentrate

• Province of South-Holland: no permits for farmers after 1013

• No alternative at this moment

Page 15: 120 June 20151 PURO: reverse osmosis in a well Department of Water Management Section Sanitary engineering Bas Heijman.

15

Is infiltration of concentrate sustainable?

• Decreasing fresh water reserve?• What is the water balans?• Faith of all the ions in the subsurface. Not only

NaCl but also ions like As, Pb, Hg etc.• How does the concept fit into regulations?

Province, Netherlands, Europe • How does the concept fit into future

regulations?

Page 16: 120 June 20151 PURO: reverse osmosis in a well Department of Water Management Section Sanitary engineering Bas Heijman.

16

Is infiltration of concentrate sustainable?

• At the same time: problems with salt intrusion:

Page 17: 120 June 20151 PURO: reverse osmosis in a well Department of Water Management Section Sanitary engineering Bas Heijman.

17

Is infiltration of concentrate sustainable? Nieuwe

Maas

-20

NAP

-10

-30

-40

-50

-60

-70

-80

-90

250m

deklaag

WVP ondiep

scheidende laag

WVP diep

<150 mg/l

150 – 300 mg/l

300 – 500 mg/l

500 – 1.000 mg/l

>1.000 mg/l

huidige RO-puttenReijerpark putten rivierzijde

Page 18: 120 June 20151 PURO: reverse osmosis in a well Department of Water Management Section Sanitary engineering Bas Heijman.

18

Conclusions

• Brackish water is a sustainable source for drinking water because of the absence of micro-pollutants

• PURO: 40% less energy consumption compared to conventional brackish water RO

• Concentrate infiltration is necessary within the PURO concept

• Concerns of concentrate infiltration important research topic

Page 19: 120 June 20151 PURO: reverse osmosis in a well Department of Water Management Section Sanitary engineering Bas Heijman.

19

Content

• Introduction reverse osmosis• Brackish water sustainable source for drinking

water• Energy aspect of reverse osmosis• Is infiltration of concentrate sustainable?• Conclusions

• Other research into sustainable drinking water production

Page 20: 120 June 20151 PURO: reverse osmosis in a well Department of Water Management Section Sanitary engineering Bas Heijman.

20

Drinking with the wind

• Several prototypes • Seawater: pressure 60 bar• Brackish water:

pressure 15 bar

Page 21: 120 June 20151 PURO: reverse osmosis in a well Department of Water Management Section Sanitary engineering Bas Heijman.

21

Drinking with the wind

• 3th windmill/RO combi• Cheap drink water for

10.000 people in Somaliland

• Drinkwater from brackish groundwater with RO

• Direct use of wind energy (no electricity)

Page 22: 120 June 20151 PURO: reverse osmosis in a well Department of Water Management Section Sanitary engineering Bas Heijman.

22

Ceramic filter pots• Desinfection • Point-of-use• Cheap• Local production • 22 factories

Page 23: 120 June 20151 PURO: reverse osmosis in a well Department of Water Management Section Sanitary engineering Bas Heijman.

23

Ceramic filter Pots

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2

3

4

5

6

7

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Clostridium spores

E.coli K12

MS2 bacteriophages