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作 者:郭海军[1] 胡星琪[1] 王亮[1] 张耀文[2]
机构地区:[1]西南石油学院化学化工学院,成都610500 [2]西华师范大学,南充637000
出 处:《化工进展》2003年第12期1312-1315,共4页Chemical Industry and Engineering Progress
基 金:油气藏地质及开发国家重点实验室开放基金 (PLN0 12 0 )
摘 要:以十八碳醇、TDI和丙烯酸为原料制备了一种带苯基和长链烷基的N -取代丙烯酰胺类疏水单体NSAM。该单体和丙烯酰胺以单体比n(NSAM)∶n(AM )为 0 75∶99 2 5 ,采用自由基胶束共聚合成了一种疏水缔合水溶性高分子AM -co -NSAM。研究了AM -co -NSAM在NaCl、KCl、BaCl2 、CaCl2 溶液中比浓黏度的盐效应 ;初步探讨了不同盐溶液、不同盐浓度对大分子之间相互作用的影响。实验结果表明 :在不同盐溶液中 ,AM -co -NSAM都表现出盐增黏效应 ,其二价盐的影响较一价盐显著 ;随着盐质量浓度的升高 ,特性黏数 [η]下降且低于纯水中的相应值 5 84 1dL/g ,而Huggins常数KH 增大且高于 0N-substituted-acrylamide hydrophobical monomer was prepared with the materials of 18 carbon alcohol, TDI and acrylic acid. A hydrophobically associating water-soluble copolymer was prepared by the radical micellar copolymerization from the acrylamide monomer and small amount of NSAM (0 75mol%). Effects of concentrations of different species of chloride solutions on η of hydrophobically associating water-soluble copolymer were studied. In addition, the effects of the type and the concentration of salts on intrinsic viscosity and Huggins constant was investigated. Experimental results showed that the viscosity increased with salt concentration increasing, which was more obvious for bivalent salts than for monovalent salts. Intrinsic viscosity descended with salt concentration increasing and was lower than 5 841?dL/g in water, and Huggins constants increased and were over 0 3.
关 键 词:疏水缔合水溶性聚合物 合成 溶液性能 红外光谱分析 比浓黏度 特性黏数
分 类 号:TQ314.2[化学工程—高聚物工业]
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