Photocatalytic Degradation of Textile Dye Using Green Synthesized Nanoparticles

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Abstract

In recent years, plants have been used as reducing agents for the synthesis of nanoparticles in a short time, and it consists of low cost, and there is no harmful effect on the environment; In this study, silver nanoparticles are synthesized from AgNO3 using leaf extract of Solena amplexicaulis (Lam.) Gandhi. The leaf extract is mixed with AgNO3 solution, and color change occurs from whitish-yellow to dark brown at room temperature within a few minutes. After incubation, the suspension was centrifuged, and particles were separated and dried. The green synthesized AgNPs were characterized by UV-visible spectroscopy in a maximum wavelength of 393 nm, FTIR, SEM, EDAX, DLS, XRD, and ZETA POTENTIAL; Photocatalytic degradation of Victoria blue or basic blue dye was investigated by green synthesized Ag nanoparticles with solar irradiation technique by biometrically at different time intervals. The UV-visible characteristic peak absorption of Victoria blue solution was 250 nm. The photocatalytic activity at different time intervals [control, treated controls, 30 min, (1, 2, 3, 5, 8, 12, 24, 48, 60, 72) hrs] was collected and decreased the peak intensity and was measured using UV-visible spectroscopy and Fourier Transform Infrared Spectroscopy. Green synthesized Ag nanoparticles effectively degraded the Victoria blue dye solution in total exposure time.
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绿色合成纳米颗粒光催化降解纺织染料
近年来,利用植物作为还原剂在短时间内合成纳米颗粒,具有成本低、对环境无不良影响等优点;在本研究中,以银杏叶提取物为原料,以AgNO3为原料合成了纳米银颗粒。甘地。将叶提取物与AgNO3溶液混合,在室温下,几分钟内由白黄色变为深褐色。孵育后,将悬浮液离心,分离颗粒并干燥。采用最大波长为393 nm的紫外可见光谱、FTIR、SEM、EDAX、DLS、XRD和ZETA电位对合成的绿色AgNPs进行了表征;利用不同时间间隔的太阳辐照技术,研究了绿色合成银纳米颗粒光催化降解维多利亚蓝和碱性蓝染料的生物特征。维多利亚蓝溶液的紫外可见特征峰吸收为250 nm。收集不同时间间隔[对照、处理对照、30 min、(1、2、3、5、8、12、24、48、60、72)h]的光催化活性,降低峰值强度,采用紫外可见光谱和傅里叶变换红外光谱进行测定。绿色合成银纳米颗粒在总曝光时间内有效降解了维多利亚蓝染料溶液。
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