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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Anchoring of green synthesized silver nanoparticles onto various surfaces for enhanced heterogeneous removal of brilliant green dye from aqueous solutions with error analysis study
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Anchoring of green synthesized silver nanoparticles onto various surfaces for enhanced heterogeneous removal of brilliant green dye from aqueous solutions with error analysis study

机译:将绿色合成银纳米颗粒锚固到各种表面上,以增强具有误差分析研究的水溶液中的辉煌绿色染料的异质去除

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Silver nanoparticles (AgNPs) were immobilized onto either an acid or "base-functionalized" orange peel via the green synthesized method and denoted as AgNPs@OP/A and AgNPs@OP/B. FTIR, UV-vis spectra, XRD, and thermogravemetric analysis techniques characterized the samples obtained. The mean particle size of immobilized AgNPs was computed from the XRD pattern based on the plane's line width, refraction peak using Scherrer's equation and equals about 2.4, 17.5, and 18.9 nm for AgNPs@OP/B, AgNPs@OP/A and, AgNPs@MWCNTs. The efficiency of supported silver nanoparticles to remove brilliant green (BG) from aqueous solutions, was examined via oxidative decolorization technique using AgNPs@OP/A and AgNPs@OP/B or adsorption technique using AgNPs@MWCNTs. The experiments were conducted on different experimental conditions. The reaction was followed by conventional UV Vis spectrophotometer at lambda(max) = 624 nm. The reaction exhibited first-order kinetics for [dye] and [H2O2] using AgNPs@OP/A and AgNPs@OP/B. while the adsorption kinetics of BG onto AgNPs@MWCNTs could be represented by pseudosecond-order kinetic and Langmuir isotherm model. The adsorption process was endothermic and spontaneous. The data obtained was examined by three statistical error analysis models (SSE, ARE, and chi(2)) and the results confirmed that the Langmuir isotherm is a good model for adsorption of BG dye. Thus, immobilization of AgNPs found to be thermally stable, and enhance cost-effectiveness. So, these nanoparticles are valid for real environmental applications.
机译:将银纳米颗粒(AgNP)固定在酸或“基础官能化”橙皮中通过绿色合成方法固定在酸或“基础官能化”橙皮中,并表示为AgNPS @ OP / A和AgNPS @ OP / B. FTIR,UV-Vis光谱,XRD和热争夺分析技术表征了所获得的样品。根据平面线宽,使用Scherrer方程的折射峰值计算固定的AGNP的平均粒度,并且等于2.4,17.5和18.9nm for Agnps @ OP / B,AGNPS @ OP / A和,AGNPS @mwcnts。通过使用AgNPS @ OP / A和AgNPS @ OP / B或AgNPS @ MWCNTS,通过氧化脱色技术检查支撑银纳米颗粒的效率从水溶液中除去水溶液。在不同的实验条件下进行实验。在Lambda(MAX)= 624nm处,通过常规UV Vis分光光度计进行反应。该反应使用AgNPS @ OP / A和AgNPS @ OP / B表现出ω和[H2O2]的一级动力学。虽然BG的吸附动力学在AGNPS @ MWCNTS上可以由伪级顺序动力学和Langmuir等温模型代表。吸附过程是吸热和自发的。通过三种统计误差分析模型(SSE,和CHI(2))检查所获得的数据,结果证实了Langmuir等温线是吸附BG染料的良好模型。因此,发现AgNP的固定稳定性是热稳定的,提高成本效益。因此,这些纳米粒子适用于实际环境应用。

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