JOURNAL OF TEXTILE RESEARCH ›› 2010, Vol. 31 ›› Issue (7): 79-84.

• 染整与化学品 • Previous Articles     Next Articles

Grafting chitosan onto cotton fabric by UV-irradiation and analysis of its performance

WANG Tao; LAN Guangqian; JING Lingxiao; WU Dayang

  

  1. College of Textile and Garment, Southwest University
  • Received:2009-06-24 Revised:2009-10-26 Online:2010-07-15 Published:2010-07-15
  • Contact: WANG Tao

Abstract:

Grafting chitosan (CS) onto cotton fabric by UV-irradiation was performed using citric acid (CA) as cross-linking agent and sodium dihydrogen phosphate as catalyst. The effect of concentration of CA and bathing time on the grafting percentage of CS was investigated. The optimum conditions were determined as follows: CS 15 g/L, CA 100 g/L, sodium dihydrogen phosphate 20 g/L, bathing for 60 min at 70℃, then curing at 130℃ for 5 min, and then vacuum drying at room temperature for 24hrs. The grafting percentage of CS was 2.69%. The dyeing property, air and moisture permeability, crease recovery and softness of the treated and untreated cotton fabrics were discussed. The results showed that in compared with the untreated fabric, the dye uptake rate of the treated fabric increased to 93.5% ( 20% higer than that of the untreated one). The K/S value increased by 24% but color fastness remained the same. The moisture permeability increased by 14% but air permeability decreased by 15%. The crease recovery enhanced, therein the acute crease recovery increased by 26.3% and the slow one by 14.7%. The softness declined a little. In general, the overall performance of the chitosan modified cotton fabric has been enhanced.

CLC Number: 

  • TS195.5
[1] . Anti-wrinkle and antibacterial composite finishing of cotton fabric with chistosan and butanetetracarboxylic acid [J]. JOURNAL OF TEXTILE RESEARCH, 2016, 37(06): 95-100.
[2] . Fluorine-free water repellent finish of worsted fabric [J]. JOURNAL OF TEXTILE RESEARCH, 2016, 37(3): 114-0.
[3] . Preparation of antibacterial agent loaded with Cu2+ and performance of cotton fabric complexed with agent [J]. JOURNAL OF TEXTILE RESEARCH, 2015, 36(12): 79-0.
[4] . Flame-retardant modification of down fibers by 1-phosphonopropane-1,2- dicarboxylic acid [J]. JOURNAL OF TEXTILE RESEARCH, 2015, 36(10): 7-0.
[5] . Application of cationic starch-bentonite composite to adsorb Reactive Red X-3B dye [J]. JOURNAL OF TEXTILE RESEARCH, 2014, 35(7): 101-0.
[6] Ke LI Zhang Jian-Fei Ji-Xian GONG Meng Chun-Li. Water and oil repellent finishing of polyester cotton by foam technology [J]. JOURNAL OF TEXTILE RESEARCH, 2014, 35(4): 94-0.
[7] . Analysis of nano-particle size in fibroin membrane modified by nano TiO2 [J]. JOURNAL OF TEXTILE RESEARCH, 2013, 34(11): 24-0.
[8] . Preparation and application of amino modified polyether-siloxane SEA [J]. JOURNAL OF TEXTILE RESEARCH, 2013, 34(10): 107-0.
[9] . Study on simple preparation technology of superhydrophobic cotton fabrics [J]. JOURNAL OF TEXTILE RESEARCH, 2013, 34(9): 94-0.
[10] . Effect of softening finishing on performance of luminous coated fabrics [J]. JOURNAL OF TEXTILE RESEARCH, 2013, 34(9): 99-0.
[11] . Evaluation of hand for terry towels based on PhabrOmeter [J]. JOURNAL OF TEXTILE RESEARCH, 2013, 34(8): 48-0.
[12] . Shrink-proofing finish of cashmere fibers using potassium permanganate [J]. JOURNAL OF TEXTILE RESEARCH, 2013, 34(6): 79-82.
[13] Lian-Jun WANG. Process optimization of moisture crosslinking and infouence thereof on properties of textile [J]. JOURNAL OF TEXTILE RESEARCH, 2013, 34(5): 86-89.
[14] . Antistatic effect of PET fabrics finished with mixture of nano ZnO & Fe2O3 sol [J]. JOURNAL OF TEXTILE RESEARCH, 2013, 34(4): 85-88.
[15] . Nano-silver antibacterial finishing of cotton fabric grafted with methacrylamide [J]. JOURNAL OF TEXTILE RESEARCH, 2013, 34(4): 75-79.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!