Hydromx – Energy Saving Nanofluid
Hydromx® is a revolutionary heat transfer fluid that contains Nano-ThermoTM technology. Hydromx® uses stably suspended nano-particles to increase the speed of heat transfer, by heating up (or removing heat from) the fluid and transferring energy in a shorter amount of time, thereby requiring significantly less energy.
It is used to Improve the Efficiency of water-cooled chillers, Heat pumps, and hot water generator units used in various industries. It comes in two variants One is blue which is used in agro-based industries as it is a food-grade material another one is Red which is used in various Industries such as Pharma, hotels, Hospitals, and other kinds of Building Systems.
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Key Features:
- Operating range of -58 °F to +250°F
- Up to 35% savings vs water/glycol
- Return on Investment within 2 years
- 100% Freeze Protection
- Reduced carbon emission
- No equipment change is required
- 8 years manufacturer’s warranty
- 15-20 years of life expectancy
- Non-corrosive
- Increases equipment life
- Recyclable
- Non-carcinogenic
- Non-flammable or explosive
- Academia supported
- 100% Insured
Application:
Hydromx® is most suitable for closed-loop heating and cooling systems where efficiency will be achieved by diminishing run-time of associated equipment. Hence drastic increase in equipment life will be established along with less maintenance expenses. Boilers and Chillers are the best examples of where Hydromx can be used.
Higher thermal conductivity of nano particles will increase the heat transfer rate. No matter what the energy source, or how efficient the boiler or chiller is, Hydromx® improves the efficiency of the whole system by transferring energy more effectively.
Successful employment of Hydromx® will lead to lighter and smaller manufacturer components going forward.
Scientific Specification:
Hydromx Measurement Parameters |
Method |
Hydromx (100%) |
Hydromx Solution |
Colour (at 20° C ) |
ASTM D 1500 |
Red |
Red |
Odour (at 20° C ) |
Intrinsic |
Intrinsic |
|
pH (at 20° C ) |
ASTM D1287 |
8.20 ‐8.80 |
8.20 ‐8.80 |
Concentration (at 20°C) |
Refractometric measurement |
1.36 |
|
Total Suspended Solid (TSS) |
TS 9546 EN 12880 |
<0.1 |
|
Dissolved oxygen (mg/lt) |
SM-‐4500 OG |
8.46 |
|
Humidity Weight |
TS 9546 EN 12880 |
%100 |
|
Freezing Point |
Potential diferences reading by multimeter, under application of liquid nitrogen. |
‐73°C |
‐61°C |
Boiling Point |
Heating in atmospheric conditions and, temperature measurement by thermocouple |
200°C |
118°C |
Vapor Pressure (at 25°C ) |
ASTM d6378 (at 25°C ) | DVPE : 2.9 kPA ASVP : 3.8 kPA |
|
Vapor Pressure (at 50°C ) |
ASTM d6378 (at 50°C) | DVPE : 8.3 kPA ASVP : 9.6 kPA |
|
Vapor Pressure (at 80°C ) |
ASTM d6378 (80°C) |
RVPE : 6.7 kPA ASVP : 10.1 kPA |
RVPE : 36.4 kPA, ASVP : 39.0 kPA |
Density (g/cm³) | Pycnometer (at 25°C ) |
1.122 |
1.065 |
Electrical Conductivity (City Water 401(µS)) |
Conductometer (Hanna Branded) (at 25°C) |
90 |
570 |
Total Fe (ppm) (City Water: 0.069) |
Atomic Absorbtion Spectrometer |
0.169 |
0.0565 |
Dynamic Viscosity (Pa.s) (at 20°C) |
Malvern Bohlin Gemini II Rotational Rheometer | 2.5 10ˉ² | 7.2 10ˉ³ |
Kinematic Viscosity (Pa.s) (at 20°C ) |
Dynamic viscosity divided by density | 2.228 10¯² | 6.76 10¯³ |
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