PDF (1424K)
摘要
以可溶性淀粉、丙烯酸为原料,硫代硫酸钠、过硫酸钾为引发剂,N,N′-亚甲基双丙烯酰胺为交联剂,氢氧化钠溶液为中和剂,采用自由基聚合法制备淀粉类高吸水性树脂。采用单因素控制变量法探讨反应温度、丙烯酸中和度、淀粉乳浓度、单体用量、糊化时间和糊化温度对产物吸水倍率的影响。结果表明:淀粉类高吸水性树脂材料水晶花泥制备的最佳工艺条件为:反应温度55℃,pH=6.5,淀粉乳浓度12%,单体淀粉质量比2∶1,糊化时间30min,糊化温度80℃。在室温下吸水放置17h,材料的最大吸水率41.2220g/g。
Abstract
With starch and acrylic acid as main raw material,sodium thiosulfate and potassium persulfate as initiator,N,N′-methylene-bis-acrylamide as crosslinker,sodium hydroxide solution as neutralizer,the starch superabsorbent material was developed by radical polymerization.The effects of reaction temperature,neutralization degree of acrylic acid,starch milk concentration,monomer dosage,gelatinization time and gelatinization temperature on the water absorption capacity of product were investigated by single factor controlled variable method.The results indicated that temperature of 55℃,acrylic acid neutralization degree pH=6.5,starch milk concentration was 12%,and ratio of acrylic acid to starch was 2∶1,gelatinization time for 30 min,gelatinization temperature was 80℃,Which were the best preparation condition of superabsorbent.The maximum water absorption was 41.2220g/g after 17h at room temperature.
关键词
淀粉
/
丙烯酸
/
高吸水性树脂
/
单因素控制变量试验
Key words
starch
/
acrylic acid
/
high absorbent resin
/
single factor control variate test
淀粉类高吸水性树脂基水晶花泥的制备及性能研究[J].
化工新型材料, 2018, 46(4): 177-180 DOI:
[1] 邱海霞,于九皋,林通.高吸水性树脂[J].化学通报,2003,59(9):598-605.
[2] Elliott J E,Macdonald M,Nie J,et al.Structureand swelling of poly (acrylic acid) hydrogels:effect of pH,ionic strength,and dilution on the crosslinked polymer structure[J].Polymer,2004,45(5):1503-1510.
[3] Kim Dukjoon,Park Kinam.Swelling and mechanical properties of superporous hydrogels of poly (acrylamide coacrylicacid) polyethylenimine interpenetrating polymer networks[J].Polymer,2004,45(1):189-196.
[4] 高得川,邹黎明,王依民,等.国内外高吸水性聚合物研究新动向[J].化工新型材料,2000,28(8):13-15.
[5] 聂明,谭世语,王孝华,等.淀粉系高吸水性树脂的研究进展[J].化学工业与工程,2004,21(2):138-141.
[6] 周明,蒲万芬,胡佩,等.淀粉接枝共聚高吸水性树脂的研究进展[J].现代化工,2003,23(11):18-21.
[7] 符嵩涛,李振宇.高吸水性树脂研究进展[J].塑料科技,2010,38(10):106-113.
[8] 张明杰,李和平.吸水性淀粉接枝共聚树脂的研究进展及应用[J].辽宁化工,2006,35(1):652-655.
[9] 曹华,刘全校,曹国荣,等.淀粉接枝共聚物制备的影响因素的研究进展[J].化工新型材料,2009,37(3):12-14.
[10] 龚吉安,李倩,赵彦生.天然高分子改性制备高吸水性树脂研究进展[J].化工进展,2012,41(5):895-897.
[11] 李铭杰,李仲谨,诸晓峰,等.高吸水性树脂的发展及研究现状[J].应用化工,2010,29(3):573-578.
[12] 钟亚兰.绿色高吸水性树脂的研究进展[J].化工新型材料,2010,38(6):13-15.
[13] 刘廷东,许晓秋.淀粉类高吸水性树脂[J].精细化工,1993,10(5):45-50.
[14] 张津风.淀粉类高吸水性树脂的合成研究[J].化学与黏合,2005,27(3):277-279.
[15] 郑孝勇,缪存信,张卫英,等.高吸水性树脂基水晶花泥的研制[J].化学工程与装备,2007,2(1):36-39.
[16] 邹新喜.超强吸水剂[M].第二版.北京:化学工业出版社,2002,1-35.
[17] 王存国,董晓臣,何丽霞,等.淀粉与丙烯酸接枝共聚物吸水性能的影响因素研究[J].功能材料,2007,38(11):1904-1907.