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首页> 外文期刊>Iranian Journal of Chemistry and Chemical Engineering >Optimization of Pb(Ⅱ) Adsorption onto Australian Pine Cones-Based Activated Carbon by Pulsed Microwave Heating Activation
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Optimization of Pb(Ⅱ) Adsorption onto Australian Pine Cones-Based Activated Carbon by Pulsed Microwave Heating Activation

机译:脉冲微波加热活化法优化澳大利亚松果基活性炭对Pb(Ⅱ)的吸附

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摘要

This study proposed a novel method for preparing activated carbon from Australian Pine cones (APCs) to optimize Pb(II) adsorption. Based on an analysis conducted, the APCs dried powder consisted of approximately 51.32 wt% of cellulose and 21.15 wt% of lignin on average. Experiments in batch mode at 100-rpm stirring speed, pH 4.7 +/- 0.3) and 27 degrees degrees (+/-+/- 2 degrees degrees) were conducted to obtain the maximum adsorption capacity of Australian Pine cones activated carbon (the APCs AC) over the independent variables of contact time, initial Pb(ll) concentration in solution, the concentration of NaOH activator and Pulsed Microwave Heating (PMH). As the result, the maximum Pb(II) adsorption capacity was obtained when using the APCs AC with 1 M NaOH and the PMH activation. It follows Langmuir Isotherm Model (LIM) and the pseudo-second-order kinetics model (PSOKM) with the correlation coefficients (R-2) being 0.993 and 1, respectively. The LIM maximum Pb(II) adsorption capacity was 166.667 mg/g, the PSOKM maximum equilibrium Pb(II) adsorption capacity was 151.515 mg/g reached in 120-min contact time, and the PSOKM kinetics constant was 0.295 g/mg.min for 1571.89 mg/L of initial Pb(II) concentration. This optimum condition was reasonable because the PMH resulted from the dominant active site of the functional group of hydroxyl on the APCs AC for Pb(II) adsorption as shown by Fourier Transform Infrared Spectroscopy analysis, and more pores were shown in Scanning Electron Microscopy (SEM) analysis.
机译:这项研究提出了一种从澳大利亚松果(APC)制备活性炭以优化Pb(II)吸附的新方法。根据进行的分析,APCs干燥粉末平均包含约51.32 wt%的纤维素和21.15 wt%的木质素。以分批模式在100 rpm搅拌速度,pH 4.7 +/- 0.3和27度(+ /-+ /-2度)下进行实验,以获得澳大利亚松果活性炭(APC)的最大吸附容量AC)在接触时间,溶液中的初始Pb(II)浓度,NaOH活化剂的浓度和脉冲微波加热(PMH)的自变量中。结果,当使用具有1 M NaOH和PMH活化作用的APC AC时,可获得最大的Pb(II)吸附容量。它遵循Langmuir等温线模型(LIM)和伪二级动力学模型(PSOKM),相关系数(R-2)分别为0.993和1。 LIM最大Pb(II)吸附容量为166.667 mg / g,在120分钟接触时间内达到的PSOKM最大平衡Pb(II)吸附容量为151.515 mg / g,PSOKM动力学常数为0.295 g / mg.min初始Pb(II)浓度为1571.89 mg / L。此最佳条件是合理的,因为PMH是由APC的AC上的羟基官能团对Pb(II)吸附的主要活性位点产生的,如傅里叶变换红外光谱分析所示,并且在扫描电子显微镜(SEM)中显示了更多的孔)分析。

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