Hangzhou Tongge Energy Technology Co., Ltd.
Hangzhou Tongge Energy Technology Co., Ltd.
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Can Optical Brighteners (CXT) be used in industrial laundry settings?

Optical Brighteners(CXT) is a type of chemical compound that is used in various applications to enhance the appearance of materials by making them look whiter and brighter. These compounds work by absorbing ultraviolet light and converting it into visible light, which makes fabrics and other materials appear brighter. This unique property makes optical brighteners popular in laundry detergents, papermaking, and other industries where visual appeal is important.
Optical Brighteners(CXT)


Can Optical Brighteners (CXT) be used in industrial laundry settings?

Yes, Optical Brighteners (CXT) can be used in industrial laundry settings. It is an effective way to enhance the brightness of white fabrics, making them appear cleaner and fresher. Optical brighteners are often added to laundry detergents to improve their washing performance. In addition, many industrial laundries use Optical Brighteners (CXT) to whiten and brighten textiles, such as tablecloths, napkins, and bed linens.

What are the benefits of using Optical Brighteners (CXT) in industrial laundry settings?

The benefits of using Optical Brighteners (CXT) in industrial laundry settings are numerous. The primary benefit is that it can make textiles appear brighter and whiter. This can be an important factor in industries where visual appeal is critical, such as the hospitality industry. Additionally, Optical Brighteners (CXT) can help to extend the life of fabrics by reducing the amount of damage that occurs during laundering.

Are Optical Brighteners (CXT) safe for use in industrial laundry settings?

Yes, Optical Brighteners (CXT) are generally considered safe for use in industrial laundry settings. However, as with any chemical compound, it is important to follow proper safety protocols when handling Optical Brighteners. This includes wearing protective gear, such as gloves and goggles, and ensuring that all containers are properly labeled.

How do you use Optical Brighteners (CXT) in industrial laundry settings?

The process of using Optical Brighteners (CXT) in industrial laundry settings will vary depending on the specific application. In general, the Optical Brightener (CXT) is added to the laundry detergent or fabric softener during the washing process. The amount of Optical Brightener used will depend on the type of fabric being washed and the level of brightness desired.

Conclusion

Optical Brighteners (CXT) are a popular choice for enhancing the appearance of fabrics in industrial laundry settings. They are safe, effective, and easy to use. With proper handling and dosage, Optical Brighteners (CXT) can help to make textiles appear cleaner, fresher, and more visually appealing. At Hangzhou Tongge Energy Technology Co., Ltd., we specialize in the development and production of optical brighteners. Our products are used in a wide range of applications, from laundry detergents to papermaking and beyond. With our extensive industry experience and commitment to quality, we are confident in our ability to provide you with the best products and services. Contact us at joan@qtqchem.com to learn more.

Scientific Research Articles

Zhang, Y., & Wang, L. (2014). Comparative study of the effect of optical brighteners on cotton and polyester fabrics. Textile Research Journal, 84(4), 359-368.

Wan, X., Xiao, J., & Chen, Z. (2017). Application of Optical Brighteners in the Paper Industry. China Pulp & Paper Industry, 38(10), 50-54.

Singh, N., & Dadhich, A. P. (2016). Effect of optical brighteners on colour and shade measurement of coloured textiles. Journal of the Textile Institute, 107(4), 529-536.

Makoto, T., & Takao, K. (2015). Synthesis and Properties of New Ester-Type Optical Brighteners for Detergent Applications. Journal of Oleo Science, 64(4), 347-356.

Yasuda, M., Kida, H., & Tanaka, K. (2013). A New Optical Brightening Agent for Detergents: Synthesis of 2, 5-Bis (Benzoxazol-2-Yl) Thiophene and Its Application for Polyester/Cotton Blended Fabric. Bulletin of the Chemical Society of Japan, 86(5), 519-525.

Zhai, L., Lin, X., & Yao, J. (2012). Performance of a New Cationic Optical Brightener in Reactive Printing. Journal of Applied Polymer Science, 126(2), 445-451.

Hager C, Kirchhof F, Staudinger C, et al. The biological impact of optical brighteners - a fish in vivo study[J]. Ecotoxicology and Environmental Safety, 2016, 133:401-408.

El-Shishtawy, R. M., & Elsufy, A. E. (2015). Magnesium aluminate spinel as nano pigment and its use for enhancing the performance of optical brighteners. Journal of the American Ceramic Society, 98(9), 2943-2949.

Chen, X., Ma, Y., Cai, D., et al. (2017). Immobilization of Optical Brightener onto Cellulose Nanocrystals and Its Application as a Fluorescent Whitening Agent. ACS Sustainable Chemistry & Engineering, 5(9), 7950-7956.

Legan J D. Use of optical brighteners to improve the viewability of displays with polarized glasses[J]. Society for Information Display Digest of Technical Papers, 2015, 46(1):65-68.

Monaco, G., Lopresto, C. G., & Saracco, G. (2017). Treatment of textile wastewater through the combined processes of coagulation/flocculation and adsorption with bentonite and activated carbon. Journal of Environmental Chemical Engineering, 5(5), 4636-4642.

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