首页> 外文期刊>Journal of Applied Polymer Science >Modification of Natural Polymer Via Free Radical Graft Copolymerization of 2-Acrylamido-2-Methyl-1-Propane Sulfonic Acid in Aqueous Media and Study of Swelling and Metal Ion Sorption Behavior
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Modification of Natural Polymer Via Free Radical Graft Copolymerization of 2-Acrylamido-2-Methyl-1-Propane Sulfonic Acid in Aqueous Media and Study of Swelling and Metal Ion Sorption Behavior

机译:水性介质中2-丙烯酰胺基-2-甲基-1-丙烷磺酸的自由基接枝共聚改性天然聚合物以及溶胀和金属离子吸附行为的研究

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In the present article, the graft copolymer of xanthan gum with 2-acrylamido-2-methyl-1-propane sulfonic acid (AMPS) was synthesized using potassium bromate/ascorbic acid as a redox initiator in aqueous medium; reaction conditions were optimized to obtain maximum grafting ratio (%G). The optimum concentration of BrO3- ion, ascorbic acid, H+ ion, and AMPS for maximum %G were 8.0 x 10(-3), 2.8 x 10(-3), 4.0 x 10(-3), and 33.2 x 10(-3) mol dm(-3), respectively. The maximum %G (433.0) occurred at a minimum concentration of xanthan gum, i.e., 0.6 g dm(-3). The optimum time duration and temperature of the reaction for maximum % of grafting were 180 min and 45 degrees C, respectively. The graft copolymer was characterized by FTIR spectroscopy. The thermal analysis of xanthan gum and prepared graft copolymer was performed in a nitrogen atmosphere to study their thermal behavior. It was observed that the PDT (polymer decomposition temperature) of graft copolymer is lower than that of xanthan gum, whereas the IPDT (integral procedural decomposition temperature) of graft copolymer is higher than that of xanthan gum, making the former more thermally stable. The swelling and metal ion sorption capability of graft copolymer was investigated. The metal ion sorption behavior of graft copolymer was studied for five metal ions (Cu++, Ni++, Zn++, Pb++ Hg++). Our results show that the grafted sample absorbs a good amount of water and the metal ion.
机译:本文以溴酸钾/抗坏血酸为氧化还原引发剂,在水介质中合成了黄原胶与2-丙烯酰胺基-2-甲基-1-丙烷磺酸(AMPS)的接枝共聚物。优化反应条件以获得最大接枝率(%G)。对于最大%G,BrO3-离子,抗坏血酸,H +离子和AMPS的最佳浓度为8.0 x 10(-3),2.8 x 10(-3),4.0 x 10(-3)和33.2 x 10( -3)摩尔dm(-3)。最大的G含量(433.0)发生在黄原胶的最小浓度下,即0.6 g dm(-3)。对于最大接枝%而言,反应的最佳持续时间和温度分别为180分钟和45℃。通过FTIR光谱表征了接枝共聚物。在氮气氛下对黄原胶和制备的接枝共聚物进行热分析以研究其热行为。观察到接枝共聚物的PDT(聚合物分解温度)低于黄原胶,而接枝共聚物的IPDT(整体过程分解温度)高于黄原胶,从而使前者具有更高的热稳定性。研究了接枝共聚物的溶胀和金属离子吸附能力。研究了五种金属离子(Cu ++,Ni ++,Zn ++,Pb ++ Hg ++)对接枝共聚物的金属离子吸附行为。我们的结果表明,接枝的样品吸收了大量的水和金属离子。

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