Synthesis of TiO\(_2\) Impregnated Ribes nigrum Stem Nanoactivated Carbon and their Application to Remove Heavy Metals

B. Magaji, N. Y. Pindiga, Ibrahim Mohammed Bida
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Abstract

Nanoactivated carbons from Ribes nigrum (black currant) stem were prepared using two-step procedure with excellent yield and were characterized using different spectroscopic techniques. The FTIR spectroscopy revealed O-H, C=C, C=N, and C-O stretching. XRD analysis revealed the particle sizes as 29.57 nm for stem activated carbon (SAC) and 26.55 nm for stem activated carbon impregnated with titanium (SAT) while, the morphology of the SAC and SAT were revealed by SEM to be spherical, granular and porous. The prepared nanoactivated materials were used for removal of Pb2+ and Cd2+ from aqueous solution. The influences of initial metal ion concentration, agitation time, adsorbent dose, temperature and pH were studied in batch experiments at room temperature. The adsorption equilibriums were rapid at 60 min of agitation for Pb2+ and Cd2+ on SAT with appreciable %removal. The adsorption data for Pb2+ and Cd2+ on SAT fitted well into Freundlich isotherm than Langmuir given correlation coefficient (R2) very close to unity and appreciable maximum adsorption capacity KF > 1.00. The fitting into Freundlich indicates multilayer coverage on the adsorbents. The kinetic studies showed good correlation coefficient for a pseudo-second order kinetic model for the SAT. The enthalpies of the adsorption process are: +12.754 and +18.377 KJ mol-1 for Pb2+ and Cd2+ on SAT respectively. The entropies of the adsorption process were also evaluated and have been found to be +41.805 and +12.151 KJ mol-1 for Pb2+ and Cd2+ on SAT. The results showed that SAT has the potential to be applied as alternative low-cost nanoadsorbents in the remediation of metal contamination in water.
TiO (_2)浸渍黑葡萄茎纳米活性炭的合成及其在去除重金属中的应用
采用两步法从黑加仑(Ribes nigrum)茎中制备出了纳米活性碳,并利用不同的光谱技术对其进行了表征。傅立叶变换红外光谱显示了 O-H、C=C、C=N 和 C-O 伸展。XRD 分析表明,茎活性碳(SAC)的粒径为 29.57 nm,浸渍钛的茎活性碳(SAT)的粒径为 26.55 nm;扫描电镜显示,SAC 和 SAT 的形态为球形、颗粒状和多孔状。制备的纳米活性材料用于去除水溶液中的 Pb2+ 和 Cd2+。在室温下的批次实验中研究了初始金属离子浓度、搅拌时间、吸附剂剂量、温度和 pH 值的影响。搅拌 60 分钟后,Pb2+ 和 Cd2+ 在 SAT 上迅速达到吸附平衡,且吸附去除率明显提高。Pb2+ 和 Cd2+ 在飒特上的吸附数据与 Freundlich 等温线的拟合优于与 Langmuir 等温线的拟合,相关系数 (R2) 非常接近统一,最大吸附容量 KF > 1.00。与 Freundlich 的拟合表明吸附剂上有多层覆盖。动力学研究表明,SAT 的假二阶动力学模型具有良好的相关系数。吸附过程的焓分别为Pb2+ 和 Cd2+ 在 SAT 上的吸附焓分别为 +12.754 和 +18.377 KJ mol-1。同时还评估了吸附过程的熵,发现 Pb2+ 和 Cd2+ 在 SAT 上的吸附熵分别为 +41.805 和 +12.151 KJ mol-1。结果表明,SAT 有潜力作为替代性低成本纳米吸附剂,用于修复水中的金属污染。
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