首页|Adsorption of sodium oleate at the microfine hematite/aqueous solution interface and its consequences for flotation

Adsorption of sodium oleate at the microfine hematite/aqueous solution interface and its consequences for flotation

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The adsorption of sodium oleate(NaOL)at the microfine hematite/aqueous solution interface was inves-tigated in this paper.Experimental research indicated that negative effects stemmed from the dissolution of the microfine hematite(D50=19.21 μm)could be effectively eliminated via the appropriate dosage of NaOL at alkali pH conditions.Solution chemistry calculation and adsorption test results indicated that RCOO-and(RCOO)222 ions were responsible for microfine hematite flotation at pH 8.2.Zeta potential and FTIR measurements confirmed the co-adsorption of molecular and ionic oleate species occurred at pH 8.2.X-ray photoelectron spectroscopy(XPS)results further indicated that oleate species interacted with hematite surfaces mainly through chemisorption,giving rise to molecule/colloid formation of oleate and Fe—OL complex compound.Time-of-flight secondary ion mass spectrometry(ToF-SIMS)results demonstrated that oleate species adsorbed onto the hematite surfaces with a thickness of a few nanome-ters.Furthermore,the normalized peak intensity of C4H7+ions on the hematite sample at pH 8.2 increased remarkably comparing with corresponding result of hematite sample at pH 6.8.The new findings of the present study well revealed the dissolution of microfine hematite and the pH effects on the hematite flotation,as well as the adsorption characteristics of oleate species.

Microfine hematiteOleate speciesChemisorptionsDissolutionToF-SIMS

Shaojun Bai、Jie Li、Yunxiao Bi、Jiaqiao Yuan、Shuming Wen、Zhan Ding

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State Key Laboratory of Complex Nonferrous Metal Resources Clean Utilization,Kunming University of Science and Technology,Kunming 650093,China

Faculty of Land Resource Engineering,Kunming University of Science and Technology,Kunming 650093,China

Natural Science Foundation of ChinaNatural Science Foundation of Yunnan Province

521640212019FB078

2023

矿业科学技术学报(英文版)
中国矿业大学

矿业科学技术学报(英文版)

CSTPCDCSCD北大核心EI
影响因子:1.222
ISSN:2095-2686
年,卷(期):2023.33(1)
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