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首页> 外文期刊>Environmental Science and Pollution Research >Hexavalent chromium adsorption on virgin, biochar, and chemically modified carbons prepared from Phanera vahlii fruit biomass: equilibrium, kinetics, and thermodynamics approach
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Hexavalent chromium adsorption on virgin, biochar, and chemically modified carbons prepared from Phanera vahlii fruit biomass: equilibrium, kinetics, and thermodynamics approach

机译:由菲尔氏,生物炭和由Phanera Vahlii果实生物量制备的维珍,生物炭和化学改性碳的六价铬吸附:平衡,动力学和热力学方法

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摘要

A novel biosorbent Phanera vahlii fruit biomass (PVF) and its biochar and chemically modified forms were studied for the elimination of Cr(VI) from synthetic solutions. Biosorbents were characterized through BET, FTIR, FESEM, EDX, and TGA technique. The parameters influencing biosorption were optimized and found as pH 2.0, temperature 303 K, initial metal concentration 500 mg/L, and biosorbent dosage 0.5 g/L. The ideal contact time was 180 min for all biosorbents. Freundlich isotherm was found to have good correlation with investigational data, which indicated that biosorption takes place in multiple layer style. Langmuir adsorption isotherm yielded the highest biosorption capacity (Q(o)) to be 159.1, 225.1, 244.1, and 278.5 mg/g for Phanera vahlii fruit biomass, Phanera vahlii biochar, Phanera vahlii phosphoric acid activated carbon, and Phanera vahlii zinc chloride activated carbon, respectively. Experimental data had good correlation with pseudo-second-order kinetic model fitted. Thermodynamic studies indicated the biosorption process to be spontaneous, stable, and endothermic. Thus, it was concluded that Phanera vahlii fruit biomass and the derived activated carbons are promising biosorbents for adsorption of chromium from aqueous solutions.
机译:研究了一种新的生物吸附性Phanera Vahlii果实生物量(PVF)及其生物炭和化学改性形式,从合成溶液中消除Cr(VI)。通过BET,FTIR,FESEM,EDX和TGA技术表征生物吸收剂。优化影响生物吸收的参数,并发现pH 2.0,温度303k,初始金属浓度500mg / L和生物吸附剂量0.5g / L.所有生物吸收剂的理想接触时间为180分钟。发现Freundlich等温线与调查数据具有良好的相关性,表明生物吸收在多层风格中进行。 Langmuir吸附等温线产生最高的生物吸附能力(Q(o)),为159.1,225.1,244.1和phanera Vahlii果实生物量,Phanera Vahlii Biochar,Phanera Vahlii磷酸活性炭,和Phanera Vahlii锌氯化锌的278.5mg / g和278.5mg / g。活化碳分别。实验数据与安装的伪二阶动力学模型具有良好的相关性。热力学研究表明生物吸附过程是自发性,稳定和吸热的。因此,得出结论是,Phanera Vahlii果实生物质和衍生的活性碳是有助于从水溶液吸附铬的生物吸水性。

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