Register      Login
Australian Journal of Biological Sciences Australian Journal of Biological Sciences Society
Biological Sciences

Articles citing this paper

The Chemical Composition of Wool

JH Bradbury and GV Chapman
17(4) pp.960 - 972


32 articles found in Crossref database.

Morphological Composition of the Cuticle from Chemically Treated Wool
Roper K., Föhles J., Peters D., Zahn H.
Textile Research Journal. 1984 54(3). p.139
States of Water Sorbed on Wool as Studied by Differential Scanning Calorimetry
Sakabe Hiroshi, Ito Hiraku, Miyamoto Takeaki, Inagaki Hiroshi
Textile Research Journal. 1987 57(2). p.66
A facile and eco-friendly approach for preparation of microkeratin and nanokeratin by ultrasound-assisted enzymatic hydrolysis
Zhang Yipeng, Zhang Nan, Wang Qiang, Wang Ping, Yu Yuanyuan
Ultrasonics Sonochemistry. 2020 68 p.105201
Performance of Bio-based Building Materials (2017)
The chemical composition of wool 7. Separation and analysis of orthocortex and paracortex
Chapman G.V., Bradbury J.H.
Archives of Biochemistry and Biophysics. 1968 127 p.157
The Coloration of Wool and other Keratin Fibres (2013)
Rippon John A.
Effect of Formic Acid Treatments at Elevated Temperatures and Ultrasonication on the Scale Removal and Fiber Splitting of Wool
Bae Chang Hyun, Kim Mi Kyung, Choi Woo Hyuk, Um In Chul
Textile Science and Engineering. 2012 49(3). p.139
Wool keratin as a novel, alternative, low-cost adsorbent rich in various –N and –S proteins for eliminating methylene blue from water
Oussadi Karima, Al-Farraj Saleh, Benabdallah Bouchra, Benettayeb Asmaa, Haddou Boumediene, Sillanpaa Mika
Biomass Conversion and Biorefinery. 2024
Fibrillation of the Cortex of Merino Wool Fibers by Freezing-Thawing Treatment
Ito Hiraku, Sakabe Hiroshi, Miyamoto Takeaki, Inagaki Hiroshi
Textile Research Journal. 1984 54(6). p.397
Textile Dyes and Pigments (2022)
Adeel Shahid, Ahmad Tanvir, Fazal‐ur‐Rehman , Kamran Muhammad, Sultan Muhammad, Amin Nimra, Hassan Atya
The Chemical Composition of Wool
Bradbury J.H., Kulkarni V.G.
Textile Research Journal. 1975 45(1). p.79
Method for the Complete Removal of Cuticle from Wool Fibers
Bradbury J.H., Peters D.E.
Textile Research Journal. 1972 42(4). p.248
The Chemical Composition of Wool
Bradbury J.H., Peters D.E.
Textile Research Journal. 1972 42(8). p.471
Separation of Chemically Unmodified Histologica Lcomponents of Keratin Fibres and Analyses of Cuticles
BRADBURY J. H., CHAPMAN G. V., HAMBLY A. N., KING N. L. R.
Nature. 1966 210(5043). p.1333
Marine Biodegradability and Ecotoxicity of MWool® Recycled Wool Fibers: A Circular-Economy-Based Material
Anselmi Serena, Provenza Francesca, Bentivoglio Tecla, Picerno Giuseppe, Cavallo Andrea, Renzi Monia
Oceans. 2023 4(1). p.114
Sustainable engineering of wool keratin towards cobalt atoms fixation for enhanced electrocatalytic water splitting
Ming Yang, Liu Chang, Hu Xin, Yu Rujun, Shi Shuo, Li Jiashen, Yip Joanne, Fei Bin
Materials Today Sustainability. 2024 25 p.100635
Macromolecular Chemistry–11 (1977)
BRADBURY J.H.
Effect of Different Wool Fiber Finishing Methods on Cuticle Scales: A Review
Puqi Zhao, Peng Xu, Lan An
Journal of Fiber Science and Technology. 2023 79(9). p.200
(1973)
Bradbury J.H.
Isolating the cuticle layer of wool: a comparison of methods
Stewart K, Spedding P L, Otterburn M S, Lewis D M
Journal of the Society of Dyers and Colourists. 1997 113(1). p.32
Chemistry of Natural Protein Fibers (1977)
Kidd Fred
The Morphological Origin and Reactions of Some Keratin Fractions
Asquith R.S., Parkinson D.C.
Textile Research Journal. 1966 36(12). p.1064
The Bio-inspired Study of Homogeneous Composite Materials
Yang Liu , Rong Yin , Yu Wei-Dong
Journal of Composite Materials. 2011 45(1). p.113
Characterisation of reduction state of cystine linkages on wool fibre surface under heterogeneous reaction conditions
Buchacher Madita, Bechtold Thomas, Pham Tung
Polymer Testing. 2022 106 p.107438
Characteristics of the Protein Contaminant Layer on Merino Wool
Anderson C.A., Christoe J.R.
Textile Research Journal. 1984 54(6). p.378
Influence of Nutrition on Some Properties of High- and Low-Crimp Merino Wools and Their Cellular Components
Kulkarni V.G.
Textile Research Journal. 1983 53(11). p.712
Alkali hydrolysis of wool fibres using microwave irradiation as a recycling approach for handling wool-waste
Vouvoudi Evangelia C., Dimaki Maria I., Ainali Nina Maria, Koronaiou Lelouda-Athanasia, Lambropoulou Dimitra A., Nikolaidis Nikolaos F., Bikiaris Dimitrios N.
Polymer Degradation and Stability. 2024 223 p.110744
How are feathers digested by raptors?
Leprince P., Dandrifosse G., Goffinet G., Schoffeniels E.
Biochemical Systematics and Ecology. 1980 8(2). p.211
In Vitro Differentiation of Mouse Hair Follicle Cells
Frater R.
Journal of Investigative Dermatology. 1975 64(4). p.235
Safety, Health and Welfare in Agriculture and Agro-food Systems (2022)
Parlato Monica C. M., Valenti Francesca, Porto Simona Maria C.
The Discontinuous Nature of Epicuticle on the Surface of Keratin Fibers
Leeder J.D., Bradbury J.H.
Textile Research Journal. 1971 41(7). p.563
Handbook of Natural Polymers, Volume 1 (2023)
Datta Mallika, Basu Gautam, Das Srijan
Abstract PDF (3.8 MB) Export Citation

Share

Share on Facebook Share on Twitter Share on LinkedIn Share via Email