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A facile one-pot hydrothermal synthesis of hydroxyapatite/biochar nanocomposites: Adsorption behavior and mechanisms for the removal of copper(II) from aqueous media

机译:羟基磷灰石/生物炭纳米复合材料的容易单壶水热合成:吸附行为和除水溶液中除去铜(II)的机制

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In this study, hydroxyapatite/biochar nanocomposites (HAP/BC-NCs) were synthesized through a simple one-pot hydrothermal process and utilized as an adsorbent for the removal of copper(II) from aqueous media. Characterization results revealed that rod-shaped HAP nanoparticles were successfully incorporated on the surfaces of synthesized HAP/BC-NCs. A set of systematically designed batch experiments were carried out to determine the influences of adsorbent dosage, solution pH, ionic strength, and temperature on the adsorption behavior of the HAP/BC-NCs. Overall findings from batch experiments and extended X-ray absorption fine structure analysis demonstrated that the potential mechanisms responsible for the removal of Cu(II) from aqueous media are cation exchange between Cu2+ in solution and Ca2+ in the HAP on the surfaces of the assynthesized nanocomposites and the formation of inner-sphere surface complexes on the surfaces of the HAP/BCNCs. Kinetic studies revealed that the adsorption process follows the pseudo-second-order model and that the overall adsorption rate is controlled by film diffusion as the dominant mechanism and intraparticle diffusion as a secondary mechanism. Adsorption isotherms were accurately represented by a Langmuir isotherm model and the maximum adsorption capacity was determined to be 99.01 mg/g at 298 K, which represents a higher efficiency for Cu(II) adsorption compared to previously reported composite materials. Thermodynamic analysis indicated that the process is thermodynamically spontaneous and endothermic process. Overall, the findings presented in this paper suggest that HAP/BC-NCs have promising applicability for the removal of heavy metals from aqueous media as an alternative, low-cost, and eco-friendly adsorbent for environmental remediation.
机译:在该研究中,通过简单的单罐水热法合成羟基磷灰石/生物炭纳米复合材料(HAP / BC-NCS),并用作从水性介质中除去铜(II)的吸附剂。表征结果表明,棒状HAP纳米颗粒成功掺入合成的HAP / BC-NC的表面上。进行了一组系统地设计的分批实验,以确定吸附剂剂量,溶液pH,离子强度和温度对HAP / BC-NCS的吸附行为的影响。来自批量实验的总体发现和延长的X射线吸收细结构分析证明,负责从水性介质中除去Cu(II)的潜在机制是在水合化纳米复合材料表面的HAP中的Cu 2+和Ca2 +之间的阳离子交换并在HAP / BCNC的表面上形成内球表面复合物。动力学研究表明,吸附过程遵循伪二阶模型,并且通过薄膜扩散来控制整体吸附速率作为主要机理和粒前扩散作为二级机制。通过Langmuir等温模型精确地表示吸附等温物,并且测定最大吸附能量为99.01mg / g,298 k,与先前报道的复合材料相比,Cu(ii)吸附的效率更高。热力学分析表明该过程是热力学自发和吸热过程。总体而言,本文提出的研究结果表明,HAP / BC-NCS具有希望从含水培养基中除去重金属作为替代,低成本和环保型吸附剂的适用性。

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