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Nigella sativa seed based nanocomposite-MnO_2/BC: An antibacterial material for photocatalytic degradation, and adsorptive removal of Methylene blue from water

机译:基于Nigella sativa种子的纳米复合材料MnO_2 / BC:一种用于光催化降解和从水中吸附去除亚甲基蓝的抗菌材料

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Antimicrobial Nigella sativa seed-based nanocomposite, MnO2/BC, was synthesized and utilized for the water purification through adsorption, and the photocatalytic degradation. MnO2/BC was prepared by co-precipitation method, and characterized using FT-IR, XRD, SEM, TEM, TGA, and DSC techniques. The composite was investigated for inhibition of bacterial cells growth. FT-IR spectrum indicated the presence of oxygenous groups on the surface; TGA and DSC showed thermal degradation; and XRD, SEM, and TEM investigations indicated amorphous, and porous nature of MnO2/BC having particle size of 190-220 nm. The nanocomposite inhibited the growth of both Gram-positive and Gram-negative bacteria cells in water. The adsorption of Methylene blue from water was investigated in batch method in terms of amount of MnO2/BC, dye concentration, pH, time, and temperature. 1.0 g L-1 of MnO2/BC removed more than 98% of Methylene blue from aqueous solution having concentration of 10 mg L-1 and pH 7.0 at 27 degrees C. The maximum Langmuir adsorption capacity of MnO2/BC was 185.185 mg g(-1) at 45 degrees C. The adsorption was an endothermic process which obeyed Freundlich isotherm, and pseudo-second order kinetics. Therefore, the Methylene blue binding onto MnO2/BC surface was site-specific partially through the weak hydrogen bonding, and electrostatic interactions. The photocatalytic activity of MnO2/BC has been investigated by degrading the Methylene blue molecules/ions in water under the sunlight and 85% of degradation was achieved during 120 min irradiation. The dye was desorbed at lower pH and regenerated MnO2/BC was used for second cycle of Methylene blue adsorption. The results obtained for this study are much better than the previous Methylene blue adsorption studies with acid washed Black cumin seeds and MnFe2O4/BC for which the capacities were 73.529 mg g(-1) and 10.070 mg g(-1) at 27 degrees C, respectively.
机译:合成了Nigella sativa种子抗菌纳米复合材料MnO2 / BC,并通过吸附和光催化降解将其用于净水。 MnO2 / BC采用共沉淀法制备,并通过FT-IR,XRD,SEM,TEM,TGA和DSC技术进行表征。研究了该复合物对细菌细胞生长的抑制作用。 FT-IR光谱表明表面上存在含氧基团。 TGA和DSC显示出热降解。 XRD,SEM和TEM研究表明,MnO2 / BC的无定形和多孔性质具有190-220nm的粒径。纳米复合物抑制水中革兰氏阳性和阴性细菌细胞的生长。分批研究了MnO2 / BC的量,染料浓度,pH,时间和温度,从中吸附了亚甲基蓝。 1.0 g L-1的MnO2 / BC在27摄氏度下从浓度为10 mg L-1且pH值为7.0的水溶液中去除了98%以上的亚甲基蓝.MnO2 / BC的最大Langmuir吸附容量为185.185 mg g( -1)在45℃下进行。吸附是遵循弗氏等温线和拟二级动力学的吸热过程。因此,亚甲基蓝结合到MnO2 / BC表面上是局部特定的,这是通过弱氢键和静电相互作用实现的。通过在阳光下降解水中的亚甲基蓝分子/离子来研究MnO2 / BC的光催化活性,并在120分钟的照射过程中实现了85%的降解。染料在较低的pH下解吸,再生的MnO2 / BC用于亚甲基蓝的第二次吸附。这项研究获得的结果比以前用酸洗黑孜然种子和MnFe2O4 / BC进行的亚甲基蓝吸附研究好得多,在27摄氏度下其容量分别为73.529 mg g(-1)和10.070 mg g(-1) , 分别。

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