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Efficient capture of eosin yellow and crystal violet with high performance xanthan-acacia hybrid super-adsorbent optimized using response surface methodology

机译:高效捕获高性能黄色和晶体紫的高效捕获,使用响应面方法优化高性能黄原杂交杂交超吸附剂

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摘要

Blending of xanthan and acacia gives a unique hybrid that was used for the synthesis of semi-interpenetrating network (semi-IPN) in which poly(acrylamide) chains were grafted onto hybrid of xanthan-acacia followed by their cross-linking (Xan-Aca-cl-poly(AAm)). Optimization was carried out under response surface methodology central composite design (RSM-CCD). Maximum percentage swelling of semi-IPN obtained was 496.57%. The concentrations of acrylamide, citric acid and ammonium persulphate used as monomer, cross-linker and initiator, respectively were found to be significant parameters. The blend was highly effective in removal of both cationic (crystal violet) and anionic dyes (eosin yellow) showing maximum dye removal capacity of 97.58% and 95.42%, respectively under optimized parameters - 0.4 g semi-IPN dose in 15 ml dye solution of 10 mg L-1 concentration within 16 h. Adsorption mechanism of both the dyes followed three steps in accordance with intraparticle diffusion model along with mono layer langmuir adsorption criteria. Second order kinetics was followed in case of both dyes. Thermodynamic studies gave idea about the exothermic nature of adsorption. Semi-IPN could be recycled up to eight consecutive cycles and hence, can be utilized for industrial purpose for removal of dyes.
机译:黄原癌和金合欢的混合给出了一种独特的杂交,用于合成半渗透网络(半IPN),其中将聚(丙烯酰胺)链接枝到黄原癌的杂种上,然后进行交联(XAN-ACA -Cl-聚(AAM))。优化在响应面方法中央复合设计(RSM-CCD)下进行。获得的半IPN的最大百分比溶胀为496.57%。分别用于分别用作单体,交联剂和引发剂的丙烯酰胺,柠檬酸和铵脱脂的浓度是显着的参数。在除去阳离子(晶体紫色)和阴离子染料(曙红黄色)中,共混物显着效果,显示出最大染料去除能力为97.58%和95.42%,分别在优化的参数下 - 0.4g半IPN剂量在15毫升染料溶液中10mg L-1浓度在16小时内。染料的吸附机理遵循三个步骤的三个步骤,与单层扩散模型以及单层朗米尔吸附标准。在两种染料的情况下,遵循二阶动力学。热力学研究涉及吸附的放热性质。半IPN可以再循环到八个连续循环,因此,可用于用于除去染料的工业用途。

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