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Preparation of a Stable Nanoscale Manganese Residue-Derived FeS@Starch-Derived Carbon Composite for the Adsorption of Safranine T

机译:稳定的纳米锰残渣衍生FeS @淀粉衍生碳复合材料的吸附制备藏红花T

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摘要

To develop a novel, low-cost adsorbent with natural material and industrial waste as raw materials, nanoscale manganese residue-derived FeS@starch-derived carbon (MR–FeS@SC) composite was prepared by the carbonization of starch–manganese residue gel. Manganese residue-derived FeS (MR–FeS) and starch-derived carbon (SC) were also prepared as contrasts for comparative studies. The MR–FeS@SC nanocomposite exhibited relatively large specific surface area and micropore volume, appropriate pore size, abundant functional groups, strong interaction between the functional groups of SC and MR–FeS, and the immobilization and uniform distribution of MR–FeS nanoparticles onto SC support material, which contributed to better adsorption properties for the removal of Safranine T (ST) from the aqueous solution compared with those of MR–FeS and SC. The adsorption could be conducted at a wide range of pH and temperature to achieve a satisfy removal efficiency of ST with MR–FeS@SC nanocomposite as adsorbent. The adsorption kinetics well followed the pseudo-second-order model, and the dominant mechanism was chemisorption. The adsorption behavior was well described by the Langmuir isotherm model. Due to the strong interaction between MR–FeS nanoparticles and SC support, MR–FeS@SC nanocomposite exhibited better reusability and stability even after fifteen cycles. This study provides a facile method of preparing effective and stable adsorbents for the treatment of dye wastewater.
机译:为了开发一种以天然材料和工业废料为原料的新型低成本吸附剂,通过将淀粉-锰渣凝胶碳化,制备了纳米级锰渣衍生FeS @淀粉衍生碳(MR–FeS @ SC)复合材料。还准备了锰残留物的FeS(MR–FeS)和淀粉源的碳(SC)作为对比研究的对比。 MR–FeS @ SC纳米复合材料具有相对较大的比表面积和微孔体积,适当的孔径,丰富的官能团,SC和MR–FeS的官能团之间的强相互作用以及MR–FeS纳米颗粒的固定化和均匀分布SC支撑材料,与MR–FeS和SC相比,有助于从水溶液中去除藏红T(ST)更好的吸附性能。以MR–FeS @ SC纳米复合材料为吸附剂,可以在很宽的pH和温度范围内进行吸附,以达到令人满意的ST去除效率。吸附动力学很好地遵循了拟二级模型,其主要机理是化学吸附。 Langmuir等温模型很好地描述了吸附行为。由于MR–FeS纳米颗粒与SC载体之间的强相互作用,因此即使经过15个循环,MR–FeS @ SC纳米复合材料仍具有更好的可重复使用性和稳定性。这项研究提供了一种制备有效和稳定的吸附剂以处理染料废水的简便方法。

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