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首页> 外文期刊>RSC Advances >Synthesis and application of polypyrrole coated tenorite nanoparticles (PPy@TN) for the removal of the anionic food dye ‘tartrazine’ and divalent metallic ions viz. Pb(ii), Cd(ii), Zn(ii), Co(ii), Mn(ii) from synthetic wastewater
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Synthesis and application of polypyrrole coated tenorite nanoparticles (PPy@TN) for the removal of the anionic food dye ‘tartrazine’ and divalent metallic ions viz. Pb(ii), Cd(ii), Zn(ii), Co(ii), Mn(ii) from synthetic wastewater

机译:聚吡咯涂层金属纳米粒子(PPY @ TN)用于去除阴离子食品染料'塔拉嗪'和二价金属离子致Z的合成与应用。来自合成废水的Pb(II),CD(II),Zn(II),CO(II),Mn(II)

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The present study deals with the synthesis of polypyrrole coated tenorite nanoparticles. The synthesized nanoparticles were characterized by XRD, TEM, SEM and EDS. TEM images showed the formation of nanoparticles with 26–30 nm diameter. The BET surface area of the nanoparticles was determined to be 425 m ~(2) g ~(?1) while the pore diameter of the nanoparticles was found to be 3.57 nm which showed the formation of mesoporous nanoparticles. The pH _(zpc) of the nanoparticles was determined to be 4.4. The removal efficiency of the synthesized nanoparticles for an anionic food dye ‘tartrazine’ was investigated. Decreased removal was observed, when the dye concentration was increased from 100 to 200 mg L ~(?1) . It was observed that an acidic medium was favorable for tartrazine removal. A thermodynamic study suggested the endothermic nature of tartrazine adsorption. The value of E _(a) for the present system was found to be 26.97 kJ mol ~(?1) . The best suitable kinetic model was well explained by the pseudo second order model. Langmuir adsorption capacity was measured to be 42.50 mg g ~(?1) . Exhausted (dye loaded) nanoparticles were used as an efficient adsorbent for the removal of divalent metallic ions viz. Pb( II ), Cd( II ), Co( II ), Mn( II ), Zn( II ) and were found to be efficient for the removal of metallic species from a single solute system as well as a multi-solute system. This study reveals that polypyrrole coated tenorite nanoparticles are very efficient for dye removal and the dye loaded exhausted adsorbent is equally good for metal removal because tartrazine loading on nanoparticles makes the surface suitable for metal interaction. Thus, the synthesized nanoparticles prove to be a good candidate for the treatment of dye and metal bearing wastewater.
机译:本研究涉及聚吡咯涂覆的金属纳米粒子的合成。合成的纳米颗粒的特征在于XRD,TEM,SEM和EDS。 TEM图像显示纳米颗粒的形成,直径为26-30nm。将纳米颗粒的BET表面积测定为425μm〜(2)g〜(α1),同时发现纳米颗粒的孔径为3.57nm,显示介孔纳米粒子的形成。将纳米颗粒的pH _(ZPC)测定为4.4。研究了对阴离子食品染料'塔拉嗪'合成纳米颗粒的去除效率。观察到去除降低,当染料浓度从100-200mg L〜(β1)增加时。观察到酸性介质有利于塔拉嗪去除。热力学研究表明塔拉嗪吸附的吸热性质。发现本系统的E _(a)的值为26.97kj mol〜(?1)。最好的合适的动力学模型得到了伪二阶模型很好的解释。测量Langmuir吸附容量为42.50mg g〜(?1)。用尽(染料负载)纳米颗粒作为高效吸附剂,用于去除二价金属离子viz。 PB(II),CD(II),CO(II),Mn(II),Zn(II),并被发现有效地从单一溶质系统以及多溶质系统中除去金属物质。本研究表明,聚吡咯涂覆的金属纳米颗粒对染料除去非常有效,染料装备的排气吸附剂同样适用于金属去除,因为纳米颗粒上的塔拉嗪负载是适用于金属相互作用的表面。因此,合成的纳米颗粒是治疗染料和金属轴承废水的良好候选物。

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