Yayın:
Preconcentration of bismuth using nickel hydroxide nanoflower from water samples and determination by FAAS

dc.contributor.authorYildiz, Baris
dc.contributor.authorDurukan, Ilknur
dc.contributor.authorSaylan, Meltem
dc.contributor.authorZaman, Buse Tugba
dc.contributor.authorBakirdere, Sezgin
dc.date.accessioned2026-06-27T15:14:30Z
dc.date.issued2024
dc.description.abstractIn this study, a preconcentration strategy based on Ni(OH)(2) nanoflowers (NFs) was developed for the extraction/separation of bismuth ions from environmental water samples before the determination by flame atomic absorption spectrometry (FAAS). The homogeneous coprecipitation method was employed for the synthesis of the flower-shaped Ni(OH)(2) and used as an adsorbent for the preconcentration of bismuth. The extraction variables were determined by a univariate optimization strategy to obtain maximum extraction performance. The optimal parameters of the method were as follows: 15 min mechanical shaking at 120 rpm, pH 6.0 buffer solution (1.0 mL), 20 mg of sorbent, and 250 mu L of 6.0 M nitric acid for the elution. Under the optimized instrumental and extraction conditions, LOD (limit of detection), LOQ (limit of quantitation), and linear dynamic range were determined as 2.8 mu g/L, 9.4 mu g/L, and 0.010-0.30 mg/L, respectively. The enhancement factor of the sorbent-based method was calculated as 139.1-folds by comparing the slopes of calibration plots obtained from FAAS and the preconcentration method. To assess the feasibility and reliability of the developed method, tap water and spring water samples were analyzed under optimized conditions. The satisfactory %recoveries were obtained close to 100% using the direct comparison method. The obtained results show that the presented method is a promising candidate for efficient extraction and trace determination of bismuth in several sample mediums.en
dc.description.urihttps://doi.org/10.1007/s10661-024-13600-3
dc.identifier.doi10.1007/s10661-024-13600-3
dc.identifier.eissn1573-2959
dc.identifier.issn0167-6369
dc.identifier.issue1
dc.identifier.pubmed39738770
dc.identifier.urihttps://hdl.handle.net/20.500.14981/69372
dc.identifier.volume197
dc.identifier.wos001389224400001
dc.language.isoeng
dc.publisherSPRINGER
dc.relation.ispartofENVIRONMENTAL MONITORING AND ASSESSMENT
dc.subjectNi(OH)(2) nanoflowers
dc.subjectBismuth
dc.subjectTap water
dc.subjectFlame atomic absorption spectrometry
dc.subjectSpring water
dc.subjectSOLID-PHASE EXTRACTION
dc.subjectCLOUD POINT EXTRACTION
dc.subjectLIQUID-LIQUID MICROEXTRACTION
dc.subjectENVIRONMENTAL-SAMPLES
dc.subjectMETAL-IONS
dc.subjectLEAD
dc.subjectADSORPTION
dc.subjectSEPARATION
dc.subjectNANOTUBES
dc.subjectBI(III)
dc.subjectEnvironmental Sciences & Ecology
dc.titlePreconcentration of bismuth using nickel hydroxide nanoflower from water samples and determination by FAAS
dc.typeArticle
dspace.entity.typePublication
local.import.sourceWOS

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