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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Graft copolymerization of acrylic acid onto guar gum initiated by vanadium (V)-mercaptosuccinic acid redox pair
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Graft copolymerization of acrylic acid onto guar gum initiated by vanadium (V)-mercaptosuccinic acid redox pair

机译:钒(V)-巯基琥珀酸氧化还原对引发丙烯酸在瓜尔胶上的接枝共聚

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摘要

Guar gum has been modified by graft copolymerization with acrylic acid in aqueous medium using vanadium (V)-mercaptosuccinic acid redox system.The optimum reaction conditions affording maximum grafting ratio,efficiency,add on and conversion have been determined.The grafting parameters have been found to increase with increase in vanadium (V) concentration upto 1.0 x 10~(-2) mol dm~(-3),but these parameters decrease on further increasing the vanadium (V) concentration.On increasing the mercaptosuccinic acid concentration from 1.0 x 10~(-2) to 4.0 x 10~(-2) mol dm~(-3) grafting ratio,efficiency and add on increase up to 2.0 x 10~(-2) mol dm~(-3) but decrease with further increase in mercaptosuccinic acid concentration.On varying the acrylic acid concentration from 5.0x10~(-2) to 30.0 x 10~(-2) mol dm~(-3),maximum grafting ratio,efficiency and add on have been obtained at 20.0 x 10~(-2) mol dm~(-3).The grafting ratio,add on and conversion increase,on increasing the H~+ion concentration from 1.5 x 10~(-1) to 6.0 x 10~(-1) mol dm~(-3).On increasing the guar gum concentration the grafting parameters increase.The grafting ratio,add on and conversion have been found to increase with time period while efficiency started decreasing after 120 min.It has been observed that %G increases on increasing the temperature up to 35 deg C.The graft copolymer has been characterized by IR spectroscopy and thermogravimetric analysis.
机译:钒(V)-巯基琥珀酸氧化还原体系在水性介质中与丙烯酸接枝共聚,对瓜尔胶进行了改性,确定了最佳的接枝率,效率,加成率和转化率的最佳反应条件。随钒(V)浓度增加至1.0 x 10〜(-2)mol dm〜(-3)而增加,但随着钒(V)浓度的进一步增加这些参数减小。巯基琥珀酸浓度从1.0 x增大10〜(-2)到4.0 x 10〜(-2)mol dm〜(-3)的接枝率,效率增加至2.0 x 10〜(-2)mol dm〜(-3),但随将丙烯酸的浓度从5.0x10〜(-2)改变为30.0 x 10〜(-2)mol dm〜(-3),可以得到最大的接枝率,效率和添加量。 20.0 x 10〜(-2)mol dm〜(-3)。接枝率,加成率和转化率随H〜+离子浓度的增加而增加从1.5 x 10〜(-1)到6.0 x 10〜(-1)mol dm〜(-3)。随着瓜尔胶浓度的增加,接枝参数也随之增加。接枝率,添加量和转化率均增加随着时间的流逝,效率在120分钟后开始下降。已经观察到,当温度升高至35℃时,%G升高。接枝共聚物已通过红外光谱和热重分析进行了表征。

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