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Pertechnetate/Perrhenate Surface Complexation on Bamboo Engineered Biochar

机译:在竹编工程生物炭上植入/渗透表面络合

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摘要

The work deals with the evaluation of biochar samples prepared from Phyllostachys Viridiglaucescens bamboo. This evaluation consists of the characterization of prepared materials’ structural properties, batch and dynamic sorption experiments, and potentiometric titrations. The batch technique was focused on obtaining basic sorption data of 99mTcO4− on biochar samples including influence of pH, contact time, and Freundlich isotherm. ReO4−, which has very similar chemical properties to 99mTcO4−, was used as a carrier in the experiments. Theoretical modeling of titration curves of biochar samples was based on the application of surface complexation models, namely, so called Chemical Equilibrium Model (CEM) and Ion Exchange Model (IExM). In this case it is assumed that there are two types of surface groups, namely, the so-called layer and edge sites. The dynamic experimental data of sorption curves were fitted by a model based on complementary error function erfc(x).
机译:该工作涉及评估生物炭样品从植物植物植物竹子制备的生物炭样品。该评估包括制备的材料结构性质,分批和动态吸附实验的表征和电位滴定。批量技术的重点是获得99MTCO4-上的生物炭样品的基本吸附数据,包括pH,接触时间和Freundlich等温线的影响。 REO4-与99mtCO4-具有非常相似的化学性质,用作实验中的载体。生物炭样品滴定曲线的理论建模基于表面络合模型的应用,即所谓的化学平衡模型(CEM)和离子交换模型(IEXM)。在这种情况下,假设存在两种类型的表面组,即所谓的层和边缘站点。基于互补误差函数ERFC(x)的模型,通过模型安装了吸附曲线的动态实验数据。

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