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A comparative study of the adsorption of humic acid, fulvic acid and phenol onto Bacillus subtilis and activated sludge

机译:枯草芽孢杆菌和活性污泥对腐殖酸,黄腐酸和苯酚的吸附比较研究

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The adsorption of humic acid and fulvic acid onto Bacillus subtilis cells and activated sludge biomass was studied as a function of pH and incubation time. The adsorption of humic and fulvic acids was strongly pH-dependent and followed the same trend on both surfaces, increasing in a sigmoidal way with decreasing pH over the 2-10 pH range. This behaviour is explained in terms of hydrophobic interactions between the uncharged biomass and the uncharged humic and fulvic acids. In contrast, the adsorption of phenol onto B. subtilis cells and activated sludge biomass showed in both cases an optimum pH at around 7.0. This optimum value may be interpreted in terms of a combination of hydrophobic interactions and hydrogen bonds between undissociated phenol and polar groups on the cell walls. Kinetic studies on the adsorption of humic acid, fulvic acid and phenol onto B. subtilis cells and sludge biomass pointed to a rapid uptake of the substances, with an equilibrium time of about 30min. In all cases, the kinetic curves were acceptably fitted by non-linear regression to an exponential function, suggesting a first-order kinetic phenomenon. The specific adsorption values collected at optimum pH revealed that with the materials used in this work both B. subtilis and activated sludge follow the same adsorption trend: humic > fulvic > phenol. The lower adsorption of fulvic acid as compared with humic acid may be explained in terms of its lower hydrophobicity rather than its lower molecular size. On comparing the specific adsorption values of activated sludge versus B. subtilis, similar but lower figures were found for the three organic compounds studied. This similar behaviour suggests that both types of biomass base their adsorption capacity on the general characteristics of the bacterial cell wall, and the lower adsorption by the sludge would be due to a lower specific area due to clustering of the cells. This is remarkable, since sludge is a heterogeneous and cheap material in comparison with cultured bacterial cells.
机译:研究了腐殖酸和黄腐酸在枯草芽孢杆菌细胞和活性污泥生物量上的吸附随pH和孵育时间的变化。腐殖酸和黄腐酸的吸附强烈依赖于pH,并且在两个表面上都遵循相同的趋势,以S形方式增加,在2-10 pH范围内pH降低。用不带电的生物质与不带电的腐殖酸和富里酸之间的疏水相互作用来解释这种行为。相反,在两种情况下,苯酚在枯草芽孢杆菌细胞和活性污泥生物质上的吸附均显示最佳pH约为7.0。该最佳值可以根据疏水性相互作用和未离解的苯酚与细胞壁上极性基团之间的氢键的组合来解释。腐殖酸,富里酸和苯酚在枯草芽孢杆菌细胞和污泥生物质上的吸附动力学研究表明,该物质被快速吸收,平衡时间约为30分钟。在所有情况下,通过非线性回归将动力学曲线拟合为指数函数是可接受的,表明是一级动力学现象。在最佳pH值下收集到的特定吸附值表明,在这项工作中使用的材料,枯草芽孢杆菌和活性污泥都遵循相同的吸附趋势:腐殖质>黄腐菌>酚。黄腐酸与腐殖酸相比较低的吸附性可以用其较低的疏水性而不是较低的分子大小来解释。通过比较活性污泥与枯草芽孢杆菌的比吸附值,发现三种被研究的有机化合物具有相似但较低的数字。这种相似的行为表明,两种类型的生物质均以细菌细胞壁的一般特性为其吸附能力,而污泥的较低吸附将归因于细胞聚集所致的较低比表面积。这是惊人的,因为与培养的细菌细胞相比,污泥是一种异质且廉价的材料。

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