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Adsorption of sunset yellow FCF from aqueous solution by chitosan-modified diatomite

机译:壳聚糖改性硅藻土对水溶液中日落黄FCF的吸附

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Sunset yellow (SY) FCF is a hazardous azo dye pollutant found in food processing effluent. This study investigates the use of diatomaceous earth with chitosan (DE@C) as a modified adsorbent for the removal of SY from wastewater. Fourier transform infrared spectroscopy results indicate the importance of functional groups during the adsorption of SY. The obtained N-2 adsorption-desorption isotherm values accord well with IUPAC type II. Our calculations determined a surface area of 69.68 m(2) g(-1) for DE@C and an average pore diameter of 4.85 nm. Using response surface methodology, optimized conditions of process variables for dye adsorption were achieved. For the adsorption of SY onto DE@C, this study establishes mathematical models for the optimization of pH, contact time and initial dye concentration. Contact time plays a greater role in the adsorption process than either pH or initial dye concentration. According to the adjusted correlation coefficient (adj-R-2 > 0.97), the models used here are suitable for illustration of the adsorption process. Theoretical experimental conditions included a pH of 2.40, initial dye concentration of 113 mg L-1 and 30.37 minutes of contact time. Experimental values for the adsorption rate (92.54%) were close to the values predicted by the models (95.29%).
机译:日落黄(SY)FCF是食品加工废水中发现的有害偶氮染料污染物。这项研究调查了使用硅藻土和壳聚糖(DE @ C)作为改性吸附剂从废水中去除SY的方法。傅里叶变换红外光谱结果表明,在SY吸附过程中,官能团的重要性。所获得的N-2吸附-解吸等温线值与IUPAC II型非常吻合。我们的计算确定DE @ C的表面积为69.68 m(2)g(-1),平均孔径为4.85 nm。使用响应表面方法,获得了用于染料吸附的工艺变量的优化条件。为了将SY吸附到DE @ C上,本研究建立了数学模型,以优化pH,接触时间和初始染料浓度。接触时间在吸附过程中的作用比pH或初始染料浓度更大。根据调整后的相关系数(adj-R-2> 0.97),此处使用的模型适用于说明吸附过程。理论实验条件包括pH为2.40,初始染料浓度为113 mg L-1和30.37分钟的接触时间。吸附率的实验值(92.54%)接近模型预测的值(95.29%)。

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