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首页> 外文期刊>Chemical Engineering Communications >Removal of Congo Red dye from aqueous solution using Amberlite IRA-400 in batch and fixed bed reactors
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Removal of Congo Red dye from aqueous solution using Amberlite IRA-400 in batch and fixed bed reactors

机译:在分批和固定床反应器中使用琥珀溶剂IRA-400从水溶液中除去刚果红染料

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Removal of Congo Red (CR) azo dye by adsorption process using Amberlite IRA-400 resin was evaluated in both batch and fixed bed system. From the batch adsorption results, maximum loading efficiency (99.99%) of CR dye was obtained at the conditions pH 4.5, temp. 303K, contact time 180min., Amberlite IRA-400 dose 0.5g. The isotherm study ascertained on favorability of adsorption process as the value of separation factor (K-L=0.88) and Freundlich constant (1/n=0.961.0) obtained from Langmuir and Freundlich equations are rational, though, overall adsorption process showed best fit with Langmuir (R-2=0.99) than Freundlich model (R-2=0.97). The kinetic data studied at three different CR dye concentration (50, 75, 100mg) and results were fitted with both pseudo-first-order and second-order model equations. The values of R-2 obtained are of 0.95 and 0.99 for former and later one, respectively, ensuring on best fitting of pseudo-second-order kinetics and also suggesting about the chemisorptions type of adsorption. The bed depth service model was applied for competitive analysis of the CR dye adsorption in column variables indicating mass transfer from aqueous solution to Amberlite IRA-400 phase. Fourier transform infrared analysis of CR-loaded resin Amberlite IRA-400 showed a band shifted from 1057 to 1130cm(-1) confirming CR adsorption with Amberlite IRA-400. Scanning electron microscope analysis of resin before and after adsorption was well evident from the phase patterns. Selective separation of CR dye from waste effluent of a textile industry bearing CR dye along with other trace heavy metal was achieved.
机译:在两批和固定床系统中评估使用琥珀腈IRA-400树脂的吸附过程去除刚果红色(Cr)Azo染料。从批量吸附结果来看,在PH 4.5,TEMP的条件下获得最大负载效率(99.99%)Cr染料。 303K,接触时间180分钟,琥珀酸酯IRA-400剂量0.5g。然而,等温度研究以吸附过程的有利性,作为从Langmuir和Freundlich方程获得的分离因子(KL = 0.88)和Freundlich常数(1 / n = 0.96< 1.0)是合理的,但总体吸附过程显示出最合适的与Langmuir(R-2 = 0.99)比Freundlich模型(R-2 = 0.97)。在三种不同的Cr染料浓度(50,75,100mg)和结果中研究的动力学数据配有伪一阶和二阶模型方程。所获得的R-2的值分别为前后的0.95和0.99,确保最佳拟合伪二阶动力学,并且还表明了化学血液的吸附类型。床深度服务模型应用于柱变量中CR染料吸附的竞争分析,该柱变量表明从水溶液中的氨溶液IRA-400相的质量转移。 Cr负载树脂琥珀酰胺IRA-400的傅里叶变换红外分析显示,从1057至1130℃(-1)偏移的带,确认CR吸附Amberlite IRA-400。在吸附前后树脂的扫描电子显微镜分析从相位模式看出。从纺织工业废水中选择分离Cr染料轴承Cr染料以及其他痕量重金属。

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