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Removal of phenol and cyanide in multi-substrate system using copper impregnated activated carbon (Cu-GAC)

机译:去除苯酚和multi-substrate氰化物系统使用铜浸渍活性炭

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摘要

This study studies the process of removal of phenol and cyanide in multi-substrate system using copper impregnated Granular Activated Carbon (Cu-GAC). Effects of various process parameters on removal were taken into consideration. It was observed that under optimum conditions of pH 9, temperature 30 degrees C, adsorbent dose 10 g/L, initial concentration 200 mg/L phenol and 20 mg/L cyanide and contact time 18 h, approximate to 91% removal of phenol and 94% removal of cyanide takes place. Among equilibrium models, Extended Freundlich model was found suitable for description of adsorption of both phenol and cyanide. The maximum adsorption capacity for phenol and cyanide, calculated by Extended Langmuir model, was 292.95 and 3.21 mg/g of Cu-GAC, respectively. It was observed that phenol and cyanide show synergism in the process of adsorption from wastewater. Kinetic modeling of experimental data on adsorption of phenol and cyanide established the suitability of pseudo-first and -second order model for adsorption of phenol and cyanide on Cu-GAC, respectively. (c) 2015 American Institute of Chemical Engineers Environ Prog, 34: 1714-1723, 2015
机译:本研究研究去除的过程苯酚和氰化物multi-substrate系统使用铜浸渍颗粒激活碳(Cu-GAC)。参数对去除被纳入考虑。pH值条件,温度30摄氏度,吸附剂剂量10 g / L, 200年初始浓度mg / L苯酚和20 mg / L氰化物和接触时间18 h,近似去除苯酚和91%94%的去除氰化物。平衡模型、扩展的弗伦德里希模型发现适合描述的吸附苯酚和氰化物。苯酚和氰化物的能力,计算了扩展朗缪尔模型,292.95和3.21毫克/克分别为Cu-GAC。在这个过程中苯酚和氰化物显示合作废水的吸附。对苯酚的吸附和实验数据氰化物的适用性准一秒的顺序模式Cu-GAC吸附苯酚和氰化物,分别。化学工程师环境掠夺,34:1714 - 1723,2015

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