Synthesis of AuPdNi Powders Using an Environmentally Friendly Ultrasound Assisted Extraction for Obtaining Boric Acid from Colemanite: Optimization by Response Surface Methodology

In this study, simple ultrasonic assisted extraction was proposed as the environmental method at all stages of catalyst synthesis.A homogeneous catalyst was synthesized from high grade monodisperse gold-palladium-nickel nanoparticles using ultrasonic assisted extraction method (UAE) instead of conve...

Full description

Bibliographic Details
Main Author: Bahdişen Gezer
Format: Article
Language:English
Published: Düzce University 2020-01-01
Series:Düzce Üniversitesi Bilim ve Teknoloji Dergisi
Subjects:
Online Access:https://dergipark.org.tr/tr/download/article-file/951063
_version_ 1797300694842081280
author Bahdişen Gezer
author_facet Bahdişen Gezer
author_sort Bahdişen Gezer
collection DOAJ
description In this study, simple ultrasonic assisted extraction was proposed as the environmental method at all stages of catalyst synthesis.A homogeneous catalyst was synthesized from high grade monodisperse gold-palladium-nickel nanoparticles using ultrasonic assisted extraction method (UAE) instead of conventional methods to obtain boric acid from colemanite.The most important advantage of this method is that AuPdNi nanoparticles can be easily separated and used repeatedly for further studies. Because of this feature, increasing amount of boric acid obtained from colemanite using AuPdNi nanocatalyst was investigated.For the test parameters, solvent/solids ratio, pH, extraction time and extraction temperature were used for extraction. Responsive Surface Methodology (RSM) method was used to determine optimum conditions. In this study, it was determined that presence of AuPdNinanocatalyst significantly increased boric acid activity. Transmission electron microscopy (TEM), X-ray diffraction (XRD) and Fourier transform infrared spectroscopy (FTIR) analyses were performed for the characterization of nanomaterials. According to the results of the RSM test program, boric acid yield was found to be 95.73% with the aid of AuPdNi nanocatalyst.
first_indexed 2024-03-07T23:11:50Z
format Article
id doaj.art-3a1426a060e0482485079792a72cb9aa
institution Directory Open Access Journal
issn 2148-2446
language English
last_indexed 2024-03-07T23:11:50Z
publishDate 2020-01-01
publisher Düzce University
record_format Article
series Düzce Üniversitesi Bilim ve Teknoloji Dergisi
spelling doaj.art-3a1426a060e0482485079792a72cb9aa2024-02-21T14:07:35ZengDüzce UniversityDüzce Üniversitesi Bilim ve Teknoloji Dergisi2148-24462020-01-01811173118410.29130/dubited.63070897Synthesis of AuPdNi Powders Using an Environmentally Friendly Ultrasound Assisted Extraction for Obtaining Boric Acid from Colemanite: Optimization by Response Surface MethodologyBahdişen Gezer0Uşak ÜniversitesiIn this study, simple ultrasonic assisted extraction was proposed as the environmental method at all stages of catalyst synthesis.A homogeneous catalyst was synthesized from high grade monodisperse gold-palladium-nickel nanoparticles using ultrasonic assisted extraction method (UAE) instead of conventional methods to obtain boric acid from colemanite.The most important advantage of this method is that AuPdNi nanoparticles can be easily separated and used repeatedly for further studies. Because of this feature, increasing amount of boric acid obtained from colemanite using AuPdNi nanocatalyst was investigated.For the test parameters, solvent/solids ratio, pH, extraction time and extraction temperature were used for extraction. Responsive Surface Methodology (RSM) method was used to determine optimum conditions. In this study, it was determined that presence of AuPdNinanocatalyst significantly increased boric acid activity. Transmission electron microscopy (TEM), X-ray diffraction (XRD) and Fourier transform infrared spectroscopy (FTIR) analyses were performed for the characterization of nanomaterials. According to the results of the RSM test program, boric acid yield was found to be 95.73% with the aid of AuPdNi nanocatalyst.https://dergipark.org.tr/tr/download/article-file/951063colemaniteultrasound-assistedextractioncentral composite designoptimizationaupdni nanocatalystkolemanitultrason destekli ekstraksiyonmerkezi kompozit tasarımoptimizasyonaupdni nanokatalizör
spellingShingle Bahdişen Gezer
Synthesis of AuPdNi Powders Using an Environmentally Friendly Ultrasound Assisted Extraction for Obtaining Boric Acid from Colemanite: Optimization by Response Surface Methodology
Düzce Üniversitesi Bilim ve Teknoloji Dergisi
colemanite
ultrasound-assistedextraction
central composite design
optimization
aupdni nanocatalyst
kolemanit
ultrason destekli ekstraksiyon
merkezi kompozit tasarım
optimizasyon
aupdni nanokatalizör
title Synthesis of AuPdNi Powders Using an Environmentally Friendly Ultrasound Assisted Extraction for Obtaining Boric Acid from Colemanite: Optimization by Response Surface Methodology
title_full Synthesis of AuPdNi Powders Using an Environmentally Friendly Ultrasound Assisted Extraction for Obtaining Boric Acid from Colemanite: Optimization by Response Surface Methodology
title_fullStr Synthesis of AuPdNi Powders Using an Environmentally Friendly Ultrasound Assisted Extraction for Obtaining Boric Acid from Colemanite: Optimization by Response Surface Methodology
title_full_unstemmed Synthesis of AuPdNi Powders Using an Environmentally Friendly Ultrasound Assisted Extraction for Obtaining Boric Acid from Colemanite: Optimization by Response Surface Methodology
title_short Synthesis of AuPdNi Powders Using an Environmentally Friendly Ultrasound Assisted Extraction for Obtaining Boric Acid from Colemanite: Optimization by Response Surface Methodology
title_sort synthesis of aupdni powders using an environmentally friendly ultrasound assisted extraction for obtaining boric acid from colemanite optimization by response surface methodology
topic colemanite
ultrasound-assistedextraction
central composite design
optimization
aupdni nanocatalyst
kolemanit
ultrason destekli ekstraksiyon
merkezi kompozit tasarım
optimizasyon
aupdni nanokatalizör
url https://dergipark.org.tr/tr/download/article-file/951063
work_keys_str_mv AT bahdisengezer synthesisofaupdnipowdersusinganenvironmentallyfriendlyultrasoundassistedextractionforobtainingboricacidfromcolemaniteoptimizationbyresponsesurfacemethodology