花生壳废弃物活性炭分批吸附孔雀石绿的模拟研究

I. Dahlan, K. Kit
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引用次数: 1

摘要

利用花生壳废料制备的活性炭对孔雀石绿染料的分批吸附过程进行了模拟研究。数学模型建立在包含外部传质系数和孔扩散系数的双阻力模型的基础上,该模型控制了间歇吸附中的传质过程。编写了MATLAB程序,从模型中求解常微分方程,并通过将模拟数据与文献中的实验数据相匹配来估计传质参数。结果表明,外传质系数kf和孔扩散系数Dp分别为6.2054×10−2 m/s和2.2660×10−10 m2/s。利用估算的参数,模拟结果表明,该模型与不同初始浓度下的实验数据具有良好的相关性。利用估算的参数研究了染料在初始浓度、染料溶液体积、吸附剂粒度和吸附剂质量等不同变量下的吸附性能。结果表明,染料初始浓度越低、吸附剂质量越高、染料溶液体积越小、吸附剂粒径越小,染料去除率越高。
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Modelling and simulation of batch adsorption of malachite green using groundnut shell waste-based activated carbon
Modelling and simulation of batch adsorption in malachite green dye removal using activated carbon prepared from groundnut shell waste was studied. Mathematical model was developed based on a two-resistance model which included external mass transfer coefficient and pore diffusion coefficient that controls the mass transfer process in batch adsorption. MATLAB program was written to solve ordinary differential equation from the model and to estimate mass transfer parameters by matching the simulation data with the experimental data from literature. From the results, it was found that the external mass transfer coefficient kf and pore diffusion coefficient Dp were estimated to be 6.2054 × 10−2 m/s and 2.2660 × 10−10 m2/s, respectively. Using the estimated parameters, simulation results showed that the model provided good correlation with the experimental data based on different initial concentrations. The estimated parameters were used to study the adsorption of dye under different variables such as initial dye concentration, volume of dye solution, adsorbent particle size and mass of adsorbent. It was concluded that the dye removal efficiency was higher for lower initial dye concentration, higher mass of adsorbent, lower volume of dye solution and smaller adsorbent particle size.
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来源期刊
CiteScore
1.00
自引率
0.00%
发文量
66
期刊介绍: IJETM is a refereed and authoritative source of information in the field of environmental technology and management. Together with its sister publications IJEP and IJGEnvI, it provides a comprehensive coverage of environmental issues. It deals with the shorter-term, covering both engineering/technical and management solutions.
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