TFTN 085-199 Installation and Operation Manual
41
Glycol, Snow Melt, and Oxygen Permeable Piping
–
When freeze protection is required, only multi metal inhibited
propylene glycol, at a minimum of 20% and a maximum of 50%, is allowed for use with boiler system. If the boiler is
being used with a snow melt system that requires a concentration of glycol higher than 50%, then a plate heat exchanger
is required to separate the snow melt system from the boiler water. Note: the use of glycol may reduce the usable
output capacity of the boil
er, thus requiring the unit to be “down
-
fired” by limiting the maximum operating capacity
and/or the maximum water temperature. If oxygen permeable piping (non-oxygen barrier tubing) is used in the system
a plate heat exchanger is required to separate it from the boiler water.
Ethylene glycol is prohibited for use with the boiler, only inhibited propylene glycol is allowed for
use with the boiler.
Water Treatment
–
When filling the boiler system, the water must be tested. Table 10-1 outlines the parameters that
should be tested for, and the corresponding ranges that are permitted. Water quality that does not fall within the stated
ranges will void the warranty of the boiler. Utilize proper testing equipment, such as digital meters, to verify water
quality.
Never use petroleum-based compounds in the system for cleaning or sealing.
Inhibitors should be used for all installations in both new and existing heating systems. Follow the instructions provided
by the inhibitor manufacturer when adding it to the system to ensure the correct concentration. A list of approved
inhibitors is provided below.
•
Rhomar Pro-tek 922
•
Sentinel X100
•
Fernox Protector F1
Table 10-1 Water Condition
Parameter
Range
Information
pH
7 to 9
The total pH scale ranges from 1 to 14, with 7 considered to
be neutral. A pH less than 7 is said to be acidic and solutions
with a pH greater than 7 are basic or alkaline.
Conductivity
100 to 300
μ
S/cm
Conductivity is an indirect method of determining the total
dissolved solids in the water. High conductivity in
untreated
water indicates hard water. Adding corrosion inhibitors will
increase conductivity.
Hardness
50 to 200 ppm
(3 to 11.7 gpg)
Artificially soft water can damage the system. The use of
un-softened water is recommended. Do
not
use distilled or
purified water.
Chlorine
150 ppm
High Chlorine content in the water can damage the boilers
heat exchanger.
Glycol (if applicable)
20-50%
Concentrations below 20% can promote bacteria growth,
and concentrations above 50% will dramatically reduce
efficiency and may require de-rating the boiler. Inhibited
glycol mixed at 50% should have a pH 8-9. Check with glycol
manufacturer.
Total Dissolved Solids (TDS)
50 to 300 ppm
TDS includes calcium and magnesium associated with lime scale
but also includes other harmful solids such as magnetite,
chlorides, sodium and other organic and inorganic materials.
Bacteria/Mold
none
Glycol above 20% will kill any bacteria.
Molybdate Corrosion Inhibitor
100 to 300 ppm
Film-forming inhibitor that protects against iron corrosion.