The combining process for bio-preparation of starch-sized cotton fabrics at high temperature
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Abstract
α-amylase and pectinase showed good compatibility. A desizing ratio of 95.4 %, a pectin removal rate of 80.4 % and a capillary effect height of 7.1 cm for cotton fabrics treated with α-amylase and pectinase were obtained by a one-bath for bio-desizing and bio-scouring process under the condition of 90 °C for 30 min. After the treatment of the nonionic surfactant Peregal O at 100 °C for 20 min, these important properties for the cotton fabrics were further improved to 98.7 %, 96.8 %, and 18.4 cm separately. The capillary effect height of desized cotton fabrics was improved from 0.2 cm to 6.4 cm by the removal of waxes because its hydrophobic nature of the cotton fabrics. The whole time for this new combining process with high temperature treatment was significantly shortened and it only took about 55 minutes.
Keywords
α-amylase Pectinase Desizing Scouring Cotton fabricsPreview
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References
- 1.V. M. Correia, T. Stephenson, and S. Judd, Environ. Technol., 15, 917 (1994).CrossRefGoogle Scholar
- 2.M. M. Hartzell and Y. L. Heish, Text. Res. J., 68, 233 (1998).CrossRefGoogle Scholar
- 3.Q. Wang, X. Fan, Z. Hua, and J. Chen, Biochem. Eng. J., 34, 107 (2007).CrossRefGoogle Scholar
- 4.A. Niaz, Q. J. Malik, S. Muhammad, T. Shamim, and S. Asghar, Color. Technol., 127, 211 (2011).CrossRefGoogle Scholar
- 5.Z. S. Cai and Y. P. Qiu, Text. Res. J., 73, 670 (2003).CrossRefGoogle Scholar
- 6.X. Li and Y. P. Qiu, Appl. Surf. Sci., 258, 4939 (2012).CrossRefGoogle Scholar
- 7.H. A. Eren, P. Anis, and A. Davulcu, Text. Res. J., 79, 1091 (2009).CrossRefGoogle Scholar
- 8.A. E. Shafie, M. M. G. Fouda, and M. Hashem, Carbohyd. Polym., 78, 302 (2009).CrossRefGoogle Scholar
- 9.S. J. Peng, X. L. Liu, J. Sun, Z. Q. Gao, L. Yao, and Y. P. Qiu, Appl. Surf. Sci., 256, 4103 (2010).CrossRefGoogle Scholar
- 10.E. Csiszár and E. Fekete, Text. Res. J., 80, 1307 (2010).CrossRefGoogle Scholar
- 11.P. B. Agrawal, V. A. Nierstrasz, and M. M. C. G. Warmoeskerken, Enzyme Microb. Technol., 42, 473 (2008).CrossRefGoogle Scholar
- 12.S. Ahlawat, S. S. Dhiman, B. Battan, R. P. Mandhan, and J. Sharma, Process. Biochem., 44, 521 (2009).CrossRefGoogle Scholar
- 13.A. Hebeish, Abd EI-Thalouth, M. A. Ramadan, and M. Abdel-Hady, J. Text. I., 101, 1106 (2010).CrossRefGoogle Scholar
- 14.Q. Wang, X. Fan, J. Yuan, P. Wang, and L. Cui, J. Chem, Eng. Life. Sci., 8, 339 (2008).CrossRefGoogle Scholar
- 15.S. W. Dong and D. N. Lu, J. Appl. Polym. Sci., 109, 3733 (2008).CrossRefGoogle Scholar
- 16.F. S. Kittur, A. B. V. Kumar, L. R. Gowda, and R. N. Tharanathan, Carbohyd. Polym., 53, 191 (2003).CrossRefGoogle Scholar
- 17.R. Rose, C. L. Rose, S. K. Omi, K. R. Forry, D. M. Durall, and W. Bigg, J. Agric. Food. Chem., 39, 2 (1991).CrossRefGoogle Scholar
- 18.B. B. Koubala, L. I. Mbome, G. Kansci, F. T. Mbiapo, M. J. Crepeau, J. F. Thibault, and M. C. Ralet, Food. Chem., 106, 1202 (2008).CrossRefGoogle Scholar
- 19.S. M. Stark, Anal. Chem., 22, 1158 (1950).CrossRefGoogle Scholar
- 20.S. J. Peng, Z. Q. Gao, J. Sun, L. Yao, and Y. P. Qiu, Appl. Surf. Sci., 255, 9458 (2009).CrossRefGoogle Scholar
- 21.N. UI-Haq and H. Nasir, J. Text. I., 103, 304 (2012).Google Scholar
- 22.A. Losonczi, E. Csiszár, G. Szakács, and L. Bezúr, Text. Res. J., 75, 411 (2005).CrossRefGoogle Scholar
- 23.V. V. Mozhaev and K. Martinek, Enzyme. Microb. Technol., 6, 50 (1984).CrossRefGoogle Scholar
- 24.D. Dianawati and N. P. Shah, J. Food. Sci., 76, 463 (2011).CrossRefGoogle Scholar
- 25.Y. H. Ren, J. G. Rivera, L. H. He, H. Kulkarni, D. K. Lee, and P. B. Messermith, BMC Biotechnol, 11, 63 (2011).CrossRefGoogle Scholar
- 26.M. Altikatoglu and Y. Basaran, Protein J., 30, 84 (2011).CrossRefGoogle Scholar
- 27.A. Warshel, Biochemistry, 20, 3167 (1981).CrossRefGoogle Scholar
- 28.X. L. Yang and P. Kilpatrick, Energ. Fuel., 19, 1360 (2005).CrossRefGoogle Scholar
- 29.C. Chung, M. Lee, and E. K. Choe, Carbohyd. Polym., 58, 417 (2004).CrossRefGoogle Scholar
- 30.K. Sawada, S. Tokino, M. Ueda, and X. Y. Wang, J. Soc. Dyers Colour., 114, 333 (1998).CrossRefGoogle Scholar