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Box-Behnken design optimization for the removal of Direct Violet 51 dye from aqueous solution using lignocellulosic waste

机译:使用木质纤维素废料从水溶液中去除直接紫51染料的Box-Behnken优化设计

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The present research work was designed to explore the biosorption efficiency of sugarcane bagasse (SB) biomass for the removal of Direct Violet 51 dye from aqueous solution. The modification of SB biomass was carried out by different physical and chemical treatments. HCl-treated SB biomass depicted maximum biosorption efficiency among all the modified SB biomasses. Box-Behnken experimental design was employed to illustrate the effect of three independent variables (initial dye concentration (A), biosorbent dose (B), and pH (C)) on the dye removal process. Maximum dye removal (63.0mgg(-1)) was achieved at pH 2 and 0.05g biosorbent dose. Higher initial dye concentration was found to be favorable for the dye removal process. Desorption study was conducted using NaOH solution of different strengths, and it was observed that 61.58% dye can be desorbed from the loaded biosorbent using 1M NaOH solution. Characterization of SB biomass was also carried out by FTIR, scanning electron microscope, and TGA analysis. The results indicated that SB biomass can be used as an efficient biosorbent for the treatment of dye containing wastewater.
机译:本研究工作旨在探索甘蔗渣(SB)生物质从水溶液中去除直接紫51染料的生物吸附效率。 SB生物质的改性通过不同的物理和化学处理进行。 HCl处理的SB生物质在所有改性SB生物质中均表现出最大的生物吸附效率。采用Box-Behnken实验设计来说明三个独立变量(初始染料浓度(A),生物吸附剂量(B)和pH(C))对染料去除过程的影响。在pH 2和0.05g生物吸附剂剂量下,染料的最大去除量为63.0mgg(-1)。发现较高的初始染料浓度对于染料去除过程是有利的。使用不同浓度的NaOH溶液进行了脱附研究,发现使用1M NaOH溶液可以从负载的生物吸附剂中解吸61.58%的染料。还通过FTIR,扫描电子显微镜和TGA分析对SB生物质进行了表征。结果表明,SB生物质可以用作处理含染料废水的有效生物吸附剂。

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