nanoe™ X
Quality air for life
Enriching lives around the world with quality airThree key elements of quality air design
- Control temperature and humidity
- Lower indoor contaminant levels by exhausting air and/or supplying fresh, filtered air
- Mitigate particulate matter, allergens and odours
We breathe around 20,000 times per day
Complete air purification
Return to a fresh smelling home every time
The origin of the name nanoe™
Characteristics and 5 Effects of nanoe™ X
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Odours
Eliminates common odours. -
Allergens
Inhibits pet-derived and other major allergens. -
Pollens
Inhibits pollens globally all year round. -
Hazardous substances
Breaks down/inhibits hazardous substances known to be found in PM2.5. -
Skin & hair
Moisturizes skin and makes hair straighter and sleeker.
How nanoe™ X works for odours
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nanoe™ X reliably reaches odours embedded in fibres.
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OH radicals break down odour-causing substances.
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Odour is eliminated.*4~11
How nanoe™ X works for allergens
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nanoe™ X reliably reaches allergens.
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OH radicals denature allergen proteins.
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Allergen is inhibited.*12
How nanoe™ X works for pollens
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nanoe™ X reliably reaches pollen.
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OH radicals denature pollen proteins.
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Pollen is inhibited.*13
How nanoe™ X works for hazardous substances
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nanoe™ X reliably reaches hazardous substance.
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OH radicals denature hazardous substance proteins.
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Hazardous substance is inhibited.*14
How nanoe™ X works for skin & hair
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Without nanoe™ X = dry skin
1. Moisture escapes and skin dries out.
2. Skin texture deteriorates and corneum sloughs off. -
With nanoe™ X = moisturized skin
1. nanoe™ X combines with natural sebum to coat the skin. 2. Leads to smooth, well hydrated skin.*15*16 -
Without nanoe™ X = frizzy hair
The hair's moisture balance falls, leading to frizzy hair. With difficulty reflecting light, gloss is reduced and texture is grainy. -
With nanoe™ X = smooth hair
Helps the hair achieve a proper moisture balance, making for shiny hair that reflects light and allows fingers to be run through it smoothly.*17
Eliminates Common Odours*⁴˜¹¹
Notes:
*1 Uchiyama, Iwao (Department of Occupational Health, National Institute of Public Health, Japan). “Air and Human Beings: from the Physiological Viewpoint“ (1999). https://ci.nii.ac.jp/naid/110008447936/
*2 Ministry of the Environment, Japan. Heat Illness Environmental Health Manual 2018,p.32, fig. 3-2. http://www.wbgt.env.go.jp/pdf/manual/heatillness_manual_3-1.pdf
*3 Energy consumption may vary depending on models.
*4 [Testing organization] Panasonic Product Analysis Center [Testing method] Verified using the six-level odour intensity scale method in an approximately 23㎥ sized test room [Deodorization method] nanoe™ released [Test substance] Surface-attached cigarette smoke odour [Test result] Odour intensity reduced by 2.4 levels in 12mins (4AA33-160615-N04)
*5 [Testing organization] Panasonic Product Analysis Center [Testing method] Verified using the six-level odour intensity scale method in an approximately 23㎥ sized test room [Deodorization method] nanoe™ released [Test substance] Surface-attached pet odour [Test result] Odour intensity reduced by 1.5 levels in 1 hour (4AA33-160315-A34)
*6 [Testing organization] Panasonic Product Analysis Center [Testing method] Verified using the six-level odour intensity scale method in an approximately 23㎥ sized test room [Deodorization method] nanoe™ released [Test substance] Surface-attached durian odour [Test result] Odour intensity reduced by 1 level in 0.5 hours (1V332-180402-K01)
*7 [Testing organization] Panasonic Product Analysis Center [Testing method] Verified using the six-level odour intensity scale method in an approximately 23㎥ sized test room [Deodorization method] nanoe™ released [Test substance] Surface-attached BBQ odour [Test result] Odour intensity reduced by 1.2 levels in 2 hours (4AA33-151221-N01)
*8 [Testing organization] Panasonic Product Analysis Center [Testing method] Verified using the six-level odour intensity scale method in an approximately 23㎥ sized test room [Deodorization method] nanoe™ released [Test substance] Surface-attached sweat odour [Test result] Odour intensity reduced by 1.1 levels in 1 hour (Y16HM016)
*9 [Testing organization] Panasonic Product Analysis Center [Testing method] Verified using the six-level odour intensity scale method in an approximately 23㎥ sized test room [Deodorization method] nanoe™ released [Test substance] Surface-attached damp odour [Test result] Odour intensity reduced by 1.7 levels in 0.5 hours (Y16RA002).
*10 [Testing organization] Panasonic Product Analysis Center [Testing method] Verified using the six-level odour intensity scale method in an approximately 23㎥ sized test room [Deodorization method] nanoe™ released [Test substance] Surface-attached garbage odour [Test result] <Methylmercaptan> Odour intensity reduced by 1.2 levels in 0.5 hours (1V332-18220-K11) <Trimethylamine> Odour intensity reduced by 1.4 levels in 0.5 hours (1V332-180220-K12)
*11 [Testing organization] Odour and Aroma Design Course, Department of Integrated Informatics, Faculty of Informatics, Daido University [Testing method] Verified using the six-level odour intensity scale method in an approximately 23㎥ sized test room [Deodorization method] nanoe™ released [Test substance] Simulated body odour of middle-aged and older people attached to pillow cover [Test result] Odour intensity reduced by 0.65 levels in 6 hours
Note: Deodorization effect varies according to the environment (temperature and humidity), operation time, odour, and fabric types. It does not eliminate toxic substances in cigarettes (carbon monoxide, etc.). Odours that are continuously generated (e.g., building material odours and pet odours) are not completely eliminated.
*12 [Testing organization] Panasonic Product Analysis Center [Testing method] Verified using the electrophoresis method in an approximately 23㎥ sized test room [Inhibition method] nanoe™ released [Test substance] Allergens (Dermatophagoides pteronyssinus, Dermatophagoides farina, Cedar, Cypress, Orchard grass, Ragweed, Alnus japonica, Japanese white birch, Artemisia, Olive, Juniper, Casuarina, Miscanthus, Timothy grass, Humulus japonicus, Alternaria, Aspergillus, Candida, Malassezia, Cockroach, Moth, Dog (dander), Cat (dander)) [Test result] Inhibiting effect was confirmed in 24 hours (4AA33-160615-F01, 4AA33-170301-F15, 4AA33-151001-F01, 4AA33-151028-F01, 4AA-33-160601-F01, 4AA33-160601-F02, 4AA33-160701-F01, 1V332-180301-F01, 4AA33-160615-F02, 4AA33-160615-F03, 4AA33-160620-F01)
Note: Results may vary based on usage, and seasonal and environmental variables (temperature and humidity).
*13 [Testing organization] Panasonic Product Analysis Center [Testing method] Verified using the electrophoresis method in an approximately 23㎥ sized test room [Inhibition method] nanoe™ released [Test substance] Cedar, Cypress, Orchard grass, Ragweed, Alnus japonica, Japanese white birch, Artemisia, Olive, Juniper, Casuarina, Miscanthus, Timothy grass, Humulus japonicus pollen [Test result] Inhibiting effect was confirmed in 24 hours (4AA33-151015-F01, 4AA33-151028-F01, 4AA33-160601-F01, 4AA33-160601-F02, 4AA33-160701-F01, 1V332-180301-F01)
Note: Results may vary based on usage, and seasonal and environmental variables (temperature and humidity).
*14 [Testing organization] Panasonic Product Analysis Center [Testing method] Measured the amount of attached organic substances in an approximately 23㎥ sized test room [Inhibition method] nanoe™ released [Test result] <Aromatic carboxylic acid (benzoic acid)> Broken down at least 99% in approximately 8 hours (Y17NF096) (Paraffin (hexadecane)> Broken down at least 99% in approximately 16 hours (Y17NF089)
Note: Results may vary based on usage, and seasonal and environmental variables (temperature and humidity).
*15 [Testing organization] Panasonic Product Analysis Center [Testing method] Rest period: 90 minutes, nanoe™ exposure time: 60 minutes, retention: 60 minutes. 8 women aged 30~49 with dry to normal skin. [Test result] Change in skin moisture content equivalent to a 20 percentage point increase from 30% --> 50% in environmental humidity (USG-KT-14K-012-TM)
*16 [Testing organization] FCG Research Institute, Inc. [Testing method and test result] Of 20 women 40 ± 2 years old, 10 women used a nanoe™ generating device at home for 28 days, while the other 10 women used a device with no nanoe™ generating device for 28 days at home (19104)
*17 [Testing organization] Panasonic Product Analysis Center [Testing method and test result] Approximately 46㎥ sized test room, room temperature 25 degrees Celsius, humidity 40%. Bundles (6 bundles) of hair were suspended 2m from a nanoe™ generating device, with repeated operation of the nanoe™ generating device: 8 hours on and 16 hours off. (USD-KS-15S-009-TM) [Method] nanoe™ released [Test substance] Hair
Note: Individual results may vary based on usage, and seasonal and environmental variables (temperature and humidity).