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One pot Green Synthesis of Nano magnesium oxide-carbon composite: Preparation, characterization and application towards anthracene adsorption

机译:一锅法绿色合成纳米氧化镁-碳复合材料:蒽的制备,表征及应用

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Activated carbon was prepared from palm shell agro waste by chemical activation method using Potassium hydroxide. Nano-magnesium oxide was green synthesized using neem leaf extract by rapid precipitation method. Nano-magnesium oxide impregnated onto palm shell activated carbon composite was produced by dropwise mechanism and its efficiency was tested for the removal of anthracene from the aqueous solution. The surface area of the synthesized composite wasfound to be 69 m(2)/g and hexagonal structure of nano-MgO and amorphous nature of composites were confirmed by X-Ray diffraction. Uniform deposition of MgO particles onto the activated carbon was shown in Scanning electron microscopic images. Statistical optimization using response surface methodology (RSM) showed the optimum conditions for the removal of anthracene using nano-composite biosorbent as 6 g/L dosage, 30 degrees C temperature and initial anthracene concentration of 25 mg/L. The equilibrium model was best fitted with Freundlich isotherm. The maximum anthracene uptake was achieved in 60 min. Kinetic studies indicate that the pseudo-second order model is the best fit for the adsorption kinetic data. This experimental study also determines the potential efficacy of nano-MgO Carbon composite for the removal of anthracene from the real industrial effluent. In addition, phytotoxicity analysis of used nano-MgO Carbon composite is carried out on the soybean and black gram seeds, to prove its sustainability at the real environmental point of view. The cost effective green synthesis of composite for anthracene removal was well discussed and ultimately it shed light on the plausible adsorption of petroleum effluent from industrial point of view. Thus, the approaches adopted herein elucidate an efficient adsorption mechanism to eliminate anthracene present in the environment. (C) 2019 Published by Elsevier Ltd.
机译:活性炭是使用氢氧化钾通过化学活化方法由棕榈壳农业废料制得的。利用印ne叶提取物通过快速沉淀法绿色合成了纳米氧化镁。通过滴加机理制备了浸渍在棕榈壳活性炭复合材料上的纳米氧化镁,并测试了其从水溶液中去除蒽的效率。发现合成的复合材料的表面积为69 m(2)/ g,并且纳米MgO的六边形结构和复合物的无定形性质通过X射线衍射确定。在扫描电子显微镜图像中显示了MgO颗粒在活性炭上的均匀沉积。使用响应表面方法(RSM)进行的统计优化表明,使用纳米复合生物吸附剂以6 g / L的剂量,30摄氏度的温度和25 mg / L的初始蒽浓度去除蒽的最佳条件。平衡模型最适合Freundlich等温线。在60分钟内达到最大的蒽摄取量。动力学研究表明,拟二级模型最适合吸附动力学数据。这项实验研究还确定了纳米MgO碳复合材料从实际工业废水中去除蒽的潜在功效。此外,还对大豆和黑克种子进行了用过的纳米MgO碳复合材料的植物毒性分析,以从实际环境的角度证明其可持续性。对用于去除蒽的复合材料的经济有效的绿色合成方法进行了充分的讨论,最终从工业角度阐明了石油废水的合理吸附。因此,本文采用的方法阐明了消除环境中存在的蒽的有效吸附机理。 (C)2019由Elsevier Ltd.发布

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