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ShanghaiProduct Model: ZCP0029
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Product Description
Sysmyk® Photovoltaic Glass Self-Cleaning Photocatalytic Nanocoating
[Product Code] ZCP0029
[Product Features]
ZCP0029 is a special one-component, room-temperature self-drying, dust-resistant, anti-fouling, and light-transmitting inorganic nanocoating developed by Hissen-Mech. The coating contains 5-nanometer-sized titanium dioxide particles and exhibits the ability to decompose bird droppings and oil stains. It employs the latest nano-silica fractal combination technology, enabling the formation of microscopically fine surface irregularities below 50 nm. After curing, the ultra-thin coating exhibits a hydrophilic contact angle of less than 10°. Being entirely inorganic, the coating boasts exceptional weather resistance and abrasion resistance. Moreover, it effectively suppresses static electricity on the substrate surface, making it difficult for dust to adhere. Even if dust does accumulate, it can self-clean upon contact with water, thereby consistently maintaining the transparency and cleanliness of photovoltaic glass surfaces. This helps reduce the degradation of photovoltaic module efficiency and increases the average power generation gain of conventional modules by 2.8% to 3.2%.
◼ Quick-drying at room temperature—surface dry in just 1–5 minutes; full curing takes 24 hours, with a hardness of over 4 hours (Japan’s Mitsubishi Pencil).
◼ Compared to the 1,000-cycle abrasion resistance of conventional superhydrophilic coatings, this product boasts an abrasion resistance of over 15,000 cycles. It features a purely inorganic composition, excellent weathering resistance, and provides protective effects for more than 3 years.
◼ Outstanding antistatic and wear-resistant performance; surface resistance ranging from 10⁶ to 10⁹ Ω, significantly reducing dust adhesion.
◼ High transparency, low reflectivity, and significant anti-reflection performance—after application, the reflectivity of photovoltaic module glass is reduced to 0.6–1.0, boosting power generation by more than 3%.
◼ Significant anti-reflection performance: After construction, the reflectivity of photovoltaic panels is reduced to 0.6–1.0.
◼ A water contact angle of less than 10° enables self-cleaning of surface dust or stains upon exposure to rainwater or condensation, reducing the frequency of cleaning.
◼ Highly efficient photocatalytic self-healing properties, decomposing bird droppings and oil stains, and resisting tar.
[Main Ingredients]
Nano-scale inorganic resins, catalysts, nano-silica, nano-tin dioxide, ethanol, water, and others
[Applicable Materials]
◼ Photovoltaic glass
◼ Solar photovoltaic modules
【Curing Method】
◼ Self-drying at room temperature; fully cured after 24 hours of standing.
【Scope of Application】
◼ Photovoltaic power plants in environments with severe oil and grease contamination (such as coal tar) – for example, near coal mines.
◼ Decomposition and treatment of bird droppings at fish-solar complementary photovoltaic power stations
[Technical Parameters]
[Construction Method]
◼ Pre-construction Preparation and Precautions
1. Before applying the coating, first assess the surface condition of the photovoltaic glass: Rinse the surface with clean water. If the surface exhibits a hydrophilic film, it indicates that there is no oily contamination and no residual anti-reflective coating present. In this case, you can directly proceed with dust removal and cleaning using plain water before applying the coating. If the surface shows slight shrinkage, dilute QCP0091S (a multi-purpose cleaner for photovoltaic glass) at a ratio of 1:10 with water and use it for cleaning. If the shrinkage is severe, it suggests that residual anti-reflective coatings are still present. To enhance adhesion, we recommend spraying QCP0091S (a multi-purpose cleaner for photovoltaic glass) directly onto the surface, waiting 30 seconds to 1 minute, and then using specialized cleaning equipment designed for photovoltaic glass to treat the surface. After treatment, simply rinse the surface thoroughly with clean water.
2. The cleaned surface should be coated promptly to prevent dust from settling again.
3. ZCP0029 cannot be directly applied by scraping onto hydrophobic surfaces, as this will reduce the coating’s adhesion.
4. Avoid construction when it’s raining.
◼ Construction Method
1. Use dedicated construction equipment for scraping and coating.
2. Manual labor: 4 workers per machine per day can complete 2,000 square meters of construction; robotic labor: 2 workers per machine per day can complete 5,000 square meters of construction.
3. One-time treatment, valid for 3 years
[Storage]
Recommended storage temperature: 18–25℃
Shelf life: 6 months
[Packaging]
20L/bucket