165
Views
1
CrossRef citations to date
0
Altmetric
Research Article

Identification of Wool and Cashmere Fibers by Preparation of Hollow-like Carbon Tubes after Carbonization

, , , , , & show all
Pages 14504-14514 | Published online: 02 May 2022

References

  • Allafi, F., M. S. Hossain, J. Lalung, M. Shaah, A. Salehabadi, M. I. Ahmad, and A. Shadi. 2020. Advancements in applications of natural wool fiber: review. Journal of Natural Fibers. doi:10.1080/15440478.2020.1745128.
  • Bergen, W. V. 1974. Wool handbook: a text and reference book for the entire wool industry. New York: John Wiley & Sons.
  • Cao, K. L. A., Y. Kitamoto, F. Iskandar, and T. Ogi. 2021. Sustainable porous hollow carbon spheres with high specific surface area derived from kraft lignin. Advanced Powder Technology 32 (6):2064–73. doi:10.1016/j.apt.2021.04.012.
  • Chen, W., X. Liu, R. He, T. Lin, Q. Zeng, and X. Wang. 2013. Activated carbon powders from wool fibers. Powder Technology 234:76–83. doi:10.1016/j.powtec.2012.09.026.
  • Eslahi, N., F. Dadashian, and N. H. Nejad. 2013. Optimization of enzymatic hydrolysis of wool fibers for nanoparticles production using response surface methodology. Advanced Powder Technology 24 (1):416–26. doi:10.1016/j.apt.2012.09.004.
  • Ji, W., L. Bai, M. Ji, and X. Yang. 2011. A method for quantifying mixed goat cashmere and sheep wool. Forensic Science International 208 (1–3):139–42. doi:10.1016/j.forsciint.2010.11.017.
  • Kerkhoff, K., G. Cescutti, L. Kruse, and J. Müssig. 2009. Development of a DNA-Analytical method for the identification of animal hair fibers in textiles. Textile Research Journal 79 (1):69–75. doi:10.1177/0040517508090488.
  • Kumar, R., S. Varshney, K. K. Kar, and K. Dasgupta. 2018. Enhanced thermo-mechanical and electrical properties of carbon-carbon composites using human hair derived carbon powder as reinforcing filler. Advanced Powder Technology 29 (6):1417–32. doi:10.1016/j.apt.2018.03.004.
  • Langley, K. D., and T. A. Kennedy. 1981. The identification of specialty fibers. Textile Research Journal 51 (11):703–09. doi:10.1177/004051758105101104.
  • Lu, K., Y. Zhong, D. Li, X. Chai, H. Xie, Z. Yu, and T. Naveed. 2017. Cashmere/wool identification based on bag-of-words and spatial pyramid match. Textile Research Journal 88 (21):2435–44. doi:10.1177/0040517517723027.
  • McGregor, B. A., X. Liu, and X. Wang. 2017. Comparisons of the fourier transform infrared spectra of cashmere, guard hair, wool and other animal fibres. The Journal of the Textile Institute 109 (6):813–22. doi:10.1080/00405000.2017.1372057.
  • Robson, D. 2000. Animal fiber analysis using imaging techniques Part II: addition of scale height data. Textile Research Journal 70 (2):116–20. doi:10.1177/004051759706701007.
  • Shi, X., and W. Yu. 2008. “A new classification method for animal fibers”. Paper presented at the 2008 International Conference on Audio, Language and Image Processing, Shanghai, China, July 7-9.
  • Subramanian, S., T. Karthik, and N. N. Vijayaraaghavan. 2005. Single nucleotide polymorphism for animal fibre identification. Journal of Biotechnology 116 (2):153–58. doi:10.1016/j.jbiotec.2004.10.015.
  • Tang, M., W. Zhang, H. Zhou, J. Fei, J. Yang, W. Lu, S. Zhang, S. Ye, and X. Wang. 2014. A real-time pcr method for quantifying mixed cashmere and wool based on hair mitochondrial DNA. Textile Research Journal 84 (15):1612–21. doi:10.1177/0040517513494252.
  • Utiu, L., D. E. Demco, R. Fechete, M. Möller, and C. Popescu. 2011. Morphology and molecular dynamics of hard α-keratin based micro-tubes by 1H and 13C solid-state NMR. Chemical Physics Letters 517 (1–3):86–91. doi:10.1016/j.cplett.2011.10.036.
  • Varley, A. R. 2006. A Modified Method of Cuticle Scale Height Determination for Animal Fibers. AATCC Review 6 (5):39–42.
  • Vineis, C., C. Tonetti, S. Paolella, P. Pozzo, and S. Sforza. 2013. A UPLC/ESI–MS method for identifying wool, cashmere and yak fibres. Textile Research Journal 84 (9):953–58. doi:10.1177/0040517513512394.
  • Wang, H., X. Liu, and X. Wang. 2005. FTIR and thermal analysis of cashmere and other animal fibres. International Cashmere Determination Technique Seminar. 21-25 September, Erodosi, China. pp. 217–228.
  • Wildman, A. B. 1955. The Microscopy of Animal Textile Fibres. Textile Research Journal 25 (7):662–63. doi:10.1177/004051755502500714.
  • Wortmann, F. J., and W. Arns. 1986. Quantitative Fiber Mixture Analysis by Scanning Electron Microscopy Part I: blends of mohair and cashmere with sheep’s wool. Textile Research Journal 56 (7):442–46. doi:10.1177/004051758605600708.
  • Wortmann, F. J., K. H. Phan, and P. Augustin. 2003. Quantitative fiber mixture analysis by scanning electron microscopy part vi: possibilities and limitations of the analysis of binary specialty fiber/wool blends in view of test method IWTO. Textile Research Journal 73 (9):781–86. doi:10.1177/004051750307300906.
  • Xing, W., Y. Liu, B. Xin, L. Zang, and N. Deng. 2020. The application of deep and transfer learning for identifying cashmere and wool fibers. Journal of Natural Fibers. doi:10.1080/15440478.2020.1727817.
  • Xing, W., B. Xin, N. Deng, Y. Chen, and Z. Zhang. 2019. A novel digital analysis method for measuring and identifying of wool and cashmere fibers. Measurement 132:11–21. doi:10.1016/j.measurement.2018.09.032.
  • Xu, W., W. Cui, W. Li, and W. Guo. 2004. Development and characterizations of super-fine wool powder. Powder Technology 140 (1–2):136–40. doi:10.1016/j.powtec.2003.12.010.
  • Yang, G., Y. Fu, X. Hong, and C. Wang. 2005. Discussion on cashmere fiber identification technique by SEM and IM. International cashmere determination technique seminar. 21-25 September, Erodosi, China. pp. 189–205.
  • Zang, L., B. Xin, and N. Deng. 2021a. Identification of wool and cashmere fibers based on multiscale geometric analysis. Journal of Natural Fibers. doi:10.1080/00405000.2021.1914399.
  • Zang, L., B. Xin, and N. Deng. 2021b. Identification of overlapped wool/cashmere fibers based on multi-focus image fusion and convolutional neural network. Journal of Natural Fibers 1–12. doi:10.1080/15440478.2021.1932669.
  • Zoccola, M., N. Lu, R. Mossotti, R. Innocenti, and A. Montarsolo. 2013. Identification of wool, cashmere, yak, and angora rabbit fibers and quantitative determination of wool and cashmere in blend: A near iifrared spectroscopy study. Fibers and Polymers 14 (8):1283–89. doi:10.1007/s12221-013-1283-0.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.