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首页> 外文期刊>Journal of Taibah University for Science >Chemical analysis of corn cob-based biochar and its role as water decontaminants
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Chemical analysis of corn cob-based biochar and its role as water decontaminants

机译:基于玉米COB的生物炭的化学分析及其作为水净化剂的作用

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Production of biochar is accomplished by pyrolysis of corncobs at 350 °C (BC-350) and 450 °C (BC-450) under oxygen-limited conditions. The chemical and physical properties were investigated via XRD, FTIR, BET, SEM and EDX analysis. Batch experiments were conducted for the adsorption of Pb 2+ ions from aqueous solution onto biochar with regards to pH, contact time, biochar dose and initial Pb 2+ concentration. The adsorption efficiency of Pb 2+ was increased as increasing pH and biochar dose up to 1.5 g/L. Kinetic and isothermal studies demonstrated that the experimental data were fitted with the pseudo-second-order model, Langmuir and Freundlich isotherms. The study emphasized the preferable pyrolysis temperature which is 450 °C. According to the Dubinin-Kaganer-Radushkevich (DKR) model, the adsorption process of Pb 2+ was a chemical and endothermic reaction. Results showed the applicability of corncob based biochar to be used as an efficient and low cost adsorbent for Pb 2+ ions removal.
机译:生物炭的生产是通过在350℃(BC-350)和450℃(BC-450)下的玉米饼在氧有限的条件下溶解来完成的。通过XRD,FTIR,BET,SEM和EDX分析研究了化学和物理性质。对PH,接触时间,生物溶液剂量和初始PB 2+浓度,对从水溶液中的PB 2+离水溶液吸附Pb 2+离子的批量实验。增加Pb 2+的吸附效率,因为增加pH和生物炭剂量高达1.5克/升。动力学和等温研究表明,实验数据配备了伪二阶模型,Langmuir和Freundlich等温。研究强调了450℃的优选热解温度。根据Dubinin-Kaganer-Radushkevich(DKR)模型,PB 2+的吸附过程是化学和吸热反应。结果表明,基于玉米浦的Biochar用作Pb 2+离子去除的高效和低成本吸附剂。

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