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Highly efficient nickel (II) removal by sewage sludge biochar supported α-Fe2O3 and α-FeOOH: Sorption characteristics and mechanisms

机译:高效镍(II)污水污泥Biochar支撑α-Fe2O3和α-FeO​​H:吸附特性和机制

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摘要

A novel approach was employed to load α-Fe2O3 and α-FeOOH onto sewage sludge biochar (SBC) with the purpose of efficient nickel (Ni) removal. A high Ni(II) adsorption capacity of 35.50 mg·g-1 in 100 ppm Ni(II) solution with 10 mg modified sewage sludge biochar (MSBC) was achieved. The adsorption kinetic and isotherm were fitted well by the pseudo-second-order model and the Langmuir model, respectively. The optimal pH was found around a neutral pH of 7. The adsorption mechanisms of Ni(II) onto MSBC were described as the synergistic effects of electrostatic attraction, ion exchange, inner-sphere complexation and co-precipitation. The initial rapid adsorption phenomenon could be attributed to electrostatic attraction and ion exchange, and then inner-sphere complexation and co-precipitation acted as a crucial role in the following step. The remarkable performance of MSBC provides an effective waste utilization approach to simultaneous sewage sludge recycle and Ni removal from aqueous solution.
机译:采用一种新的方法将α-Fe2O3和α-FeO​​OH加载到污水污泥Biochar(SBC)上,目的是高效镍(Ni)去除。在100ppm Ni(II)溶液中的高Ni(II)吸附容量为35.50mg·G-1,达到10mg改性污泥Biochar(MSBC)。通过伪二阶模型和Langmuir模型分别适用于吸附动力学和等温线。围绕中性pH发现最佳pH。Ni(II)在MSBC上的吸附机制被描述为静电吸引,离子交换,内球络合和共沉淀的协同效应。初始快速吸附现象可归因于静电吸引和离子交换,然后内球络络合和共沉淀在以下步骤中作用为至关重要的作用。 MSBC的显着性能提供了一种有效的废物利用方法,可以同时污水污泥回收和从水溶液中除去Ni。

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