首页> 外文期刊>Journal of Environmental Management >Synthesis of novel biochar from waste plant litter biomass for the removal of Arsenic (III and V) from aqueous solution: A mechanism characterization, kinetics and thermodynamics
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Synthesis of novel biochar from waste plant litter biomass for the removal of Arsenic (III and V) from aqueous solution: A mechanism characterization, kinetics and thermodynamics

机译:从废植物垃圾中合成新型生物炭,以去除水溶液中的砷(III和V):机理表征,动力学和热力学

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摘要

The present study is focusing on utilization of a new feedstock material for the preparation of biochar. The thy waste leaves litter of Tectona and Lagerstroemia speciosa was used for synthesizing the biochar at 800 degrees C for 1 h in muffle furnace represents as TB 800 and LB 800 and then used for the removal of As(III) and As(V) from aqueous solution. The prepared biochar materials had a crystalline structure and was characterized by using Scanning electron microscopy (SEM), Energy dispersive X-ray (EDX), Brunaur emmit teller (BET), Fourier transform infrared spectroscopy (FTIR), X-ray diffraction (XRD), Zeta potential, particle size and X-ray photoelectron spectroscopy (XPS). In regeneration study it was observed that prepared biochar material could be used up to four times with good removal percentage of Arsenic (III and V). The experimental data fitted well by Langmuir model for As(V) removal using TB 800 and LB 800, Freundlich model for As(III) removal by LB 800 and Temkin model for As(III) removal by TB 800. Pseudo-second-order kinetics was followed and best fitted with the obtained data of As(III) and (V) removal. Thermodynamics study revealed that the process of adsorption was endothermic for the removal of As(III) and exothermic for the adsorption of As(V) using TB 800 and LB 800. The adsorption capacity obtained for the removal of As(III) was 666.7 mu g/g and 454.54 mu g/g for TB 800 and LB 800, respectively and adsorption capacity for As(V) was 1250 mu g/g for TB 800 and 714.28 mu g/g was attained by LB 800.
机译:本研究的重点是利用新型原料制备生物炭。将Tectona和Lagerstroemia speciosa的废垃圾用于在马氏炉中以TB 800和LB 800的形式于800℃下合成生物炭1 h,然后从中去除As(III)和As(V)水溶液。所制备的生物炭材料具有晶体结构,并通过扫描电子显微镜(SEM),能量色散X射线(EDX),Brunaur发射器(BET),傅立叶变换红外光谱(FTIR),X射线衍射(XRD)进行了表征。 ),Zeta电位,粒度和X射线光电子能谱(XPS)。在再生研究中,观察到制备的生物炭材料最多可使用四次,而且砷(III和V)的去除率良好。 Langmuir模型使用TB 800和LB 800去除As(V),Freundlich模型使用LB 800去除As(III)和Temkin模型使用TB 800去除As(III)的实验数据非常吻合。遵循动力学,并与获得的As(III)和(V)去除数据最匹配。热力学研究表明,TB 800和LB 800的吸附过程是吸热的,去除As(III),放热的吸附过程是吸附的。吸附As(III)的吸附能力为666.7 mu。 TB 800和LB 800分别为g / g和454.54μg/ g,TB 800的As(V)吸附容量为1250μg/ g,LB 800达到714.28μg/ g。

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