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Improving Solar Distillation: Two-Stage Distillation

May 29, 2026/0 Comments/in Appropriate Technologies, Improving Performance, Solar Energy

In our recent post “Improving Solar Distillation, Part 1,” we talked about the traditional design for a solar still and pointed out some design weaknesses. Here we show Dr. Larry Winiarski’s suggested improvements to address those problems.

The distillation of brackish water is a two-stage process. Water is encouraged to evaporate and is then condensed. Sealing water inside an airtight vessel results in almost immediate saturation of the inside air. Until the water vapor is condensed, distillation cannot occur. As well, in a classic still, the condensing surface is warm and production of potable water occurs at a significantly reduced rate.

By transporting clean water vapor to a cool condensing surface, Dr. Winiarski addresses this problem. In his design with chimney, ambient air is warmed, improving its ability to absorb water vapor. Condensation then occurs underground, stripping the moving air of moisture. A large, cool surface area results in more effective condensation. A tall chimney acts as the engine, moving warmed air through the system. Air moving up the chimney is dry, after depositing the potable water into a receptacle.

https://aprovecho.org/wp-content/uploads/2026/05/solar_distillation_sm.jpg 422 1200 Kim Still https://aprovecho.org/wp-content/uploads/2015/11/Aprovecho-Logo.png Kim Still2026-05-29 13:15:572026-05-29 13:15:58Improving Solar Distillation: Two-Stage Distillation
Photo of a solar still

Improving Solar Distillation, Part 1

April 3, 2026/1 Comment/in Appropriate Technologies, Solar Energy
Photo of a solar still

A typical DIY solar still. (Image from LSU Ag Center)

In this type of solar still, salt water is put in a sealed box with an angled glass top. As sunlight entering the box heats up the water, it evaporates into fresh water, condenses on the glass top and runs down into a collector.

Dr. Larry Winiarski pointed out that traditional solar stills, as above, have problems:

• Sealing water inside a box results in almost immediate saturation of the air.  

• Until the water vapor is condensed, distillation cannot continue to occur.  

• In a classic still, the glass condensing surface is warm. Effective condensers are supposed to be cold.

To improve production, Larry moved the hot, humid air (EVAPORATION) to a cold surface (CONDENSATION).

He used a chimney to pull air through the system.

In the next post, we’ll check out his most successful design.

https://aprovecho.org/wp-content/uploads/2026/04/solar_still_LSU.jpg 1342 1200 Kim Still https://aprovecho.org/wp-content/uploads/2015/11/Aprovecho-Logo.png Kim Still2026-04-03 13:32:132026-04-03 14:00:08Improving Solar Distillation, Part 1

The Icy-Ball : A Heat Driven Refrigerator

January 30, 2026/0 Comments/in Appropriate Technologies

That’s an Icy-Ball (and a younger Dean) in a photo from ARC in 1994. Dr. Larry Winiarski and I built 18 somewhat scary prototypes and eventually made ice. We had replicated a pre-rural-electrification 1920s ammonia/water absorption refrigerator.

A fire heats the water/ammonia mixture and separates the ammonia out of the water (it turns into gas at a lower temperature). Then the pressure in the sealed system rises until the ammonia gas becomes a liquid. The Icy-Ball is taken off the fire and the small ball (full of liquid ammonia) is placed in an insulated box that has water (we made ice cubes) in it. The pressure in the system goes down and the liquid ammonia turns into gas robbing heat from the insulated box which freezes the water. The ice in the box cools food in the non-electric refrigerator. 

The basic absorption cycle function of this 1920s appropriate technology is still in use today in RV and Camper fridges, and in developing countries.

How amazing to make ice from fire!

Read more about it here: https://en.wikipedia.org/wiki/Icyball

https://aprovecho.org/wp-content/uploads/2026/01/dean_apro_icyball_94.jpg 782 557 Kim Still https://aprovecho.org/wp-content/uploads/2015/11/Aprovecho-Logo.png Kim Still2026-01-30 15:20:202026-01-30 15:20:22The Icy-Ball : A Heat Driven Refrigerator
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