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Experimental study on parameter estimation and mechanism for the removal of turbidity from groundwater and synthetic water using Moringa oleifera seed powder

机译:辣木籽粉去除地下水和合成水中浊度的参数估算及机理的实验研究

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In the present work, Moringa oleifera seed powder was prepared and it was applied for the removal of turbidity from the groundwater and synthetic water. The characterization of the M. oleifera seed powder was carried out by Fourier transform infrared spectroscopy (FT-IR) and scanning electron microscopy (SEM) analyses. The FT-IR results observed the presence of different chemical functional groups in the M. oleifera seed powder and the SEM analysis showed a smooth surface with rough peaks and pores in the M. oleifera seed powder. The laboratory jar test procedures were applied for the conduct of experimental runs. The turbidity of the groundwater and synthetic water were varied from 50 to 135 NTU. The effect of operating parameters such as initial turbidity, M. oleifera dosage, and pH of the solution were optimized for the maximum removal of turbidity. The results of the coagulation activity of M. oleifera showed that the removal of turbidity lay in between 55 and 75% for synthetic turbid water and only 46-69% for groundwater at an optimum pH of 6-7. The obtained experimental values were applied to the Langmuir and Freundlich isotherm model, to check the influence of sorption of the particles onto the M. oleifera seed powder. The goodness of fit of experimental data was observed with Langmuir isotherm model, indicating a monolayer sorption of particles onto the M. oleifera seed powder. It was observed from the isotherm study indications that the sorption may also be influenced in the removal of turbidity to some extent from the groundwater and synthetic water.
机译:在目前的工作中,制备了辣木种子粉末并将其用于去除地下水和合成水中的浊度。通过傅里叶变换红外光谱(FT-IR)和扫描电子显微镜(SEM)分析对油茶分枝种子种子粉末进行表征。 FT-IR结果观察到油茶种子粉末中存在不同的化学官能团,并且SEM分析显示油茶种子粉末中表面具有粗糙的峰和孔。应用实验室广口瓶测试程序进行实验运行。地下水和合成水的浊度从50到135 NTU不等。为了最大程度地去除浊度,优化了操作参数(例如初始浊度,油枝分枝杆菌的剂量和溶液的pH)的影响。油松的凝结活性结果表明,在最佳pH值为6-7的条件下,合成浊水的浊度去除率在55%至75%之间,而地下水的浊度去除率仅为46-69%。将获得的实验值应用于Langmuir和Freundlich等温线模型,以检查颗粒吸附到油茶分支粉上的影响。用Langmuir等温线模型观察到实验数据的拟合优度,表明颗粒单层吸附在油松毛虫种子粉末上。从等温线研究中观察到,在从地下水和合成水中去除浊度的过程中,吸附也可能受到影响。

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