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Fe-modified sporopollenin as a composite biosorbent for the removal of Pb~(2+) from aqueous solutions

机译:Fe改性的孢子蛋白作为复合生物吸附剂,用于从水溶液中除去Pb〜(2+)

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摘要

The role of Fe-modified sporopollenin (Fe-Sp) biomass in Pb2+ removal from aqueous solutions was investigated by batch biosorption technique. The prepared biosorbent was characterized by scanning electron microscopy, energy-dispersive X-ray spectrometry, and Fourier transform infrared spectroscopy. The influence of pH, contact time, biosorbent dose, and initial concentration on biosorption process were optimized by using a four factor Box-Behnken design combined with response surface methodology. The results indicated a positive adsorption behavior of Fe-Sp and a strong pH dependency of the process. The optimum predicted parameters were determined as follows: biosorbent dosage 0.5 g, pH of 6.75, contact time 104 min, and initial Pb2+ concentration of 25.42 ppm. The Freundlich isotherm model provided a better fit (R-2 = 0.994) for the experimental data, indicating biosorption on a heterogeneous surface. Maximum biosorption capacity (q(max)) was 22.72 mg g(-1) as indicated by the Langmuir isotherm. Kinetically, the adsorption process followed a pseudo-second-order model, indicating that chemisorption was the rate-limiting step.
机译:通过分批生物吸附技术研究了Fe-Demified Sporopolenin(Fe-SP)生物质在PB2 +中除去水溶液中的作用。通过扫描电子显微镜,能量分散X射线光谱法和傅里叶变换红外光谱,表征制备的生物吸附剂。通过使用四因素Box-Behnken设计与响应面方法结合使用,优化了pH,接触时间,生物吸附剂量和初始浓度的生物吸附过程的影响。结果表明Fe-SP的阳性吸附行为和该过程的强pH依赖性。最佳预测参数如下测定:生物吸附剂量0.5g,pH值为6.75,接触时间104分钟,初始Pb2 +浓度为25.42ppm。 Freundlich等温模型为实验数据提供了更好的拟合(R-2 = 0.994),表明在异质表面上的生物吸附。如Langmuir等温线所示,最大生物吸收容量(Q(最大))为22.72mg g(-1)。动力学上,吸附过程遵循伪二阶模型,表明化学吸附是速率限制步骤。

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