首页> 外文期刊>International Journal of Phytoremediation >Fast decolorization of cationic dyes by nano-scale zero valent iron immobilized in sycamore tree seed pod fibers: kinetics and modelling study
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Fast decolorization of cationic dyes by nano-scale zero valent iron immobilized in sycamore tree seed pod fibers: kinetics and modelling study

机译:纳米尺度零价铁固定在梧桐树种子荚纤维中的纳米级零价铁的快速脱色:动力学和建模研究

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In the present work, Sycamore (Platanus occidentalis) tree seed pod fibers (STSPF) and nano-scale zero valent iron particles (nZVI) immobilized in Sycamore tree seed pod fibers (nZVIx298;STSPF) were produced. This biosorbent has been utilized as a viable effective biosorbent in the removing of methylene blue hydrate (MB), malachite green oxalate(MG), methyl violet 2B(MV) dyes from synthetic wastewater. The biosorbents were characterized by scanning electron microscopy (SEM) and Fourier transform infrared (FT-IR) spectroscopy. Various parameters such as contact time, solution concentration, pH and amount of biosorbent were investigated in order to evaluate the potential of the nanomaterials immobilized on natural wastes as sorbing biomaterials for the cationic dyes. Study on sorption kinetic and the sorption isotherm was carried out and best fitting models for the rate kinetics and isotherms were suggested. Langmuir isotherm was observed to be compatible with the isotherm models. The STSPF in the raw form showed the best dye sorption capacity of 43.67 mg/g for MG, 25.32 mg/g for MV, and 126.60 mg/g for MB. The magnetic nZVIx298;STSPF showed the best dye sorption capacity 92.59 mg/g for MG, 92.59 mg/g for MV, and 140.80 mg/g for MB. The iron nanoparticles immobilized biosorbent exhibited a higher removal capacity for all dyes compared to the raw biosorbent.
机译:在本作的工作中,制备了固定在梧桐树种子荚纤维(NZVix298; Stspf)中固定在梧桐树籽荚纤维(NZVix298; Stspf)的树苗种子荚(STSPF)和纳米级零价铁颗粒(NZVI)。该生物吸附剂已被用作从合成废水中除去亚甲基蓝水合物(MB),孔雀石绿草(Mg),甲基紫色2B(MV)染料中可行的有效生物吸附剂。通过扫描电子显微镜(SEM)和傅里叶变换红外(FT-IR)光谱,表征生物吸收剂。研究了各种参数,例如接触时间,溶液浓度,pH和生物吸附剂的量,以评估固定在天然废物上的纳米材料的潜力作为阳离子染料的吸附生物材料。提出了对吸附动力学和吸附等温线的研究,提出了速率动力学和等温的最佳拟合模型。观察到Langmuir等温线与等温模型兼容。 RAPF中的STSPF为MG,25.32mg / g的最佳染料吸附能力为43.67mg / g,MV为25.32mg / g,MB的126.60mg / g。磁性NZVix298; STSPF显示最佳染料吸附能力92.59mg / g,用于MV,92.59mg / g,MB的140.80mg / g。与原料生物吸附剂相比,铁纳米颗粒固定化生物吸附剂表现出较高的所有染料的去除能力。

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