首页> 外文期刊>Arabian Journal for Science and Engineering >New Way of Synthesis of Basic Bismuth Nitrate by Electrodeposition from Ethanol Solution: Characterization and Application for Removal of RB19 from Water
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New Way of Synthesis of Basic Bismuth Nitrate by Electrodeposition from Ethanol Solution: Characterization and Application for Removal of RB19 from Water

机译:乙醇溶液电沉积合成碱式硝酸铋的新方法:从水中去除RB19的表征及应用

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A new method of synthesis was developed for the preparation of sorbent basic bismuth nitrate [Bi6O5(OH)(3)](NO3)(5)center dot 2H(2)O (BBN-EtOH). This electrochemical method includes electrodeposition from an acidic Bi(III) solution in 96% ethanol at a constant current density of 150.0 mA cm(-2). Final product was obtained by thermal treatment at 200 degrees C. Characterization of BBN-EtOH was conducted by employing XRD, FTIR, SEM-EDX as well as BET, and its pI was also determined. The analysis showed that the material obtained is pure [Bi6O5(OH)(3)](NO3)(5)center dot 2H(2)O. Morphologically, it is composed of aggregates which were formed of several smaller particles of various shapes and sizes, some smaller than 100 nm. Electrochemically synthesized sorbent (BBN-EtOH) was used for the removal of the textile dye Reactive Blue 19 (RB19) from deionized water and model solution of river water, and it showed considerably superior sorption performance compared to other inorganic sorbents synthesized by conventional methods reported in the literature. Kinetic study suggests that the sorption process is both under reaction and diffusion control. Equilibrium of the sorption process was attained in several minutes, i.e., the sorption process is very fast. The sorption equilibrium data were well interpreted by the Langmuir, Sips and Brouers-Sotolongo isotherm. The maximum sorption performance was achieved at pH 2.0, and according to the Langmuir isotherm, it is 1344.99 mg g(-1).
机译:开发了一种新的合成方法,用于制备碱性硝酸铋吸附剂[Bi6O5(OH)(3)](NO3)(5)中心点2H(2)O(BBN-EtOH)。这种电化学方法包括在96%乙醇中以150.0 mA cm(-2)的恒定电流密度从酸性Bi(III)溶液中进行电沉积。通过在200℃下热处理获得最终产物。通过使用XRD,FTIR,SEM-EDX以及BET进行BBN-EtOH的表征,并且还测定了其pI。分析表明,获得的材料是纯的[Bi6O5(OH)(3)](NO3)(5)中心点2H(2)O。从形态上讲,它由聚集体组成,聚集体由各种形状和大小的一些较小颗粒组成,其中一些小于100 nm。电化学合成的吸附剂(BBN-EtOH)用于从去离子水和河水中的模型溶液中去除纺织染料活性蓝19(RB19),与通过常规方法合成的其他无机吸附剂相比,其吸附性能要好得多。在文学中。动力学研究表明,吸附过程既受反应又受扩散控制。在几分钟内达到吸附过程的平衡,即吸附过程非常快。 Langmuir,Sips和Brouers-Sotolongo等温线很好地解释了吸附平衡数据。在pH 2.0时达到最大吸附性能,根据Langmuir等温线,为1344.99 mg g(-1)。

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