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Reverse Osmosis: Pushing Water Uphill Through a Membrane
Mary

Creado por

Mary

23. septiembre 2026FI
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Reverse Osmosis: Pushing Water Uphill Through a Membrane

The solar still and the alembic both separate salt from water by evaporating the water — and both pay the latent heat of vaporisation to do it, about 2,400 kilojoules for every kilogram. That energy bill is why distillation stayed expensive for three thousand years. Reverse osmosis does the same separation without a phase change. Osmosis drives fresh water INTO brine through a membrane that passes water and rejects salt; push back harder than that osmotic pressure and the flow reverses, leaving the salt behind. The idea was old, but it was useless until Sidney Loeb and Srinivasa Sourirajan at UCLA made a cellulose acetate film in 1959 with a dense skin a fraction of a micrometre thick on a porous backing — thin enough to pass useful water, sound enough to hold back the salt (US 3,133,132). Every desalination plant since descends from that film.
Avanzado
1 day

Instrucciones

1

Understand what you are pushing against

Osmotic pressure is not friction and it is not the membrane resisting you. It is the pressure the salt solution would pull water in with, and you must exceed it before a single drop crosses the other way. For sea water at 35 grams per litre that is about 27 bar. For the brackish water most small systems treat, a few bar. This one number decides whether your build is a bicycle pump or an industrial plant, and the notebook later works it out for your own water.

Materiales para este paso:

SalSal35 g

Herramientas necesarias:

Báscula digitalBáscula digital
Probeta graduadaProbeta graduada
2

Get a membrane and treat it gently

Use a small domestic RO element — the kind sold for under-sink filters. Note which way round it runs: feed in, permeate out of the centre tube, concentrate out of the far end. Two things kill a membrane quickly. Chlorine destroys polyamide film in hours, so anything chlorinated must go through carbon first — and note the irony, because the previous rung in this batch was about deliberately adding chlorine. And letting it dry out permanently collapses the pore structure: a membrane that has dried never recovers its flux.

Materiales para este paso:

Membrana de ósmosis inversaMembrana de ósmosis inversa1 pieza
3

Build the pressure side

Plumb a feed vessel to the membrane through a pump with a gauge in the line, and lead two outlets away: permeate to one jar, concentrate to another through a restrictor. You need BOTH outlets flowing. A membrane run with the concentrate closed off becomes a dead end where salt piles up against the film — concentration polarisation — and the local osmotic pressure climbs until flow stops and scale forms. Every RO system in the world throws away a stream of concentrate; that is not waste, it is what carries the rejected salt out.

Materiales para este paso:

Tubo de siliconaTubo de silicona3 metre

Herramientas necesarias:

Bomba de pie para bicicletaBomba de pie para bicicleta
ManómetroManómetro
4

Make brackish water and run it

Dissolve 2 grams of salt per litre — brackish, not sea — and run it through at increasing pressure while you watch the permeate outlet. Below the osmotic pressure, nothing comes out. Cross it and permeate starts, slowly at first and then rising roughly in step with how far past it you push. Seeing that threshold with your own gauge is the whole point of building this: it is the moment an abstract equation becomes a thing you did with a pump.

Materiales para este paso:

SalSal20 g
Agua destiladaAgua destilada10 litros

Herramientas necesarias:

ManómetroManómetro
Probeta graduadaProbeta graduada
CronómetroCronómetro
5

Rejection, flux and the energy bill

Cargando el cuaderno de Jupyter…

Herramientas necesarias:

Probeta graduadaProbeta graduada
CronómetroCronómetro
6

Taste, test, and notice what is missing

Compare feed, permeate and concentrate. The permeate should read near neutral and taste flat; the concentrate should be noticeably saltier than what you started with, because the salt has to go somewhere. RO strips almost everything — salts, metals, most organics, and microbes, which are enormous compared to the pores. That completeness is also the criticism: it removes the calcium and magnesium the body uses, which is why large plants remineralise afterwards rather than delivering the pure product.

Herramientas necesarias:

Tiras reactivas de pHTiras reactivas de pH
Tarro de vidrioTarro de vidrio
7

Flush it, and never let it dry

Flush with clean water at low pressure for a few minutes after every run, to wash the concentrated layer off the film before it can crystallise. For storage, keep the element wet and cool. If you will not use it for weeks, store it in the preservative solution it came in. A dried-out membrane looks identical to a working one, and behaves like a blank sheet of plastic — the most expensive way there is to learn this lesson.

Materiales para este paso:

Agua destiladaAgua destilada5 litros

Herramientas necesarias:

Bomba de pie para bicicletaBomba de pie para bicicleta

Materiales

4

Herramientas requeridas

7

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