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Bio-synthesized palladium nanoparticles using alginate for catalytic degradation of azo-dyes 被引量:1

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摘要 Palladium nanoparticles(PdNPs)were synthesized in a green way using sodium alginate functioning as both reductant and stabilizer.The formation of as-synthesized Pd NPs was supervised by Ultraviolet–visible(UV–Vis)spectroscopy and confirmed by the surface plasmon resonance(SPR)band.The effect of several synthesis factors such as precursor ratio,solution p H,reaction time,and temperature were investigated by the factorial design of experiments in order to optimize the experimental conditions.The optimal synthesis parameters were achieved by heating 1.0 ml of 1.0%sodium alginate(SA),3.0 ml of 10-2 mol·L-1 H2PdCl4 at 80°C for a period of 30 min in a neutral reaction medium(pH=6).High-resolution transmission electron microscope(HRTEM),energy dispersive X-ray(EDX)spectroscopy,selected area electron diffraction(SAED)pattern,X-ray powder diffraction(XRD),and dynamic light scattering(DLS)were used to confirm the uniform spherical shapes and high crystallinity of Pd NPs with average particle size of(2.12±1.42)nm.The SEM images show the distribution of Pd NPs presented among the SA.FTIR spectra indicate that SA is a good capping agent to stabilize Pd NPs for a long time.The catalytic degradation of model azo-dyes such as mono-azo(Cibacron Yellow FN–2R)and di-azo(Cibacron Deep Red S–B)were confirmed the catalytic activity of Pd NPs.The Pd NPs can accelerate the degradation rate by more than 80 and 10 times respectively as confirmed by kinetics constant(k)values.
出处 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2020年第5期1334-1343,共10页 中国化学工程学报(英文版)
基金 the kind support of this work from Key Laboratory of Biomass Fibers&Eco-Dyeing&Finishing,Hubei Province(STRZ2019015) the Innovation Platform Projects of Wuhan Textile University(183052)。
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  • 1陈宗淇,化学学报,1990年,48卷,666页
  • 2陈宗淇,化学学报,1989年,47卷,152页
  • 3纪明候,海洋科学集刊,1962年,1卷,80页

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