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首页> 外文期刊>Journal of polymers and the environment >Polymeric Substitution of Triazole Moieties in Cellulosic Schiff Base for Heavy Metal Complexation Studies
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Polymeric Substitution of Triazole Moieties in Cellulosic Schiff Base for Heavy Metal Complexation Studies

机译:纤维素席夫碱中三唑部分的聚合物取代在重金属络合研究中的应用

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Abstract The adsorption of metal ions from wastewater using Schiff base cellulose bearing pendulant heterocyclic chelating groups (MC-Tz) as a sorbent is the subject of this paper. Solid state 13C-NMR, FT-IR, SEM, and XRD spectroscopy, as well as TGA and XRD were utilized to examine the adsorbent. The batch sorption process used pH, adsorbent dose, initial adsorbate concentration, temperature, as well as contact time to calculate the metal ion levels. The optimum pH-6.0, with the complexation reaction and ion exchange phase as the mechanisms at work. To investigate the equilibrium concentration and temperature-dependent rate constants, various models, such as the Langmuir, Freund, Temkin, and Redlich–Peterson adsorption isotherm were utilized. Maximum adsorption capacity of the modified cellulose (MC-Tz) towards Lead(II), Copper(II), Nickel(II), and Cadmium(II) were found to be 453.2, 485.5, 473.2, and 455.6?mg/g respectively. A Kinetic study shows that the Langmuir is more in agreement with the Pseudo-second order Kinetic model. Adsorption–Desorption experiments over four cycles demonstrated the feasibility of the sorbent's regeneration potential and the measured values of enthalpy and entropy explain the essence of the adsorption process. The objective of this research is to discover non-toxic, environmentally friendly adsorbent biodegradable components and to conduct evaluations to determine their use in wastewater treatment.
机译:摘要 以希夫基纤维素含下垂杂环螯合基团(MC-Tz)为吸附剂,研究其对废水中金属离子的吸附。采用固态13C-NMR、FT-IR、SEM和XRD光谱以及TGA和XRD对吸附剂进行了检测。分批吸附过程使用pH值、吸附剂剂量、初始吸附物浓度、温度以及接触时间来计算金属离子水平。最佳pH值为6.0,以络合反应和离子交换相为工作机理。为了研究平衡浓度和温度随温度变化的速率常数,采用了Langmuir、Freund、Temkin和Redlich-Peterson吸附等温线等多种模型。改性纤维素(MC-Tz)对铅(II)、铜(II)、镍(II)和镉(II)的最大吸附容量分别为453.2、485.5、473.2和455.6?mg/g。动力学研究表明,朗缪尔与伪二级动力学模型更吻合。吸附-解吸实验经过四个循环,证明了吸附剂再生潜力的可行性,焓和熵的测量值解释了吸附过程的本质。本研究的目的是发现无毒、环保的吸附剂可生物降解成分,并进行评估以确定其在废水处理中的用途。

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