Effect of Humic Substances and Silicon Ions on Stability of Iron Hydroxide (III) Nanoparticles; Advanced Materials Research; Vol. 872 : Nanomaterials for Structural, Functional and Biomedical Applications

Bibliografiset tiedot
Parent link:Advanced Materials Research: Scientific Journal
Vol. 872 : Nanomaterials for Structural, Functional and Biomedical Applications.— 2014.— [Р. 237-240]
Yhteisötekijä: Национальный исследовательский Томский политехнический университет (ТПУ) Институт физики высоких технологий (ИФВТ) Кафедра общей химии и химической технологии (ОХХТ)
Muut tekijät: Shiyan L. N. Lyudmila Nikolaevna, Machekhina K. I. Ksenia Igorevna, Tropina E. A. Elena Aleksandrovna, Gryaznova E. N. Elena Nikolaevna, An V. V. Vladimir Vilorievich
Yhteenveto:Title screen
The paper reports on experimental modeling of the colloid system composition in natural groundwater. It is shown that the stability of iron hydroxide nanoparticles relates to the presence of silica and humic substances. It was found out the molar ratio of iron/silicon/organic substance is equal to 1/7/2, where stable iron (III) hydroxide nanoparticles form. The iron hydroxide nanoparticle size ranging from 30 to 600 nm was determined. It characterizes the steady state of the colloidal system.
Режим доступа: по договору с организацией-держателем ресурса
Kieli:englanti
Julkaistu: 2014
Sarja:Biomedical aspects of nanomaterials
Aiheet:
Linkit:http://dx.doi.org/10.4028/www.scientific.net/AMR.872.237
Aineistotyyppi: Elektroninen Kirjan osa
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=646213

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330 |a The paper reports on experimental modeling of the colloid system composition in natural groundwater. It is shown that the stability of iron hydroxide nanoparticles relates to the presence of silica and humic substances. It was found out the molar ratio of iron/silicon/organic substance is equal to 1/7/2, where stable iron (III) hydroxide nanoparticles form. The iron hydroxide nanoparticle size ranging from 30 to 600 nm was determined. It characterizes the steady state of the colloidal system. 
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