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首页> 外文期刊>ACS Omega >Facile Synthesis of Calcite-Impregnated Hydrochar with High Sorption Capacity for Cu(II) from Aqueous Solution
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Facile Synthesis of Calcite-Impregnated Hydrochar with High Sorption Capacity for Cu(II) from Aqueous Solution

机译:从水溶液轻松合成对Cu(II)具有高吸附能力的方解石浸渍烃

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Calcite-impregnated hydrochar (Ca-HC) was successfully synthesized by a one-step hydrothermal method and used as an adsorbent for Cu(II) remediation. Characterization techniques showed that Ca-HC contained calcite and oxygen-containing functional groups. A series of Cu(II) sorption experiments onto Ca-HC showed that the initial Cu(II) concentration, contact time, sorption temperature, and initial pH of the solution influenced the sorption of Cu(II). The actual achievable sorption capacity of Ca-HC for Cu(II) was 130.57 mg g–1 at 303 K, and the sorption process obeyed the Langmuir model and pseudo-second-order kinetic equation. The precipitation and surface complexation rather than ion exchange were mainly ascribed to the removal of Cu(II) onto Ca-HC. The calcite provided the active site to produce posnjakite precipitation during the sorption process and enhance the sorption capacity of the hydrochar. Therefore, these results demonstrated that Ca-HC is an effective sorbent that can remove Cu(II) from water.
机译:通过一步水热法成功合成了方解石浸渍的碳氢化合物(Ca-HC),并将其用作铜(II)修复的吸附剂。表征技术表明,Ca-HC含有方解石和含氧官能团。在Ca-HC上进行的一系列Cu(II)吸附实验表明,初始Cu(II)浓度,接触时间,吸附温度和溶液的初始pH影响了Cu(II)的吸附。 Ca-HC在303 K时对Cu(II)的实际可达到的吸附容量为130.57 mg g-1,并且吸附过程遵循Langmuir模型和伪二级动力学方程。沉淀和表面络合而不是离子交换主要归因于将Cu(II)去除到Ca-HC上。方解石提供了在吸附过程中产生posnjakite沉淀的活性位点,并增强了水焦的吸附能力。因此,这些结果证明,Ca-HC是可以从水中去除Cu(II)的有效吸附剂。

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