A two stage approach to antibacterial activity of wastewater using annealed Zn0.5Mn0.5O nano-composites

IF 4.2 Q2 CHEMISTRY, MULTIDISCIPLINARY Results in Chemistry Pub Date : 2025-05-01 Epub Date: 2025-03-10 DOI:10.1016/j.rechem.2025.102192
M. Yasir Ali , S. Younus , N. Amin , Adnan Ali , Muhammad Isram , S. Ikram , K. Mahmood , M. Junaid Dilshad
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Abstract

In this manuscript, Zn0.5Mn0.5O nano-particles were used to treat the water of Faisalabad wastewater treatment facility using double approach, i.e. making composite with Mn metal and post growth annealing technique. Zn0.5Mn0.5O were synthesized using the hydrothermal method and post growth annealed at temperatures ranging from 150 to 650 °C. After the structural and bonding verification by XRD and Raman measurements, the grown samples were used to treat the wastewater. A 50 mg of Zn0.5Mn0.5O powder was mixed with 10 ml of wastewater and a drop of mixture was spread over LB agar plates for the plate count method to measure colony forming units (CFU) of samples. It was observed that wastewater solution containing Zn0.5Mn0.5O powder, which was annealed at 150 °C contained only few bacteria. But the solutions having high temperature annealed Zn0.5Mn0.5O nano-composites showing large colonies of pathogens. To confirm this behavior, we have also used the disc diffusion method. It was again found that Zn0.5Mn0.5O nano-composite annealed at 150 °C possessed the large inhabitant bacteria zone as compared to other samples. Most of the pathogens were found killed by making composition and remaining were killed by annealing process. It was also found that the anti-bacterial activity was found to be decreased with increasing annealing temperature because of occupation of oxygen vacancies, which resulted in the reduction of reactive oxygen species (ROS).

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退火Zn0.5Mn0.5O纳米复合材料对废水抑菌活性的两阶段研究
本文以Zn0.5Mn0.5O纳米颗粒为材料,采用与金属锰复合和生长后退火双重处理法处理费萨拉巴德污水处理厂的水。采用水热法合成了Zn0.5Mn0.5O,并在150 ~ 650℃的温度下进行了生长后退火。通过XRD和拉曼测试对其结构和键合进行验证后,将其用于废水处理。取50 mg Zn0.5Mn0.5O粉末与10 ml废水混合,滴取1滴在LB琼脂平板上,采用平板计数法测定样品的菌落形成单位(CFU)。结果表明,含Zn0.5Mn0.5O粉末的废水经150℃退火后,细菌数量较少。而高温退火Zn0.5Mn0.5O纳米复合材料溶液中,病原菌菌落较大。为了证实这一行为,我们还使用了圆盘扩散法。再次发现,150℃退火的Zn0.5Mn0.5O纳米复合材料比其他样品具有更大的寄生菌区。大部分病原菌通过配制成分被杀死,其余病原菌通过退火处理被杀死。随着退火温度的升高,由于氧空位的占据,抗菌活性降低,导致活性氧(ROS)的减少。
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来源期刊
Results in Chemistry
Results in Chemistry Chemistry-Chemistry (all)
CiteScore
2.70
自引率
8.70%
发文量
380
审稿时长
56 days
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