Preparation of superabsorbent based on the graft copolymerization of acrylic acid and acrylamide onto konjac glucomannan and its application in the water retention in soils

被引:39
作者
Tian, Da-Ting [1 ,2 ]
Li, Shi-Rong [2 ]
Liu, Xin-Ping [2 ]
Wang, Jing-Shou [2 ]
Hu, Sheng [2 ]
Liu, Cheng-Mei [1 ]
Xie, Hong-Quan [1 ]
机构
[1] Huazhong Univ Sci & Technol, Sch Chem & Chem Engn, Wuhan 430074, Peoples R China
[2] Hubei Univ Nationalities, Sch Chem & Environm Engn, Enshi 445000, Peoples R China
关键词
konjac glucomannan; graft copolymer; superabsorbent; functionalization of polymers; polysaccharides; water retaining agent in soils; POLYMERIZATION;
D O I
10.1002/app.36603
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 [高分子化学与物理];
摘要
A new konjac glucomannan (KGM)-based superabsorbent polymer, KGM-g-poly(acrylic acid-co-acrylamide), was prepared by the free radical grafting solution polymerization of acrylic acid (AA) and acrylamide (AM) monomers onto KGM in the presence of N,N'-methylenebisacrylamide as a crosslinker with potassium persulfate as an initiator. The effects of reaction parameters, including the amount of crosslinking agent and initiator, the weight ratio of both (AA + AM) to KGM and AM to (AA + AM), neutralization degree of AA, bath temperature, and reaction time, on the water absorbency of the superabsorbent were investigated. The Fourier transform infrared spectroscopy was used to characterize the structures of the copolymer. The maximum water absorbency of the optimized product was 650 g/g for distilled water and 70 g/g for a 0.9 wt % aqueous NaCl solution. Furthermore, the water retention of the copolymer in soils was studied. The effect of the copolymers on the aggregate distribution of soils was also evaluated. (C) 2012 Wiley Periodicals, Inc. J Appl Polym Sci, 2012
引用
收藏
页码:2748 / 2754
页数:7
相关论文
共 14 条
[1]
Flory P J., PRINCIPLES POLYM CHE
[2]
Constitution of konjac glucomannan:: chemical analysis and 13C NMR spectroscopy [J].
Katsuraya, K ;
Okuyama, K ;
Hatanaka, K ;
Oshima, R ;
Sato, T ;
Matsuzaki, K .
CARBOHYDRATE POLYMERS, 2003, 53 (02) :183-189
[3]
Synthesis of acetylated konjac glucomannan and effect of degree of acetylation on water absorbency [J].
Koroskenyi, B ;
McCarthy, SP .
BIOMACROMOLECULES, 2001, 2 (03) :824-826
[4]
Frontal Polymerization Synthesis and Characterization of Konjac Glucomannan-graft-Acrylic Acid Polymers [J].
Li, Jing ;
Zhang, Xia ;
Chen, Jian ;
Xia, Jun ;
Ma, Meihu ;
Li, Bin .
JOURNAL OF POLYMER SCIENCE PART A-POLYMER CHEMISTRY, 2009, 47 (13) :3391-3398
[5]
Evaluation of the degree of cross-linking of cellulose-based superabsorbent hydrogels: A comparison between different techniques [J].
Lionetto, F ;
Sannino, A ;
Mensitieri, G ;
Maffezzoli, A .
MACROMOLECULAR SYMPOSIA, 2003, 200 :199-207
[6]
Highly absorbing superabsorbent polymer [J].
Mudiyanselage, Thilini K. ;
Neckers, Douglas C. .
JOURNAL OF POLYMER SCIENCE PART A-POLYMER CHEMISTRY, 2008, 46 (04) :1357-1364
[7]
Nonaka T, 2001, J APPL POLYM SCI, V79, P115, DOI 10.1002/1097-4628(20010103)79:1<115::AID-APP140>3.3.CO
[8]
2-6
[9]
Synthesis of superabsorbents from Amaranthus starch [J].
Teli, M. D. ;
Waghmare, Nilesh G. .
CARBOHYDRATE POLYMERS, 2010, 81 (03) :695-699
[10]
Graft copolymerization of acrylamide onto konjac glucomannan via inverse emulsion polymerization and its thickening properties [J].
Tian, Dating ;
Xie, Hong-Quan .
JOURNAL OF APPLIED POLYMER SCIENCE, 2008, 108 (05) :3122-3127