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P(AA-AMPS)吸水树脂的制备及高温环境中耐盐性能测定 被引量:5

Preparation of P(AA-AMPS)superabsorbent and its salt resistance at high temperature
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摘要 以四烯丙基氯化铵(TAAC)为交联剂,过硫酸钾(KPS)为引发剂,引入耐盐性单体2-丙烯酰胺基-2-甲基丙磺酸(AMPS),通过水溶液共聚制备了一种适用于高温环境的丙烯酸-2-丙烯酰胺基-2-甲基丙磺酸共聚物[P(AAAMPS)]耐盐性吸水树脂。考察了交联剂和引发剂用量、单体配比对吸水树脂在150℃下1%(wt,质量分数,下同)NaCl盐水中吸液性能的影响。结果表明:耐盐性吸水树脂的最佳聚合条件为:TAAC、KPS和AMPS占丙烯酸的质量分数分别为0.17%、0.12%和20%。在上述条件下制备的吸水树脂150℃下在1%NaCl盐水中吸水倍率可达78g/g,且表现出优异的耐高温性能和耐酸碱性能,拓宽了吸水树脂在高温含盐领域的应用范围。 A kind of superabsorbent used in high temperature circumstance was prepared by solution polymerization of AA and AMPS,used TAAC as crosslinker.Factors effected the water absorbency at 150℃in 1 wt%NaCl solution such as mass ratio of TAAC to AA,KPS to AA and AMPS to AA were studied.The best polymerization conditions were obtained as follows:the mass ratios of TAAC to AA,KPS to AA,AMPS to AA were 0.17%,0.12%,20%,respectively.The superabsorbent exhibited excellent high temperature resistance and performed good acid-alkali adaptability.The swelling rate in 1 wt%NaCl solution at 150℃could reach 78 g/g.
作者 王向鹏 郑云香 张春晓 姜香凝 Wang Xiangpeng;Zheng Yunxiang;Zhang Chunxiao;Jiang Xiangning(College of Chemical Engineering,Shengli College,China University of Petroleum,Dongying 257061)
出处 《化工新型材料》 CAS CSCD 北大核心 2019年第3期185-188,共4页 New Chemical Materials
基金 中国石油大学胜利学院校级一般项目(KY2017029) 大学生创新创业训练计划项目(201713386033)
关键词 四烯丙基氯化铵 耐盐性能 高温环境 吸水树脂 tetrapropylammonium chloride salt resistance high temperature circumstance superabsorbent
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  • 1辜英杰,邹伟权,闫世平,魏强,郑家概,牟德海.聚丙烯酸钠农用高吸水树脂的辐射制备与性能测试[J].核农学报,2005,19(2):113-117. 被引量:19
  • 2HE Xu-sheng,LIAO Zong-wen,HUANG Pei-zhao,DUAN Ji-xian,GE Ren-shan,LI Hong-bo,GENG Zeng-chao.Characteristics and Performance of Novel Water-Absorbent Slow Release Nitrogen Fertilizers[J].Agricultural Sciences in China,2007,6(3):338-346. 被引量:25
  • 3Yan W L,Bai R B.[J].Water Research,2005,39:688-698.
  • 4Huang M R,Li X G,Peng Q Y.[J].Ind Water Treatment,2005,25(1):14.
  • 5Xie J J,Liu X R,Liang J F,et al.[J].Polym Bulletin,2007,(3):37-40.
  • 6Debasish K,Gekorge B A,Recardo E B,et al.[J].J Appl Polym Sci,1999,73(7):1097-1115.
  • 7Yan Y F,Liu Q.[J].J North China Institute Techn,2000,21(4):319-322.
  • 8Xie J J,Liu X R,Liang J F.[J].J Chem Ind Eng(Chna),2006,57(7):1715-1717.
  • 9Zou Xinxi.Superabsorbents 2nd[M].Beijing:Chemical Industry Press,2001.
  • 10Kavakli C,Tuncel S A,Salih B.[J].Sep Purif Techn,2005,45:35-43.

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