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Synthesis and characterization of activated carbon from biowaste-walnut shell and application to removal of uranium from waste

机译:Biowashe-Walnut壳活性炭的合成与表征及施用废弃物去除铀

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The aim of this study is to synthesize and characterize an economical and environmentally-friendly adsorbent with high adsorption capacity. For this purpose, the walnut shells (Juglans regia L.) were chemically modified using sulfuric and citric acids, separately. After pyrolysis and synthesis of activated carbon (AC), the optimization of conditions at the preconcentration/removal step was performed using parameters such as pH and contact time for uranium in the model solutions. The measurements were carried out by inductively coupled plasma-mass spectrometry (ICP-MS). From the shapes of the BET isotherms, it may be stated that activated carbon exhibit type I. It was found that the surface area and total pore volume of the activated carbon were 696.6 m2/g and 0.35 mL/g, respectively. The adsorption capacity was found to be 220 mg/g. It was found that the optimum pH is 6.0 for preconcentration/removal using AC obtained by sulfuric acid as chemically-modifier. The optimized method was applied to determination of U at ng/mL levels in the model solutions.
机译:本研究的目的是合成和表征具有高吸附能力的经济和环保吸附剂。为此目的,使用硫酸和柠檬酸分别化学修饰核桃壳(Juglans Regia L)。在热解和合成活性炭(AC)之后,使用诸如模型解决方案中的铀的pH和接触时间进行前浓缩/去除步骤的条件优化。通过电感耦合等离子体质谱(ICP-MS)进行测量。从BET等温线的形状,可以说明活性炭表现出I型。发现活性炭的表面积和总孔体积分别为696.6m 2 / g和0.35ml / g。发现吸附能力为220 mg / g。发现最佳pH为6.0,用于使用硫酸作为化学改性剂获得的AC的预浓缩/去除。应用优化方法在模型解决方案中的Ng / ml水平下的测定。

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