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首页> 外文期刊>South african journal of chemical engineering >Synthesis and optimization of reaction variables in the preparation of pine-magnetite composite for removal of methylene blue dye
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Synthesis and optimization of reaction variables in the preparation of pine-magnetite composite for removal of methylene blue dye

机译:制备亚铁蓝染料的松磁铁矿复合材料中反应变量的合成与优化

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Purity and quality of water is a basic concern to mankind. The environment is deteriorating daily due to industrial pollution. Dyes discharged together with industrial textile wastewaters are main organic pollutants because they are highly visible and undesirable even at low concentrations in water. Natural biomaterials have been applied previously as adsorbents for dyes from aqueous solution, but their application has been limited by low adsorption capacity. In this study, pine cone biomass, a naturally occurring agricultural waste was treated with 0.15?M NaOH solution to remove unwanted plant extracts and iron oxide magnetic particles which was coated on the pine surface. The main focus of the study was to prepare and optimize the working conditions for the pine magnetite composite. The bionanocomposite material was synthesized by a complete co-precipitation method of Fe2+: Fe3+(1:2) under alkaline conditions in an inert environment followed by addition of the biomass. The variables used for the experiments were volume of NH4OH varied from 5 to 40?ml, reaction temperature varied from 40 to 100?°C, effect of time varied from 15 to 60?min and mass from 1.0 to 3.5?g. Incorporation of magnetite nanoparticles onto the surface of the biomass was confirmed by FTIR, TGA and XRD. TEM showed particles size ranging from 8.23–11.73?nm. XRF showed the iron oxide content ranging from 57 to 74%.
机译:水的纯度和质量是人类的基本关切。由于工业污染,环境每天都在恶化。与工业纺织废水一起排放的染料是主要的有机污染物,因为它们即使在水中浓度低时也很容易看见并且是不受欢迎的。天然生物材料先前已被用作水溶液中染料的吸附剂,但由于吸附能力低而受到限制。在这项研究中,将天然存在的农业废料松果生物质用0.15?M NaOH溶液处理,以去除多余的植物提取物和氧化铁磁性颗粒,这些颗粒被覆在松树表面。研究的主要重点是准备和优化松磁铁矿复合材料的工作条件。在惰性条件下,在碱性条件下,通过完全共沉淀Fe2 +:Fe3 +(1:2)的方法,可以合成生物纳米复合材料。用于实验的变量是NH 4 OH的体积为5-40μml,反应温度为40-100℃,时间影响为15-60min,质量为1.0-3.5g。通过FTIR,TGA和XRD证实了磁铁矿纳米颗粒结合到生物质的表面上。透射电镜显示颗粒大小为8.23–11.73?nm。 XRF显示氧化铁含量为57-74%。

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