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Influence of composite flocculant of PAC and MBFGA1 on residual aluminum species distribution

机译:PAC和MBFGA1复合絮凝剂对残余铝形态分布的影响

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In general, majority of biomaterials have shown good biosorption capacities towards certain of metal ions. In this work, microbial flocculant GA1 (MBFGA1) compound with PAC was used to control the residual aluminum in flocculation water treatment. The fluorescence spectrophotometry combined with different pretreatment methods was employed to divide the species of aluminum and determine their concentration. The results indicated that non-labile monomeric aluminum was the dominant specie in residual aluminum and addition of MBFGA1 could efficiently eliminate them. Two quadratic polynomial models with the response variables of flocculating rate and labile monomeric aluminum concentration were established by response surface methodology, respectively. The optimal flocculating conditions were MBFGA1 at 109.37 mg/L, PAC at 81.87 mg/L, initial pH at 8.5, time duration of stir 72.5 min and ambient temperature at 24.3 °C Fourier transform-infrared spectra and environmental scanning electron microscope analysis indicated that MBFGA1 holded a large number of functional groups, which had strong capacity on binding aluminum and reducing its residual level during coagulation-flocculation.
机译:通常,大多数生物材料已显示出对某些金属离子的良好生物吸附能力。在这项工作中,微生物絮凝剂GA1(MBFGA1)与PAC的混合物用于控制絮凝水处理中的残留铝。荧光分光光度法结合不同的预处理方法用于划分铝的种类并确定其浓度。结果表明,不稳定的单体铝是残留铝的主要种类,添加MBFGA1可以有效地消除它们。利用响应面法分别建立了两个具有絮凝速率和不稳定单体铝浓度响应变量的二次多项式模型。最佳絮凝条件为:MBFGA1为109.37 mg / L,PAC为81.87 mg / L,初始pH为8.5,搅拌时间为72.5 min,环境温度为24.3°C傅立叶变换红外光谱和环境扫描电子显微镜分析表明: MBFGA1含有大量的官能团,这些官能团具有很强的结合铝的能力,并能降低其在絮凝-絮凝过程中的残留水平。

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