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Obtaining and Application of New Cellulose- and Graphene Oxide-Based Adsorbents for Treatment of Industrial Waste Containing Heavy Metals

机译:新型纤维素和石墨烯基吸附剂的获得和应用,用于治疗含重金属的工业废物

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摘要

The paper presents the results of studies on the preparation and properties of composite granules produced by phase inversion from cellulose (CEL) solutions in 1-ethyl-3-methylimidazole acetate (EMIMAc), containing nano-addition in the form of graphene oxide (GO) in N,N-dimethylformamide (DMF). Water absorption and sorption of such compounds as FeCl3, methylene blue (MB) and bovine serum albumin (BSA) were studied. In addition, attempts were made to investigate the sorption properties of the obtained cellulose granules in terms of metals removal from electroplating wastewater. Among the many components, iron and lead were found to have the highest concentration (~ 1 mg Fe/dm3; ~2 mg Pb/dm3) in the tested wastewater sample. The qualitative and quantitative composition of the wastewater was examined by UV-Vis spectrophotometry.The studies show that doping of cellulose with graphene oxide clearly affects the physical properties of this biopolymer. GO improves the water absorption of CEL/GO composite cellulose granules only in the concentration above 0.05% w/w. For a concentration of 0.1% w/w of GO in cellulose, water absorption is increased by ~108% compared to pure cellulose granules. In addition, the use of dry and wet granules in the study changes their sorption properties with respect to all tested substances. Studies on test solutions have shown that the sorption of cellulose granules decreases with increasing molar mass of test compounds, in the following order: FeCl3, methylene blue (MB) and bovine albumin (BSA). This means that the cellulose granules obtained in the experiment are made up of small micropores, which makes the diffusion of compounds of high molecular weight difficult. The best sorption results were obtained for ferric ions and amounted to 66-72% for FeCl3 solution, and ~92% for the wastewater that was sorbed on pure cellulose granules.
机译:本文介绍了通过在1-乙基-3-甲基咪唑乙酸乙酯(eMIMAc)中的纤维素(CEL)溶液中的相转化产生的复合颗粒的制备和性能研究结果,含有纳米氧化物形式的纳米添加(GO )在N,N-二甲基甲酰胺(DMF)中。研究了这种化合物作为FECL3,亚甲基蓝(MB)和牛血清白蛋白(BSA)的吸水性和吸附。此外,在从电镀废水中除去金属的制备,研究了所得纤维素颗粒的吸附性能。在测试的废水样品中发现许多组分,熨斗和铅具有最高浓度(约1mg / dm3;〜2mg Pb / dm3)。通过UV-Vis分光光度法检查废水的定性和定量组成。研究表明,纤维素氧化纤维素清楚地影响了该生物聚合物的物理性质。 GO仅在0.05%w / w的浓度下改善CEL / GO复合纤维素颗粒的吸水率。对于纤维素的0.1%w / w的浓度,与纯纤维素颗粒相比,吸水率〜108%增加了〜108%。此外,在研究中使用干燥和湿颗粒在所有测试物质相对于所有测试物质改变它们的吸附性能。测试溶液的研究表明,纤维素颗粒的吸附随着摩尔质量的摩尔质量的试验化合物,以下顺序:FECL3,亚甲基蓝(MB)和牛白蛋白(BSA)。这意味着在实验中获得的纤维素颗粒由小微孔组成,这使得高分子量难以扩散。获得最佳的吸附结果为铁离子获得,对于FECL3溶液的66-72%,对于在纯纤维素颗粒上吸附的废水〜92%。

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