首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Synthesis, characterization and applications of polyacrylamide grafted fenugreek gum (FG-g-PAM) as flocculant: Microwave vs thermal synthesis approach
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Synthesis, characterization and applications of polyacrylamide grafted fenugreek gum (FG-g-PAM) as flocculant: Microwave vs thermal synthesis approach

机译:聚丙烯酰胺接枝葫芦巴胶(FG-G-PAM)作为絮凝剂的合成,表征和应用:微波VS热合成方法

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Fenugreek gum is modified using two different techniques: microwave -assisted and thermal synthesis technique of graft copolymerization. The synthesis was done by varying the concentration of acrylamide monomer and CAN initiator to get the best-grafted product. The physicochemical characteristics were determined by elemental analysis, FTIR spectroscopy, SEM, XRD, DSC, TGA, number-average molecular weight and intrinsic viscosity. All the grafted materials were tested by flocculation of different synthetic suspension media as well as river water. The process of deflocculation and refloccculation was also carried out and it was observed that refloccculation process has a good potential as the flocculation efficacy increased to a considerable extent. The flocculation efficacy increased from 92.05% to 9432% upto a maximum of 95.98% in refloccculation process. The flocculation efficacy was found out to be 95.98%, 40.52% and 68.94% respectively kaolin, coal fine and iron ore suspensions. Flocculation was done in kaolin suspension of pH 2, 4, 7 and 10 and at different temperature range of 10 degrees, 25 degrees, 40 degrees and 55 degrees C. It is expected that this material can be used as a highly efficient flocculant in future. (C) 2019 Published by Elsevier B.V.
机译:使用两种不同的技术进行修改Fenugreek Gum:接枝共聚的微波拟拟合和热合成技术。通过改变丙烯酰胺单体的浓度来完成合成,并可引发剂以获得最佳嫁接产品。通过元素分析,FTIR光谱,SEM,XRD,DSC,TGA,数均分子量和特性粘度确定物理化学特性。通过絮凝不同合成悬浮介质以及河水的絮凝测试所有接枝材料。还进行了脱絮和回流的过程,观察到,随着絮凝功效增加到相当程程度,回流过程具有良好的潜力。絮凝功效从92.05%增加到回流过程中最多95.98%的9432%。絮凝效果分别发现高岭土,煤镍和铁矿石悬浮液分别为95.98%,40.52%和68.94%。絮凝在高岭土悬浮液中进行,在pH 2,4,7和10,在10度,25度,40度和55℃的不同温度范围内进行。预期该材料将来可用作高效的絮凝剂。 (c)2019年由elestvier b.v发布。

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