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1. Turn the Clean/Run Valve lever on the pump to its “Clean” position (see Figure 8).
2. Fill a clean plastic container or bucket with three quarts (approximately 3 liters) of clean
water. Freshwater is preferable, but clean seawater may be used if freshwater is not
available.
(Caution: Never use chlorinated freshwater. This may damage the membrane.)
3. Mix three spoonfuls (approximately 30 grams, or 1% by weight) of dry Membrane
Preservative chemical with the water in the container and stir until completely
dissolved.
4. Use your product 3-way valve (or move the product water output hose) to be sure that
any water flowing from the product freshwater output is properly discarded.
5. Turn the lever on the prefilter 3-way valve to the alternate intake position. Run the 1/4"
alternate intake hose with the strainer attached into the container of membrane
preservative solution.
6. Turn on the watermaker and run it until almost all of the membrane preservative has
been drawn from the container and foamy membrane preservative solution is ejecting
from the reject brine hose. If there is a chance that the watermaker will be subjected to
freezing conditions, continue to run until air is being ejected from the reject brine hose.
(Note: If the membrane freezes, it must be slowly and completely thawed before the
watermaker may be used again.)
7. Turn off the watermaker. It is now ready for storage for up to one year.
If seawater was used instead of freshwater, repeat the membrane preserving procedure with
freshwater as soon as possible. Repeat the above procedure at least once a year if the
watermaker is not being operated.
Cleaning the Membrane: We do not recommend casual or regular cleaning of the
reverse osmosis membrane in the watermaker—it should only be done when needed. Under
normal use conditions, when only open-ocean seawater is being
processed, cleaning the membrane should rarely (or never) be
necessary. Proper membrane preservative treatments prior to
extended periods of non-use will reduce biological growth on the
membrane surface. Under these conditions and with proper care, a
membrane can be used for years without requiring a cleaning.
Cleaning the membrane is only necessary if contaminants are
deposited on, and adhere to, the membrane surface in sufficient
amounts to affect the output of product freshwater. Usually this
condition also causes battery current to increase. There are two
main types of such deposits and a different chemical cleaner is
needed for each type:
Organic Growth—usually caused by processing
brackish water or failure to properly store a membrane during extended periods of
non-use. Use
Alkaline Cleaner.
Note: Buildup of
deposits and reduction
in product freshwater
flow usually take place
gradually over
extended periods of
time. Sudden reduction
or stopping of product
water output is rarely
caused by a dirty
membrane.
Mineral Scale—caused by mineral impurities in the intake water supply. Use
Acid Cleaner.
14
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