首页> 外文期刊>Mathematical research letters: MRL >Intelligent-activated carbon prepared from pistachio shells precursor for effective adsorption of heavy metals from industrial waste of copper mine
【24h】

Intelligent-activated carbon prepared from pistachio shells precursor for effective adsorption of heavy metals from industrial waste of copper mine

机译:智能活性炭由开心果壳前体制备,用于有效吸附来自铜矿工业垃圾的重金属

获取原文
获取原文并翻译 | 示例
           

摘要

A novel and efficient bio-adsorbent based on magnetic activated carbon nanocomposites (MAC NCs)-modified by sulfamic acid (H3NSO3) has been developed from pistachio shell precursor as agricultural by-products and then was applied for heavy metal removal. Design an experimental model (Central Composite Design (CCD)) for adopting surface response could efficiently be used for adsorption process, and it is an economical way of obtaining the optimal adsorption conditions based on the limited number of experiments. The variants of adsorbent dosage, metal ion concentration, and contact time were optimized for Cu(II) metal by CCD. In addition, adsorption capacity and isoelectric point (pHzpc) of adsorbent were studied at different pH values. Kinetic and isotherm of adsorption were investigated via the Langmuir and the pseudo-second-order model. The maximum adsorption capacity using the Langmuir model was 277.77 mg g(-1) for Cu(II) ions on H2NSO3-MAC NCs. Then adsorption process was investigated for ions of Fe(II), Zn(II), and Ni(II) under optimized condition. Also, the competitive adsorption of Fe(II), Zn(II), and Ni(II) ions mixed solution onto H2NSO3-MAC NCs was conducted. Adsorption-desorption results exhibited that the H2NSO3-MAC NCs can be used up to seven cycles while they have excellent performance. Finally, to evaluate the efficiency of this bio-adsorbent, the removal of heavy metals from wastewater of the Sarcheshmeh copper mine as a real sample was studied.
机译:基于磁性活性炭纳米复合材料(MAC NCS)的新型和高效的生物吸附剂 - 通过氨基酸(H3NSO3)进行了处理,作为农业副产物,施加了重金属去除剂。设计一种用于采用表面响应的实验模型(中央复合设计(CCD))可以有效地用于吸附过程,并且是基于有限数量的实验获得最佳吸附条件的经济方法。吸附剂剂量,金属离子浓度和接触时间的变体对CCD的Cu(II)金属进行了优化。此外,在不同的pH值中研究了吸附剂的吸附能力和等电点(PHZPC)。通过Langmuir和伪二阶模型研究了吸附的动力学和等温关。使用Langmuir模型的最大吸附能力为H 2NSO3-MAC NCS的Cu(II)离子的277.77mg G(-1)。然后在优化条件下研究了对Fe(II),Zn(II)和Ni(II)的离子进行了吸附过程。此外,对Fe(II),Zn(II)和Ni(II)离子混合溶液的竞争吸附于H 2NSO3-MAC NCS上。吸附 - 解吸结果表明,H2NSO3-MAC NCS可以使用多达七个周期,而它们具有出色的性能。最后,研究了这种生物吸附剂的效率,研究了作为真实样品的阶级铜矿废水中的重金属的除去。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号