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Biosorption of Copper by a Natural Byproduct Material: Pressed Black Cumin Cakes

机译:通过天然副产物材料生物吸附铜:压制黑色孜然蛋糕

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摘要

A natural waste material, pressed black cumin cake, was characterized as an adsorbent for copper (II) ions. The pressed black cumin cake waste was obtained after the cold pressing of black cumin seeds in order to extract black cumin oil. The press cake was used as an adsorbent after washing with cold water for the removal of copper (II) ions. The effects of pH and adsorbent dose on the removal efficiencies were investigated. The point of the zero charge was determined. Isotherm studies were performed using Langmuir, Freundlich, and Dubinin-Radushkevich models. The adsorption of the copper (II) was found to comply with the Langmuir isotherm model. The maximum adsorption capacity calculated from the Langmuir isotherm was found to be 106.38mg/g. Thermodynamic studies were also carried out. Furthermore, three kinetic models, the pseudo firstorder, pseudo second-order, and intraparticle diffusion, were investigated. The adsorption adhered to the pseudo second order kinetic model. The regeneration of the adsorbent was also investigated. An environmentally friendly, low cost, fast, and easily accessible adsorbent was developed for the efficient removal of copper (II). It is advantageous in terms of stability for long-term use.
机译:自然废料压制黑色孜然饼的特征为铜(II)离子的吸附剂。在黑色孜然种子冷压后获得压制的黑色孜然蛋糕废物,以提取黑色孜然油。用冷水洗涤以除去铜(II)离子后,用作吸附剂。研究了pH和吸附剂剂量对去除效率的影响。确定零充电的点。使用Langmuir,Freundlich和Dubinin-Radushkevich模型进行等温线研究。发现铜(II)的吸附符合Langmuir等温模型。发现从朗米尔等温线计算的最大吸附能力为106.38mg / g。还进行了热力学研究。此外,研究了三种动力学模型,伪第一阶,伪二阶和粒状扩散。吸附粘附到伪二阶动力学模型。还研究了吸附剂的再生。开发了一种环保,低成本,快速且易于接近的吸附剂,以便有效地去除铜(II)。在长期使用的稳定性方面是有利的。

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