Sharma Jitender, Chadha Amritpal Singh, Pruthi Vaishali, Anand Prerna, Bhatia Jaspreet, Kaith B S
Research and Development Laboratory, Department of Chemistry, Dr B.R. Ambedkar National Institute of Technology, Jalandhar, Punjab, India.
Department of Chemistry, D.A.V College, Jalandhar, Punjab, India.
J Environ Manage. 2017 Apr 1;190:176-187. doi: 10.1016/j.jenvman.2016.12.065. Epub 2016 Dec 31.
Present work reports the synthesis of semi-Interpenetrating Network Polymer (semi-IPN) using Gelatin-Gum xanthan hybrid backbone and polyvinyl alcohol in presence of l-tartaric acid and ammonium persulphate as the crosslinker-initiator system. Reaction parameters were optimized with Response Surface Methodology (RSM) in order to maximize the percent gel fraction of the synthesized sample. Polyvinyl alcohol, l-Tartaric acid, ammonium persulphate, reaction temperature, time and pH of the reaction medium were found to make an impact on the percentage gel fraction obtained. Incorporation of polyvinyl alcohol chains onto hybrid backbone and crosslinking between the different polymer chains were confirmed through techniques like FTIR, SEM-EDX and XRD. Semi-IPN was found to be very efficient in the removal of cationic dyes rhodamine-B (70%) and auramine-O (63%) from a mixture with an adsorbent dose of 700 mg, initial concentration of rhodamine-B 6 mgL and auramine-O 26 mgL, at an time interval of 22-25 h and 30 °C temp. Further to determine the nature of adsorption Langmuir and Freundlich adsorption isotherm models were studied and it was found that Langmuir adsorption isotherm was the best fit model for the removal of mixture of dyes. Kinetic studies for the sorption of dyes favored the reaction mechanism to occur via a pseudo second order pathway with R value about 0.99.
目前的工作报道了使用明胶-黄原胶混合主链和聚乙烯醇,以L-酒石酸和过硫酸铵作为交联剂-引发剂体系合成半互穿网络聚合物(semi-IPN)。采用响应面法(RSM)对反应参数进行了优化,以最大化合成样品的凝胶分数百分比。发现聚乙烯醇、L-酒石酸、过硫酸铵、反应温度、时间和反应介质的pH值对所得凝胶分数百分比有影响。通过傅里叶变换红外光谱(FTIR)、扫描电子显微镜-能谱分析(SEM-EDX)和X射线衍射(XRD)等技术证实了聚乙烯醇链在混合主链上的掺入以及不同聚合物链之间的交联。发现semi-IPN在去除阳离子染料罗丹明B(70%)和金胺O(63%)方面非常有效,吸附剂剂量为700 mg,罗丹明B初始浓度为6 mg/L,金胺O初始浓度为26 mg/L,在22 - 25小时的时间间隔和30°C温度下进行。进一步研究了朗缪尔(Langmuir)和弗伦德利希(Freundlich)吸附等温线模型以确定吸附性质,发现朗缪尔吸附等温线是去除混合染料的最佳拟合模型。对染料吸附的动力学研究表明反应机理有利于通过伪二级途径发生,R值约为0.99。