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Titel: Potential nano/microcenters of crystal nucleation in reagent-grade purity solvents and their differentiation by fluorescent-tagged antiscalant
Autor(en): Popov, Konstantin I.In der Gemeinsamen Normdatei der DNB nachschlagen
Vainer, Yuri
Silaev, Gleb
Kuryakov, Vladimir
Trukhina, Maria
Koltinova, Elena
Trokihn, Vasilii
Oshchepkov, Maxim
Butakova, Maria
Oshchepkov, Alexander
Erscheinungsdatum: 2024
Art: Artikel
Sprache: Englisch
Zusammenfassung: A common issue in studies on liquid-phase chemical processes is that the natural solid nanoimpurities present in reagent-grade chemicals are ignored. Little is known about these impurities’ nature, sizes, concentrations, and behavior, yet they significantly affect the efficiency of antiscalants in municipal and laboratory solutions. Recent research has focused on: (i) estimating nanoimpurity concentrations in in-house deionized water and semiconductor-grade isopropanol using “light sheet” optical ultramicroscopy, and (ii) visualizing antiscalant sorption on these impurities. Using a fluorescent-tagged antiscalant aminobis(methylenephosphonic acid) (ADMP-F), we tracked its affinity to particulate matter in deionized water and reagent-grade KCl solutions. Our study showed that the total concentration of nanoparticles with a size larger than 20 nm is about 106 units/mL in deionized water and 105 units/mL in isopropanol. Extrapolation of these values to a size ≥1 nm resulted in concentrations of 1011 and 108 units/mL. The addition of KCl or ADMP-F significantly increased foreign nanoparticle populations. ADMP-F is selectively adsorbed by only some impurities, while most antiscalant molecules remain as true solution. To our knowledge, this is the first instance of fluorescently labeled aminoalkylphosphonates being able to differentiate particulate matter traces in reagent-grade purity solutions. Therefore, the role of nanoparticles as crystallization centers should be seriously reconsidered, especially in their important application in scale inhibition.
URI: https://opendata.uni-halle.de//handle/1981185920/119289
http://dx.doi.org/10.25673/117330
Open-Access: Open-Access-Publikation
Nutzungslizenz: (CC BY 4.0) Creative Commons Namensnennung 4.0 International(CC BY 4.0) Creative Commons Namensnennung 4.0 International
Journal Titel: Crystals
Verlag: MDPI
Verlagsort: Basel
Band: 14
Heft: 7
Originalveröffentlichung: 10.3390/cryst14070650
Seitenanfang: 1
Seitenende: 15
Enthalten in den Sammlungen:Open Access Publikationen der MLU

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