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Optimising the influence of novel citric acid-assisted mechanochemical modification of corncob on Cu~(2+), Pb~(2+) and Zn~(2+) removal

机译:优化Cu〜(2+),Pb〜(2+)和Zn〜(2+)去除Cu〜(2+),Pb〜(2+)和Zn〜(2+)去除玉米菌的影响力

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In this study, the mechanochemical treatment with and without reagent (citric acid) was presented as a new modification method to improve the adsorptive capacity of corncob in the removal of Cu2+, Pb2+ and Zn2+ heavy metal ions from aqueous solutions. A high-energy planetary ball mill was used for modification. The parameters affecting both reagent-assisted (CA-MCM)/non-reagent (MCM) modifications and adsorption effectiveness were investigated via the response surface methodology approach. As a result of optimisation, over 95% heavy metal removals were achieved for both modified materials. To explain the adsorption mechanism; isothermal, kinetic, thermodynamic and activation parameters were examined. The pseudo-second-order and Langmuir isotherm models were found to be appropriate for all adsorbents and heavy metals. According to the thermodynamic parameters, the adsorption processes were spontaneous and endothermic. Desorption studies were conducted to determine the reusability of the adsorbents. Ternary adsorption system of metals was also investigated. Characterisation studies were carried out using Fourier Transform Infrared Spectrometer (FTIR), Scanning Electron Microscopy (SEM), Brunauer-Emmett-Teller (BET), and surface analysis (point of zero charge (pH(pzc)), Boehm titration) to investigate the effects of modifications on the adsorbents' surface and chemical structure. In addition, the financial advantages of the modification methods were demonstrated by alternative selection and cash flow analyses. All the results revealed that this method as a low-cost and eco-friendly alternative modification treatment to increase the adsorption efficiency of agricultural waste of similar nature.
机译:在该研究中,用和不含试剂(柠檬酸)的机制处理作为一种新的改性方法,以改善来自水溶液除去Cu2 +,Pb2 +和Zn2 +重金属离子的Cu2 +,Pb2 +和Zn2 +重金属离子中的玉米板的吸附能力。高能行星球磨机用于改性。通过响应面方法方法研究影响试剂辅助(CA-MCM)/非试剂(MCM)修饰和吸附效果的参数。优化的结果,对两个改性材料实现了超过95%的重金属去除去。解释吸附机制;检查等温,动力学,热力学和活化参数。发现伪二阶和Langmuir等温模型适用于所有吸附剂和重金属。根据热力学参数,吸附过程是自发和吸热的。进行解吸研究以确定吸附剂的可重用性。还调查了金属的三元吸附系统。使用傅里叶变换红外光谱仪(FTIR),扫描电子显微镜(SEM),Brunauer-Emmett-Teller(Bet)和表面分析(PhO(PH(PH(PH(PH(PC)),BOEHM滴定)进行研究以进行调查改性对吸附剂表面和化学结构的影响。此外,通过替代选择和现金流分析证明了修改方法的财务优势。所有结果表明,该方法作为低成本和生态友好的替代修改治疗,以提高农业浪费类似性的吸附效率。

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